﻿<?xml version="1.0" encoding="utf-8"?><doi_batch xmlns="http://www.crossref.org/schema/4.3.7" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.crossref.org/schema/4.3.7 http://www.crossref.org/schema/deposit/crossref4.3.7.xsd"><head><doi_batch_id>ijg-1405022923</doi_batch_id><timestamp>14050229231041</timestamp><depositor><depositor_name>CMV Verlag</depositor_name><email_address>khoffmann@cmv-verlag.com</email_address></depositor><registrant>CMV Verlag</registrant></head><body><journal><journal_metadata language="fa"><full_title>Iranian Journal of Geology</full_title><abbrev_title>ijg</abbrev_title><issn media_type="electronic">1735-7128</issn></journal_metadata><journal_issue><publication_date media_type="online"><month>6</month><day>15</day><year>2023</year></publication_date><journal_volume><volume>17</volume></journal_volume><issue>65</issue></journal_issue><journal_article publication_type="full_text"><titles><title>Geochemistry and Mineral 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12(46)، 64-49.</unstructured_citation></citation><citation key="ref2"><unstructured_citation>رضائی کهخائی، م.، قصابی فیض، آ. و قاسمی، ح.، 1397. شیمی کانی کلینوپیروکسن در سنگ‌های بازالتی ائوسن گردنه آهوان، شمال شرق سمنان. بلورشناسی و کانی‌شناسی ایران، 26(2)، 354- 339. </unstructured_citation></citation><citation key="ref3"><unstructured_citation>شاه¬حسینی، ا.، 1386. پترولوژی، ژئوشیمی و پتانسیل کانه¬زایی سنگ¬های آذرین شمال و شمال شرق سمنان. پایان¬نامه کارشناسی ارشد، دانشگاه صنعتی شاهرود، 165. </unstructured_citation></citation><citation key="ref4"><unstructured_citation>صمدی، م.، 1377. پتروگرافی، پتروژنز و ژئوشیمی سنگ¬های آذرین شمال تا شمال شرق سمنان. پایان¬نامه کارشناسی ارشد، دانشگاه تربیت‌معلم تهران، 150. </unstructured_citation></citation><citation key="ref5"><unstructured_citation>علوی نائینی، م.، 1375. نقشه زمین‌شناسی 1:100000 جام. سازمان زمین¬شناسی و اکتشافات معدنی کشور. </unstructured_citation></citation><citation key="ref6"><unstructured_citation>علوی نائینی، م.، 1351. بررسی زمین‌شناسی ناحیه جام. سازمان زمین‌شناسی و اکتشافات معدنی کشور، تهران، 290. </unstructured_citation></citation><citation key="ref7"><unstructured_citation>غیاثوند، ع. ر.، 1384. کانی¬شناسی، ژئوشیمی و خاستگاه کانسارهای آهن شمال سمنان. پایان¬نامه کارشناسی ارشد، دانشگاه تربیت مدرس تهران، 150. </unstructured_citation></citation><citation key="ref8"><unstructured_citation>قاسمی، ح. ا. و جمشیدی، خ.، 1392. بررسی خصوصیات ناحیه منشا سنگ‌های آلکالن بازیک قاعده سازند شمشک در البرز شرقی. زمین‌شناسی ایران، 7(27)، 29-17. </unstructured_citation></citation><citation key="ref9"><unstructured_citation>قصابی ¬فیض، آ.، 1396. شیمی کانی سنگ¬های آتشفشانی شمال و شمال¬شرق سمنان، ایران. پایان‌نامه کارشناسی ارشد، دانشگاه صنعتی شاهرود، 107. </unstructured_citation></citation><citation key="ref10"><unstructured_citation>کامران، س.، 1398. پترولوژی و ژئوشیمی ایزوتوپی سنگ¬های آذرین شمال و شمال شرق سمنان، ایران مرکزی. رساله دکتری، دانشگاه لرستان، 147. </unstructured_citation></citation><citation key="ref11"><unstructured_citation>نادری، آ.، قاسمی، ح. ا. و پاپادوپولو، ل.، 1399. شیمی بیوتیت، دما-فشارسنجی و بررسی نقش آلومینیوم کل بیوتیت در تشخیص کانی زایی در توده گرانیتوئیدی تویه-دروار، جنوب باختر دامغان، البرز خاوری. زمین‌شناسی ایران، 14(53)، 15-1. </unstructured_citation></citation><citation key="ref12"><unstructured_citation>نبوی، م. ح.، 1366. نقشه زمین‌شناسی 1:100000 سمنان. سازمان زمین¬شناسی و اکتشافات معدنی کشور. </unstructured_citation></citation><citation key="ref13"><unstructured_citation>نبوی، م. ح.، 1355. دیباچه¬ای بر زمین‌شناسی ایران. سازمان زمین¬شناسی و اکتشافات معدنی کشور، تهران، 109. </unstructured_citation></citation><citation key="ref14"><unstructured_citation>Aparicio, A., 2010. Relationship between clinopyroxene composition and the formation environment of volcanic host rocks. IUP Journal of Earth Sciences, 4, 1-11. </unstructured_citation></citation><citation key="ref15"><unstructured_citation>Boynton, W. V., 1984. Geochemistry of the rare earth elements: meteorite studies. Elsevier, 63-114. </unstructured_citation></citation><citation key="ref16"><unstructured_citation>Deer, W. A., Howie, A. and Zussman, J., 1986. An introduction to the rock-forming minerals. 17th ed, Longman Ltd, 528. </unstructured_citation></citation><citation key="ref17"><unstructured_citation>Harris, C., 1983. The petrology of lavas and associated plutonic inclusions of Ascension Island. Journal of petrology, 24, 424-470. </unstructured_citation></citation><citation key="ref18"><unstructured_citation>Harris, N. B. W., Pearce, J. A. and Tindle, A. G., 1986. Geochemical characteristics of collision zone magmatism. Geological society of london special publications, 19, 67-81. </unstructured_citation></citation><citation key="ref19"><unstructured_citation>Hastie, A. R., Kerr, A. C., Pearce, J. A. and Mitchell, S. F., 2007. Classification of altered volcanic island arc rocks using immobile trace elements: development of the Th-Co discrimination diagram. Journal of Petrology, 48, 2341-2354. </unstructured_citation></citation><citation key="ref20"><unstructured_citation>Irvine, T. N. and Baragar, W. R. A., 1971. A guide to the chemical classification of the common volcanic rocks. Canadian Journal of Earth Sciences, 8, 523-548. </unstructured_citation></citation><citation key="ref21"><unstructured_citation>Jung, C., Jung, S., Hoffer, E. and Berndt, J., 2006. Petrogenesis of Tertiary Mafic Alkaline Magmas in the Hocheifel, Germany. Journal of Petrology, 47, 1637-1671. </unstructured_citation></citation><citation key="ref22"><unstructured_citation>Jung, S., Hffer, E. and Hoernes, S., 2007. Neo-Proterozoic rift-related syenites (North Damara Belt, Namibia): Geochemical and Nd-Sr-PB-O isotope constraints for mantle sources and petrogenesis. Lithos, 96, 415-435. </unstructured_citation></citation><citation key="ref23"><unstructured_citation>Lebas, M. J., 1962. The role of aluminum in igneous clinopyroxenes with relation to their parentage. American Journal of Science, 260, 267-288. </unstructured_citation></citation><citation key="ref24"><unstructured_citation>Middlemost, E. A. K., 1994. Naming materials in the magma/igneous rock system. Earth Science Reviews, 37, 215-224. </unstructured_citation></citation><citation key="ref25"><unstructured_citation>Morimoto, N., 1988. Nomenclature of pyroxenes. American Mineralogist, 73, 1123-1133. </unstructured_citation></citation><citation key="ref26"><unstructured_citation>Nisbet, E. G. and Pearce, J. A., 1977. Clinopyroxene composition in mafic lavas from different tectonic settings. Contributions to Mineralogy and Petrology, 63, 149-160. </unstructured_citation></citation><citation key="ref27"><unstructured_citation>Parada, M. A., Nystrom, J. O. and Levi, B., 1999. Multiple source for the coastal batholith of central Chile: geochemical a Sr-Nd isotopic evidence and tectonic implication. Lithos, 46, 505-521. </unstructured_citation></citation><citation key="ref28"><unstructured_citation>Pearce, J.A., 1983. Role of the sub-continental lithosphere in magma genesis at active continental margins, In: Hawkesworth, C. J., and Norry, M. J., (eds.), Continental basalts and mantle xenoliths. Nantwich, Cheshire: Shiva Publications, 230-249. </unstructured_citation></citation><citation key="ref29"><unstructured_citation>Pearce, J.A. and Cann, J. R., 1973. Tectonic setting of basic volcanic rocks determined using trace element analyses. Earth and Planetary Science Letters, 19, 290-300. </unstructured_citation></citation><citation key="ref30"><unstructured_citation>Pearce, J.A. and Gale, G. H., 1977. Identification of ore-deposition environment from trace element geochemistry of associated igneous host rocks. Geological Society, London, Special Publications, 7, 14-24. </unstructured_citation></citation><citation key="ref31"><unstructured_citation>Putirka, K., 2008. Thermometers and Barometers for Volcanic Systems. Reviews in Mineralogy and Geochemistry, 69, 61-120. </unstructured_citation></citation><citation key="ref32"><unstructured_citation>Raasei, P., 1998. Feldspar thermometry: A valuable tool for deciphering the thermal history of granulite-facies rocks, as illustrated with metapelites from srilanka. Canadaian Mineralogist, 36, 67-86. </unstructured_citation></citation><citation key="ref33"><unstructured_citation>Rollinson, H. R., 1993. Using geochemical data: evaluation, presentation, interpretation. Longman Scientific and Technical, 352. </unstructured_citation></citation><citation key="ref34"><unstructured_citation>Schweitzer, E. L., Papike, J. J. and Bence, A. E., 1979. Statitical analysis of clinopyroxenes from deep- sea basalts. American Mineralogist, 64, 501-513. </unstructured_citation></citation><citation key="ref35"><unstructured_citation>Sirvastava, R. K. and Singh, R. K., 2004. Trace element geochemistry and genesis of Precambrian subalkaline mafic dykes from the central Indian craton: evidence for mantle metasomatism. Journal of Asian Earth Sciences, 23, 373-389. </unstructured_citation></citation><citation key="ref36"><unstructured_citation>Soesoo, A., 1997. A multivariate statistical analysis of clinopyroxene composition: empirical coordinates for the crystallisation PT-estimations. Geological Society of Sweden, (Geologiska Foreningen), 119, 55-60. </unstructured_citation></citation><citation key="ref37"><unstructured_citation>Sun, S. S. and McDonough, W. F., 1989. Chemical and isotopic systematic of oceanic basalts: implications for mantle composition and processes. Geological Society Special Publications, 42, 313-345. </unstructured_citation></citation><citation key="ref38"><unstructured_citation>Taylor, S. R. and McLennan, S. M., 1995. The geochemical evolution of the continental crust. Reviews of Geophysics, 33, 241-265. </unstructured_citation></citation><citation key="ref39"><unstructured_citation>Thirlwall, M. F., Upton, B. G. J. and Jenkins, C., 1994. Interaction between Continental Lithosphere and the Iceland Plume-Sr-Nd-Pb Isotope Geochemistry of Tertiary Basalts, NE Greenland. Journal of Petrology, 35, 839-879. </unstructured_citation></citation><citation key="ref40"><unstructured_citation>Thompson, R. N., 1982. British tertiary volcanic province. Scottish journal of geology, 18, 49-107. </unstructured_citation></citation><citation key="ref41"><unstructured_citation>Wang, K., Plank, T., Walker, J.D. and Smith, E.I., 2002. A mantle melting profile across the Basin and Range, SW USA. Journal of Geophysical Research, 107, 1-21. </unstructured_citation></citation><citation key="ref42"><unstructured_citation>Wass, S. Y. and Roger, N. W., 1980. Mantle metasomatism precursor to alkaline continental volcanism. Geochimica et cosmochimica acta, 44, 1811-1823. </unstructured_citation></citation><citation key="ref43"><unstructured_citation>Yang, J. S., Dobrzhinetskaya, L., Bai, W. J., Fang, Q. S., Robinson, P. T., Zhang, J. and Green, H. W., 2007. Diamond- and coesite-bearing chromitites from the Luobusa ophiolite, Tibet. Geology, 35, 875-878.</unstructured_citation></citation></citation_list></journal_article><journal_article publication_type="full_text"><titles><title>Effect of water seepage and dissolution on the stability of Neyshabur bar dam </title></titles><contributors><person_name contributor_role="author" sequence="first"><given_name>M.T.</given_name><surname>Karbasi Maroof</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>HamidReza</given_name><surname>Nasseri</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Farshad</given_name><surname>Alijani</surname></person_name></contributors><publication_date media_type="online"><month>6</month><day>15</day><year>2023</year></publication_date><pages><first_page>19</first_page><last_page>32</last_page></pages><doi_data><doi>10.66224/ijg.42801.17.65.19</doi><resource>http://geology.saminatech.ir/fa/Article/42801</resource><collection property="crawler-based"><item crawler="iParadigms"><resource>http://geology.saminatech.ir/fa/Article/Download/42801</resource></item><item crawler="google"><resource>http://geology.saminatech.ir/fa/Article/Download/42801</resource></item><item crawler="msn"><resource>http://geology.saminatech.ir/fa/Article/Download/42801</resource></item><item crawler="altavista"><resource>http://geology.saminatech.ir/fa/Article/Download/42801</resource></item><item crawler="yahoo"><resource>http://geology.saminatech.ir/fa/Article/Download/42801</resource></item><item crawler="scirus"><resource>http://geology.saminatech.ir/fa/Article/Download/42801</resource></item></collection><collection property="text-mining"><item><resource mime_type="application/pdf">http://geology.saminatech.ir/fa/Article/Download/42801</resource></item></collection></doi_data><citation_list><citation key="ref1"><unstructured_citation>اکبری، ف.، باقری، ر. و ندری، آ.، 1397. بیلان هیدروژئولوژیک تالاب برم شور در شهرستان هفتکل استان خوزستان. فصلنامه زمین‌شناسی ایران، 12، 48، 1-10.</unstructured_citation></citation><citation key="ref2"><unstructured_citation>محمودلو، م.، جندقی، ن. و صیادی، م.، 1399. تکامل هیدروشیمیایی و کاهش کیفیت آب رودخانه گرگانرود. فصلنامه زمین‌شناسی ایران، 14، 55، 129-145. </unstructured_citation></citation><citation key="ref3"><unstructured_citation>نبی¬زاده، ن. و جعفری، ه. 1400. تخمین تغذیه آبخوان مرزی سرخس با استفاده از مدل عددی. فصلنامه زمین‌شناسی ایران، 15، 57، 15-27.  </unstructured_citation></citation><citation key="ref4"><unstructured_citation>شرکت آبپوی.، 1394. گزارش مطالعات رفتارنگاری و آب‌بندی مخزن سد بار. وزارت نیرو، شرکت آب منطقه‌ای خراسان رضوی، 20. </unstructured_citation></citation><citation key="ref5"><unstructured_citation>واعظی، ع. و اسماعیل¬نیا، ن.، 1394. تعیین لایه نشتی و بررسی مکانیسم نشت از تکیه‌گاه چپ سد آغ چای (آذربایجان غربی) با استفاده از مطالعات هیدروژئولوژی. فصلنامه مهندسی آبیاری و آب، 8، 30. </unstructured_citation></citation><citation key="ref6"><unstructured_citation>Bedmar, A. P. and Araguas, L. U. I. S., 2002. Detection and the Prevention of Leaks from Dams. CRC Press. </unstructured_citation></citation><citation key="ref7"><unstructured_citation>Craft, C. D., Pearson, R. M. and Hurcomb, D., 2007. Mineral dissolution and dam seepage chemistry–The Bureau of reclamation experience. In Proceedings of the 2007 National Meeting, Dam Safety 2007. </unstructured_citation></citation><citation key="ref8"><unstructured_citation>-Jixiang, H.U., Fuheng, M.A. and Jiang, H.U., 2018. Characteristics and evolution of seepage water hydrochemistry at dam-site on Lijiaxia hydropower station. Congres des Grands Barrages, Vienne. </unstructured_citation></citation><citation key="ref9"><unstructured_citation>Kimble, J. M., Knox, E. G. and Holzhey, C. S., 1993. Soil survey laboratory methods for characterizing physical and chemical properties and mineralogy of soils. In Application of Agricultural Analysis in Environmental Studies, ASTM International. </unstructured_citation></citation><citation key="ref10"><unstructured_citation>Li, X. Ye, S., Wang, L. and Zhang, J., 2017. Tracing groundwater recharge sources beneath a reservoir on a mountain-front plain using hydrochemistry and stable isotopes. Water Science and Technology: Water Supply, 17(5), 1447-1457. </unstructured_citation></citation><citation key="ref11"><unstructured_citation>McDonald M.G. and Harbaugh A.W. 1988. A modular three-dimensional finite-difference groundwater flow model. U.S. Geological survey Techniques of Water-Resources Investigation 6(A1). 586. </unstructured_citation></citation><citation key="ref12"><unstructured_citation>Mozafari, M., Raeisi, E. and Guerrero, J., 2018. Contribution of spectral coherency analysis and tracer test to study leakage at the Doosti Dam reservoir. Iran and Turkmenistan Environmental earth sciences, 77(4), 139. </unstructured_citation></citation><citation key="ref13"><unstructured_citation>Noble, J. and Ansari, M. A., 2017. Environmental isotope investigation for the identification of source of springs observed in the hillock on the left flank of Gollaleru Earthen Dam, Andhra Pradesh, India. Journal of Earth System Science,126(5), 67. </unstructured_citation></citation><citation key="ref14"><unstructured_citation>Piqueras, J. M., Perez, E. S. and Menendez-Pidal, I., 2012. Water seepage beneath dams on soluble evaporite deposits: a laboratory and field study (Caspe Dam, Spain). Bulletin of engineering Geology and the Environment, 71(2), 201-213. </unstructured_citation></citation><citation key="ref15"><unstructured_citation>Sammen, S. S., Mohamed, T. A., Ghazali, A. H., Sidek, L. M. and El-Shafie, A., 2017. An evaluation of existent methods for estimation of embankment dam breach parameters. Natural Hazards, 87(1), 545-566. </unstructured_citation></citation><citation key="ref16"><unstructured_citation>Sjodahl, P., Dahlin, T.  and Johansson, S., 2008. Resistivity monitoring for internal erosion detection at Hallby embankment dam. In Progress in Environmental and Engineering Geophysics: Proceedings of the International Conference on Environmental and Engineering Geophysics, International Conference on E-Commerce E-Business and E-Government (ICEEG) Science Press, 310-316. </unstructured_citation></citation><citation key="ref17"><unstructured_citation>Ullah, A., Kassim, A., Alam, I. and Junaid, M., 2019 Efficiency analysis of seepage of Baz Ali small dam, Kurram Agency using clay blanket and cut off wall with sand filter, Journal of the Geological Society of Malaysia, 67, 113-118. </unstructured_citation></citation><citation key="ref18"><unstructured_citation>Unal, B., Celik, M. and Yıldırım, T., 2008. Evaluation of seepage problems of the Armagan Dam, Kırklareli, northwestern Turkey. Bulletin of Engineering Geology and the Environment, 67(3), 335-344. </unstructured_citation></citation><citation key="ref19"><unstructured_citation>Wang, S.W., Xu, Y.L., Gu, C.S. and Bao, T.F., 2018. Monitoring models for base flow effect and daily variation of dam seepage elements considering time lag effect. Water Science and Engineering, 11(4), 344-354.</unstructured_citation></citation><citation key="ref20"><unstructured_citation>
 
</unstructured_citation></citation></citation_list></journal_article><journal_article publication_type="full_text"><titles><title>Investigation of tectonics, fault data and their relationship with mineralization and alteration in Asbkhan, Heris area (East Azerbaijan Province - Northwest Iran)</title></titles><contributors><person_name contributor_role="author" sequence="first"><given_name>N.</given_name><surname>Yadegari</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Seyed Ghafor</given_name><surname>Alavi</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Mohsen</given_name><surname>Moayyed</surname></person_name></contributors><publication_date media_type="online"><month>6</month><day>15</day><year>2023</year></publication_date><pages><first_page>33</first_page><last_page>47</last_page></pages><doi_data><doi>10.66224/ijg.42802.17.65.33</doi><resource>http://geology.saminatech.ir/fa/Article/42802</resource><collection property="crawler-based"><item crawler="iParadigms"><resource>http://geology.saminatech.ir/fa/Article/Download/42802</resource></item><item crawler="google"><resource>http://geology.saminatech.ir/fa/Article/Download/42802</resource></item><item crawler="msn"><resource>http://geology.saminatech.ir/fa/Article/Download/42802</resource></item><item crawler="altavista"><resource>http://geology.saminatech.ir/fa/Article/Download/42802</resource></item><item crawler="yahoo"><resource>http://geology.saminatech.ir/fa/Article/Download/42802</resource></item><item crawler="scirus"><resource>http://geology.saminatech.ir/fa/Article/Download/42802</resource></item></collection><collection property="text-mining"><item><resource mime_type="application/pdf">http://geology.saminatech.ir/fa/Article/Download/42802</resource></item></collection></doi_data><citation_list><citation key="ref1"><unstructured_citation>آقانباتی، ع.، 1383. زمین‏شناسی ایران. سازمان زمین‏شناسی و اکتشافات معدنی کشور،586.</unstructured_citation></citation><citation key="ref2"><unstructured_citation>درویش‌زاده، ع.، 1372. زمین‌شناسی ایران. انتشارات نشر دانش امروز، 440. </unstructured_citation></citation><citation key="ref3"><unstructured_citation>قربانی، م.، 1381، دیباچه‌ای بر زمین‌شناسی اقتصادی ایران، انتشارات سازمان زمین‌شناسی و اکتشافات معدنی کشور، 695 . </unstructured_citation></citation><citation key="ref4"><unstructured_citation>موید، م.، 1380. ژئوشیمی و پترولوژی توده‌های آتشفشانی - پلتونیکی در منطقه طارم. پایان‌نامه دکتری. 256. </unstructured_citation></citation><citation key="ref5"><unstructured_citation>نبوی، م.، 1355. دیباچه‏ای بر زمین‏شناسی ایران. انتشارات سازمان ‏زمین‏شناسی کشور، 109. </unstructured_citation></citation><citation key="ref6"><unstructured_citation>Allen, M., Jackson, J. and Walker, R., 2004. Late Cenezoic reorganization of the Arabia-Eurasia collision and the comparision of short-term and long-term deformation rates. Tectonics.23, TC2008. </unstructured_citation></citation><citation key="ref7"><unstructured_citation>Ambraseys, N.N., 1997. The Krasnovodsk (Turkmenistan) earthquake of 8 July 1895, J. Earthquake Engineering., 1, 293–317. </unstructured_citation></citation><citation key="ref8"><unstructured_citation>Angelier, L., 1994. Faults slip analysis and paleostress reconstruction. In: Hancock, P.L. (Ed.), Continental Deformation. Pergamon, Oxford. 110-120. </unstructured_citation></citation><citation key="ref9"><unstructured_citation>Axen, G.J., Lam, P.S., Grove, M. and Stockli, D.F., 2001. Exhumation of the west-central Alborz mountains, Iran, Caspian subsidence, and collision-related tectonics. Geology, 29, 559–562. </unstructured_citation></citation><citation key="ref10"><unstructured_citation>Azizi, H. and Jahangiri, A., 2008. Cretaceous subduction-related volcanism in the northern Sanandaj-Sirjan Zone, Iran. journal of geodynamics. 45, 178–190. </unstructured_citation></citation><citation key="ref11"><unstructured_citation>Azizi, H., and Moinevaziri, H., 2009. Review of the tectonic setting of Cretaceous to Quaternary volcanism in northwestern Iran. journal of geodynamics. 47 (2009) 167–179. </unstructured_citation></citation><citation key="ref12"><unstructured_citation>Baker, C., 1993. The active seismicity and tectonics of Iran. PhD thesis, University of Cambridge, UK. </unstructured_citation></citation><citation key="ref13"><unstructured_citation>Blourian, G.H., 1994. Petrology of Tertiary volcanic rocks in the north of Tehran. M.SC. Thesis. University of Tarbiate Moalem, Tehran, Iran, 145. </unstructured_citation></citation><citation key="ref14"><unstructured_citation>Calagari, A.A., 2004. Fluid inclusion studies in quartz veinlets in the porphyry copper deposit at Sungun, East-Azarbaidjan, Iran Journal of Asian Earth Sciences. 23, 179–189. </unstructured_citation></citation><citation key="ref15"><unstructured_citation>Calagari, A.A. and Hosseinzadeh, G., 2006. The mineralogy of copper-bearing skarn to the east of the Sungun-Chay river, East-Azarbaidjan, Iran. Journal of Asian Earth Sciences. 28, 423–438. </unstructured_citation></citation><citation key="ref16"><unstructured_citation>Carey-Gailhardis, E. and Vergely, P., 1992. Graphical analysis of fault kinematics and focal mechanisms of earthquakes in term of stress; the right dihedral method, use and pitfalls. (1), 3-9. </unstructured_citation></citation><citation key="ref17"><unstructured_citation>Delvaux, D.  and Sperner, B., 2003. Stress tensor inversion from fault kinematic indicators and focal mechanism data: the TENSOR program. In: Nieuwland, D. (Ed.), New Insights into Strucural Interpretation and Modelling,. 212. geological society london special publications. 75-100. </unstructured_citation></citation><citation key="ref18"><unstructured_citation>Delvaux, D., Moeys, R., Stapel, G., Petit, C., Levi, K., Miroshnichenko, A., Ruzhich, V. and Sankov, V., 1997. Paleostress reconstructions and geodynamics of the Baikal region, Central Asia. Part II: Cenozoic rifting. In: Cloetingh, S., Fernandez, M., Munoz, J.A., Sassi, W. and Horvath, F. (Eds.), Structural controls on sedimentary Basin Formation: Tectonophysics, 282. 1-38. </unstructured_citation></citation><citation key="ref19"><unstructured_citation> Dewey, J.F., Hampton, M.R., Kidd, W.S.F., Saroglu, F. and engor, A.M.C.S., 1986. Shortening of Continental lithosphere: the neotectonics of eastern Anatolia, a young collision zone. . geological society london special publications. 19, 3-36. </unstructured_citation></citation><citation key="ref20"><unstructured_citation>Fossen, H., 2010. Structural Geology. Cambridge University Press. Cambridge, 463. </unstructured_citation></citation><citation key="ref21"><unstructured_citation> Hempton, M.R., 1987. Constrains on Arabian plate motion and extensional history of the red sea. Tectonics 6, 687-705. </unstructured_citation></citation><citation key="ref22"><unstructured_citation>Rebai, S., Philip, H., Dorbath, L., Borissoff, B., Haessler, H., and Cisternas, A., 1993. Active tectonics in compressive and extensional structures. Tectonics 12: 1089-1114. </unstructured_citation></citation><citation key="ref23"><unstructured_citation>Shabanian, E., Bellier, O., Abbassi, M.R., Siame, L. and Farbod, Y., 2009. Plio-Quaternary stress states in NE Iran: Kopeh Dagh and Allah Dagh-Binalud mountains, Tectonophysics. 480, 280–304. </unstructured_citation></citation></citation_list></journal_article><journal_article publication_type="full_text"><titles><title>Geology, mineralization, mineralogy, structure and texture in the Ghezeljeh Cu, Pb-Zn deposit, NW Zanjan</title></titles><contributors><person_name contributor_role="author" sequence="first"><given_name>Seyedeh Aliyeh </given_name><surname>Seyedeh Aliyeh </surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Ghasem</given_name><surname>Nabatian</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Afshin </given_name><surname>Zohdi</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Armin </given_name><surname>Salsani</surname></person_name></contributors><publication_date media_type="online"><month>6</month><day>15</day><year>2023</year></publication_date><pages><first_page>49</first_page><last_page>70</last_page></pages><doi_data><doi>10.66224/ijg.42803.17.65.49</doi><resource>http://geology.saminatech.ir/fa/Article/42803</resource><collection property="crawler-based"><item crawler="iParadigms"><resource>http://geology.saminatech.ir/fa/Article/Download/42803</resource></item><item crawler="google"><resource>http://geology.saminatech.ir/fa/Article/Download/42803</resource></item><item crawler="msn"><resource>http://geology.saminatech.ir/fa/Article/Download/42803</resource></item><item crawler="altavista"><resource>http://geology.saminatech.ir/fa/Article/Download/42803</resource></item><item crawler="yahoo"><resource>http://geology.saminatech.ir/fa/Article/Download/42803</resource></item><item crawler="scirus"><resource>http://geology.saminatech.ir/fa/Article/Download/42803</resource></item></collection><collection property="text-mining"><item><resource mime_type="application/pdf">http://geology.saminatech.ir/fa/Article/Download/42803</resource></item></collection></doi_data><citation_list><citation key="ref1"><unstructured_citation>آقانباتي، ع.، 1383. زمين¬شناسي ايران، سازمان زمين¬شناسي و اكتشافات معدني كشور.</unstructured_citation></citation><citation key="ref2"><unstructured_citation>- حقیقی، آ.، 1395. زمین¬شناسی، کانی¬شناسی، ژئوشیمی و ژنز کانسار سرب- روی اورتاسو، شمال¬غرب زنجان، پایان¬نامه کارشناسی ارشد دانشکده علوم زمین، دانشگاه زنجان، 140. </unstructured_citation></citation><citation key="ref3"><unstructured_citation>- رجب¬زاده، ع.، کوهستانی، ح.، مختاری، م.ع.ا. و زهدی، ا.، 1395. سنگ¬شناسی و کانی¬شناسی سنگ میزبان کانسار سرب- روی و مس چهرآباد، شمال باختر زنجان، بیست و چهارمین همایش بلورشناسی و کانی‌شناسی ایران، دانشگاه صنعتی شاهرود. </unstructured_citation></citation><citation key="ref4"><unstructured_citation>- شکوری نکو، ن.، 1397. زمین¬شناسی، ژئوشیمی و خاستگاه کانسارسرب و روی ساری-کند، شمال¬غرب زنجان، پایان‌نامه کارشناسی ارشد دانشکده علوم زمین، دانشگاه زنجان، 147. </unstructured_citation></citation><citation key="ref5"><unstructured_citation>- لطفی، م.، 1380. نقشه زمين¬شناسی ماهنشان با مقياس، 1:100000، سازمان زمين¬شناسی و اکتشافات معدنی کشور. </unstructured_citation></citation><citation key="ref6"><unstructured_citation>- میرحسینی، ع.، نباتیان، ق.، زهدی، ا. و سلسانی، آ.، 1399. چینه¬نگاری سنگی، پتروگرافی و ژئوشیمی ماسه¬سنگ¬های بخش میانی سازند قرمز بالایی منطقه قزلجه، شمال غرب زنجان، مجله پژوهش¬های چینه¬نگاری و رسوب¬شناسی 108-87: (4) 36. </unstructured_citation></citation><citation key="ref7"><unstructured_citation>- نخجوانی، ب.، علوی،س.غ. و  نظری، ب.،  1398. بررسی زمین‌شناسی، کانه¬زایی مس، رفتار زمین‌شیمی عناصر و ارتباط آن با سنگ میزبان ماسه‌سنگی در منطقه توپچی، استان آذربایجان شرقی، فصلنامه زمین¬شناسی ایران، 51، 13 ، 47-63. </unstructured_citation></citation><citation key="ref8"><unstructured_citation>- نوری، م.، کوهستانی، ح.، نباتیان، ق.،  مختاری، م.ع.ا. و زهدی، ا.، 1400. زمین‌شناسی، کانه‌زایی و ژنز کانسار سلستین مادآباد، جنوب زنجان، فصلنامه زمین¬شناسی ایران، 60،  15، 59-75. </unstructured_citation></citation><citation key="ref9"><unstructured_citation>- نوری، م.، زهدی، ا.، کوهستانی، ح.، نباتیان، ق. و مختاری، م.ع.ا.، 1398. مطالعه کانی‌شناسی اولیه کربنات‌های سازند قم با استفاده از مطالعات پتروگرافی و ژئوشیمیایی در بُرش کانسار سلستین مادآباد (جنوب زنجان)، فصلنامه زمین‌شناسی ایران، 13، 51، 15-1. </unstructured_citation></citation><citation key="ref10"><unstructured_citation>Aghanabati, A., 2005. Geology of Iran. Geological Survey of Iran, Tehran, 538. </unstructured_citation></citation><citation key="ref11"><unstructured_citation>- Aghanabati A., 1998. Major sedimentary and structural units of Iran (map). Geosciences 7: 29-30.‏ </unstructured_citation></citation><citation key="ref12"><unstructured_citation>- Alavi, M., 1991. Sedimentary and structural characteristics of the Paleo-Tethys remnants in northeastern Iran. Geological Society of America Bulletin, 103(8): 983-992. https://doi.org/10.1130/0016-7606(1991)103&lt;0983:SASCOT&gt;2.3.CO;2. </unstructured_citation></citation><citation key="ref13"><unstructured_citation>- Armstrong-Altrin, J. S., Lee, Y. I., Verma, S. P. and Ramasamy, S., 2004. Geochemistry of sandstones from the Upper Miocene Kudankulam Formation, southern India: Implications for provenance, weathering and tectonic setting. Journal of Sedimentary Research, 74(2), 285-297.‏ </unstructured_citation></citation><citation key="ref14"><unstructured_citation>- Avila-Salinas, W., 1990. Origin of the copper ores at Corocoro, Bolivia. In: L. Fontboté, G.C. Amstutz, M. Cardozo, E. Cedillo and J. Frutos (Editors), Stratabound Ore Deposits in the Andes. Special Publication 8 of the Society for Geology Applied to Mineral Deposits, 8. Springer, Berlin, Heidelberg, 1-52. </unstructured_citation></citation><citation key="ref15"><unstructured_citation>- Azizi, H., Hosseinzadeh, M. R., Moayyed, M. and Siahcheshm, K., 2018. Geology and geochemistryof the sediment-hosted stratabound red bed-type Cu-Pb (Zn-Ag) mineralization in the Dozkand-Moshampa Area, NW Zanjan, Iran. Neues Jahrbuch für Geologie und Paläontologie - Abhandlungen, 195(2): 123-143. DOI: 10.1127/njma/2018/0101. </unstructured_citation></citation><citation key="ref16"><unstructured_citation>- Ballato, P., Cifelli, F., Heidarzadeh, Gh., Ghassemi, M. R., Wickert, A. D., Hassanzadeh, J., Dupont-Nivet, G., Balling, P., Sudo, M., Zeilinger, G., Schmitt, A.K., Mattei, M. and Strecker, M.R., 2016. Tectono-sedimentary evolution of the northern Iranian Plateau: Insights from middle-late Miocene foreland-basin deposits. Basin Research, 29(4): 417-446.  https://doi.org/10.1111/bre.12180. </unstructured_citation></citation><citation key="ref17"><unstructured_citation>- Bauluz, B., Mayayo, M. J., Fernandez-Nieto, C. and Lopez, J. M. G., 2000. Geochemistry of Precambrian and Paleozoic siliciclastic rocks from the Iberian Range (NE Spain): Implications for source-area weathering, sorting, provenance, and tectonic setting. Chemical Geology, 168(1-2): 135-150.‏ </unstructured_citation></citation><citation key="ref18"><unstructured_citation>- Bhatia, M. R., 1983. Plate tectonics and geochemical composition of sandstones. The Journal of Geology, 91(6): 611-627.‏ </unstructured_citation></citation><citation key="ref19"><unstructured_citation>- Brown, M., 2006. Duality of thermal regimes is the distinctive characteristic of plate tectonics since the Neoarchean. Geology, 34(11): 961-964.‏ https://doi.org/10.1130/G22853A.1. </unstructured_citation></citation><citation key="ref20"><unstructured_citation>- Brown, A. C., 2003. Redbeds: Source of metals for sediment-hosted stratiform copper, sandstone copper, sandstone lead and sandstone uranium-vanadium deposits. Geochemistry of sediments and sedimentary rocks: Evolutionary considerations to mineral deposit-forming environments. Geological Association of Canada, Geotext, 4: 121-133.‏ </unstructured_citation></citation><citation key="ref21"><unstructured_citation>- Cardenas, A. A., Girty, G. H., Hanson, A. D., Lahren, M. M., Knaack, C. and Johnson, D., 1996. Assessing differences in composition between low metamorphic grade mudstones and high-grade schists using logratio techniques. The Journal of Geology, 104(3): 279-293.‏ </unstructured_citation></citation><citation key="ref22"><unstructured_citation>- Cox D. P., Lindsey D. A., Singer D. A. and Diggles M. F., 2007. Sediment-hosted copper deposits of the world- deposit models and database. U.S. Geological Survey, Open-file report 03-107, 50 p. https://doi.org/10.3133/ofr2003107. </unstructured_citation></citation><citation key="ref23"><unstructured_citation>- Dabard, M. P., 1990. Lower Brioverian formations (Upper Proterozoic) of the Armorican Massif (France): Geodynamic evolution of source areas revealed by sandstone petrography and geochemistry. Sedimentary Geology, 69(1-2): 45-58.‏ </unstructured_citation></citation><citation key="ref24"><unstructured_citation>- Das, B. K., Al-Mikhlafi, A. S. and Kaur, P., 2006. Geochemistry of Mansar Lake sediments, Jammu, India: Implication for source-area weathering, provenance, and tectonic setting. Journal of Asian Earth Sciences, 26(6): 649-668.‏ Taylor, S. R. and McLennan, S. M., 1985. The continental crust: Its composition and evolution. </unstructured_citation></citation><citation key="ref25"><unstructured_citation>- Dickinson, W. R. and Suczek, C. A., 1979. Plate tectonics and sandstone compositions. Aapg Bulletin, 63(12): 2164-2182. </unstructured_citation></citation><citation key="ref26"><unstructured_citation>- Dickinson, W. R., Beard, L. S., Brakenridge, G. R., Erjavec, J. L., Ferguson, R. C., Inman, K. F. and Ryberg, P. T., 1983. Provenance of North American Phanerozoic sandstones in relation to tectonic setting. Geological Society of America Bulletin, 94(2): 222-235.‏ </unstructured_citation></citation><citation key="ref27"><unstructured_citation>- Durieux, C. G. and Brown, A. C., 2007. Geological context, mineralization, and timing of the Juramento sediment-hosted stratiform copper-silver deposit, Salta district, northwestern Argentina. Mineralium Deposita 42(8): 879-899. https://doi.org/10.1007/s00126-007-0138-2. </unstructured_citation></citation><citation key="ref28"><unstructured_citation>- Flint, S. S., 1989. Sediment-hosted stratabound copper deposits of the Central Andes. Geological Association of Canada Special Paper 36: 371-398. </unstructured_citation></citation><citation key="ref29"><unstructured_citation> https://www.research.manchester.ac.uk/portal/en/publications/sedimenthosted-stratabound-copper-deposits-of-the-central-andes (290b89f5-8f57-400a-b3a0-e8979b8dedfa)/export.html#export. </unstructured_citation></citation><citation key="ref30"><unstructured_citation>- Garzanti, E., Doglioni, C., Vezzoli, G. and Ando, S., 2007. Orogenic belts and orogenic sediment provenance. The Journal of Geology, 115(3): 315-334.‏ </unstructured_citation></citation><citation key="ref31"><unstructured_citation>- Garzanti, E. and Vezzoli, G., 2003. A classification of metamorphic grains in sands based on their composition and grade. Journal of Sedimentary Research, 73(5): 830-837.‏ </unstructured_citation></citation><citation key="ref32"><unstructured_citation>- Hitzman, M.W., Selley, D. and Bull, S., 2010. Formation of sedimentary rock-hosted stratiform copper deposits through Earth history. Economic Geology, 105(3): 627-639.‏	 </unstructured_citation></citation><citation key="ref33"><unstructured_citation>https://doi.org/10.2113/gsecongeo.105.3.627 . </unstructured_citation></citation><citation key="ref34"><unstructured_citation>- Hitzman, M., Kirkham, R., Broughton, D., Thorson, J. and Selley, D., 2005. The sediment-hosted stratiform copper ore system. In: J. F. H. Thompson, R. J. Goldfarb and J.P. Richards (Editors), 100th Anniversary volume. Society of Economic Geologists, Littleton, 609-642. </unstructured_citation></citation><citation key="ref35"><unstructured_citation>- Kirkham, R. V., Eckstrand, O. R., Sinclair, W. D. and Thorpe, R. I., 1996. Sediment-hosted copper. Geology of Canadian Mineral Deposit Types, 223-240. </unstructured_citation></citation><citation key="ref36"><unstructured_citation>- Love, L. G. and Brockley, H., 1973. Peripheral radial texture in framboids of poly-framboidal pyrite. Fortschr. Miner, 50(3): 264-269. https://doi.org/10.1007/BF00563277. </unstructured_citation></citation><citation key="ref37"><unstructured_citation>- MacIntyre, T. J., 2005. Fault-controlled hydrocarbon-related bleaching and sediment-hosted copper mineralization of the Jurassic Wingate sandstone at the Cashin Mine, Montrose county, Colorado. M.Sc. thesis, Colorado School of Mines, Colorado, United State, 360 . </unstructured_citation></citation><citation key="ref38"><unstructured_citation>- Maghfouri, S., Rastad, E., Borg, G., Hosseinzadeh, M. R., Movahednia, M., Mahdavi, A. and Mousivand, F., 2020. Temporal–spatial distribution of sediment-hosted stratabound copper deposits in Iran; Implications for future exploration. Ore Geology Reviews 127(1): 1-30. https://doi.org/10.1016/j.oregeorev.2020.103834. </unstructured_citation></citation><citation key="ref39"><unstructured_citation>- Nesbitt, H. W. and Young, G. M., 1989. Formation and diagenesis of weathering profiles. The Journal of Geology, 97(2): 129-147. </unstructured_citation></citation><citation key="ref40"><unstructured_citation>- Nesbitt, H. W. and Young, G. M., 1984. Prediction of some weathering trends of plutonic and volcanic rocks based on thermodynamic and kinetic considerations. Geochimica et Cosmochimica Acta, 48(7): 1523-1534.‏ </unstructured_citation></citation><citation key="ref41"><unstructured_citation>- Nesbitt, H. W. and Young, G. M., 1982. Early Proterozoic climates and plate motions inferred from major element chemistry of lutites. Nature, 299(5885): 715.‏ </unstructured_citation></citation><citation key="ref42"><unstructured_citation>- Paikaray, S., Banerjee, S. and Mukherji, S., 2008. Geochemistry of shales from the Paleoproterozoic to Neoproterozoic Vindhyan Supergroup: Implications on provenance, tectonics and paleoweathering. Journal of Asian Earth Sciences, 32(1): 34-48.‏ </unstructured_citation></citation><citation key="ref43"><unstructured_citation>- Pettijohn F. J., Potter P. E. and Siever R., 1972. Sand and sandstones. Springer-Verlog, NewYork. </unstructured_citation></citation><citation key="ref44"><unstructured_citation>- Roser, B. P. and Korsch, R. J., 1986. Determination of tectonic setting of sandstone-mudstone suites using SiO2 content and K2O/Na2O ratio. The Journal of Geology, 94(5): 635-650.‏ </unstructured_citation></citation><citation key="ref45"><unstructured_citation>- Roser, B. P. and Korsch, R. J., 1988. Provenance signatures of sandstone-mudstone suites determined using discriminant function analysis of major-element data. Chemical geology, 67(1-2): 119-139.‏ https://doi.org/10.1016/0009-2541(88)90010-1. </unstructured_citation></citation><citation key="ref46"><unstructured_citation>- Suttner, L. J. and Dutta, P. K., 1986. Alluvial sandstone composition and paleoclimate; I, Framework mineralogy. Journal of Sedimentary Research, 56(3): 329-345.‏ https://doi.org/10.1306/212F8909-2B24-11D7-8648000102C1865D </unstructured_citation></citation><citation key="ref47"><unstructured_citation>- Taylor, S. R. and McLennan, S. M., 1985. The continental crust: Its composition and evolution.‏ </unstructured_citation></citation><citation key="ref48"><unstructured_citation>- Thorson, J.P., 2005. Lisbon valley sediment-hosted copper deposits and Paradox basin fluids trip. Society of Economic Geologists, USA, guidebook series 37, 43pp. https://doi.org/10.5382/GB.37. </unstructured_citation></citation><citation key="ref49"><unstructured_citation>- Tucker, M. E., 2009. Sedimentary petrology: An introduction to the origin of sedimentary rocks. John Wiley and Sons, London, 272 .‏ </unstructured_citation></citation><citation key="ref50"><unstructured_citation>- Walker, T. R., 1989. Application of diagenetic alterations in redbeds to the origin of copper in stratiform copper deposits. In: R. W. Boyle, A. C. Brown, W. Jefferson, E. C. Jowett and R. V. Kirkham (Editors), sediment-hosted stratiformcopper deposite. Geological Association of Canada, Canada, 36: 85-96.‏ </unstructured_citation></citation><citation key="ref51"><unstructured_citation>- Whitney, D. L., and Evans, B. W., 2010. Abbreviations for names of rock-forming minerals. American Mineralogist 95(1): 185-187. DOI: 10.2138/am.2010.3371. </unstructured_citation></citation><citation key="ref52"><unstructured_citation>- Woodward, L. A., Kaufman, W. H., Schumacher, O. L., and Talbott, L. W., 1974. Strata-bound copper deposits in Triassic sandstone of Sierra Nacimiento, New Mexico. Economic Geology 69(1): 108-120. https://doi.org/10.2113/gsecongeo.69.1.108 .</unstructured_citation></citation></citation_list></journal_article><journal_article publication_type="full_text"><titles><title>Geology, Alteration, Geochemistry and Element distribution in Alteration Zones of Nughdoz- Zaylik Area, Arasbaran Magmatic Zone</title></titles><contributors><person_name contributor_role="author" sequence="first"><given_name>M.R.</given_name><surname>Hosseinzadeh</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>S.</given_name><surname>Maghfouri</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Mohsen</given_name><surname>Moayyed</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Z.</given_name><surname>Hadavi Chaharborj</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Nasir</given_name><surname>Amel</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Alireza</given_name><surname>Ravankhah</surname></person_name></contributors><publication_date media_type="online"><month>6</month><day>15</day><year>2023</year></publication_date><pages><first_page>71</first_page><last_page>90</last_page></pages><doi_data><doi>10.66224/ijg.42806.17.65.71</doi><resource>http://geology.saminatech.ir/fa/Article/42806</resource><collection property="crawler-based"><item crawler="iParadigms"><resource>http://geology.saminatech.ir/fa/Article/Download/42806</resource></item><item crawler="google"><resource>http://geology.saminatech.ir/fa/Article/Download/42806</resource></item><item crawler="msn"><resource>http://geology.saminatech.ir/fa/Article/Download/42806</resource></item><item crawler="altavista"><resource>http://geology.saminatech.ir/fa/Article/Download/42806</resource></item><item crawler="yahoo"><resource>http://geology.saminatech.ir/fa/Article/Download/42806</resource></item><item crawler="scirus"><resource>http://geology.saminatech.ir/fa/Article/Download/42806</resource></item></collection><collection property="text-mining"><item><resource mime_type="application/pdf">http://geology.saminatech.ir/fa/Article/Download/42806</resource></item></collection></doi_data><citation_list><citation key="ref1"><unstructured_citation>اسدی، ن.، همکاران، 1389.  بررسي ويژگي¬هاي دگرساني در محدوده آبترش-يوزباشي چاي و تحليل رفتار ژئوشيميايي عناصر(اصلي و كمياب) در محيط دگرساني، پترولوژي، سال اول، شماره سوم، 28-11 .</unstructured_citation></citation><citation key="ref2"><unstructured_citation>باباخانی، ع.و لسکویه، ج.، دیو.، 1369. شرح نقشه زمین¬شناسی چهارگوش اهر، 1:250000، سازمان زمین¬شناسی و اکتشافات معدنی کشور. </unstructured_citation></citation><citation key="ref3"><unstructured_citation>حسین زاده، م.ر.، مغفوری، س.، موید، م. و فرید اصل، و.، 1395. معرفی کانسار مس ماری به‌عنوان یک ذخیره چینه کران نوع مانتو در پهنه طارم، شمال غرب ایران، فصلنامه زمین‌شناسی ایران، 10، 38، 17-37. </unstructured_citation></citation><citation key="ref4"><unstructured_citation>ظفرزاده، م.، موسیوند، ف.، رمضانی اومالی، ر. و مهدوی، ا.، 1401. الگوی تشکیل کانسار دو چیله، شرق میامی؛ بر پایه شواهد زمین‌شناسی، کانی‌شناسی و ژئوشیمیایی، فصلنامه زمین نشناسی ایران، 16 ، 64 ، 1-15. </unstructured_citation></citation><citation key="ref5"><unstructured_citation>قدیم‌زاده، ح.، مهرپرتو، م. و محمدی، ب.،1382. پروژه اکتشافات نیمه تفصیلی-تفضیلی طلا در محدوده اکتشافی صفی خانلو-نقدوز (جنوب شرق اهر)، سازمان زمین‌شناسی و اکتشاف معدنی تبریز. </unstructured_citation></citation><citation key="ref6"><unstructured_citation>قدیم‌زاده، ح.، مهرپرتو، م. و محمدی، ب.، 1383. زايش طلا در محدوده اكتشافي صفي خانلو-نقدوز (جنوب خاوري اهر)، هشتمین همایش انجمن زمین‌شناسی ایران. </unstructured_citation></citation><citation key="ref7"><unstructured_citation>مغفوری، س.، موحدنیا، م. و حسین زاده، م.ر.، 1398. زمین‌شناسی، ژئوشیمی و الگوی تشکیل کانه زایی آهن در توالی آتشفشانی-رسوبی ژوراسیک کانسار داش آغل، شمال شرق بوکان، پهنه سنندج-سیرجان، فصلنامه زمین‌شناسی ایران،  13، 50، 75ـ 88</unstructured_citation></citation><citation key="ref8"><unstructured_citation> مهدوی، م.، امینی فضل، ع.، علوی تهرانی، ن.، 1356. نقشه زمین‌شناسی 100000/1، سازمان زمین‌شناسی کشور. </unstructured_citation></citation><citation key="ref9"><unstructured_citation>نوروزی، ا. و مهرپرتو، م.، 1384. بررسی تیپ ژنتیکی و کانی¬سازی ذخیره طلای اپی¬ترمال واقع در رگه سیلیسی شماره 3 روستای زاگلیگ- اهر، بیست و چهارمین گردهمایی علوم زمین، سازمان زمین¬شناسی و اکتشافات معدنی کشور. </unstructured_citation></citation><citation key="ref10"><unstructured_citation>Agard, P., Omrani, J., Jolivet, L., Whitechurch, H., Vrielynck, B., Spakman, W., Monié, P.  and Meyer,P., 2011. Zagros orogeny:  a subduction dominated process, Geological Magazine.:1 - 34. </unstructured_citation></citation><citation key="ref11"><unstructured_citation>Arslan M., Kadir S., Abdioglu E. and Kolayli H., 2003. Origin and formation of kaolin minerals in saprolite of Tertiary alkaline volcanic rocks Northern Main, Economic Geology 11 391-415. </unstructured_citation></citation><citation key="ref12"><unstructured_citation>Barnett, M. jarding, P.M., Brook, S. C. and Selim. H. M., 2000. Adsorption and transport of U (VI) in subsurfsce Media. Soil Science Socirty of American Journal 68, 908-914. </unstructured_citation></citation><citation key="ref13"><unstructured_citation>Dill H., Bosse R., Henning H. and Fricke A, 1997. Mineralogical and chemical variations in hypogene and supergene kaolin deposits in a mobile fold belt the Central Andes of northwestern Peru. Mineralium Deposita, 32, 149-163. </unstructured_citation></citation><citation key="ref14"><unstructured_citation>Fulignati, P., Gioncada, A. and Sbrana, A., 1999. Rareelement (REE) behaviour in the alteration facies of the active magmatic-hydrothermal system of Vulcano (Aeolian Islands, Italy), Journal of Volcanology and Geothermal Research, 88 325-342. </unstructured_citation></citation><citation key="ref15"><unstructured_citation>Gouveia, M. A., M. I. Prudencio, M. O. Figtueiredo, L. C. J. Pereira, J. C. Waerrnborgh, I. Morgado, T. Pena, and A. Lopes, 1993. Behaviour of REE and other trace and major elements during weathering of granitic rocks, Evora, Portugal [J]: Chemical Geolology,  107,  293–296. </unstructured_citation></citation><citation key="ref16"><unstructured_citation>Henderson P, 1984. Rare earth element geochemistry. Elsevier, Amsterdam, 510. </unstructured_citation></citation><citation key="ref17"><unstructured_citation>John, T., Kelmed. R., Carl, J. G. and Schonberg. D. G., 2008. Trace element mobilization in slab due to non steady- state fluid rock interaction: Constrations formation eclogite- Facies transport Vein in bluechist (Tianshan, China). Lithos 10, 31-24. </unstructured_citation></citation><citation key="ref18"><unstructured_citation>Karakaya N., 2009. REE and HFS element behaviour in the alteration facies of the ErenlerDaglVolcanics (Konya, Turkey) and kaoliniteoccurrence", Journal of Geochemical Exploration 101 185-208. </unstructured_citation></citation><citation key="ref19"><unstructured_citation>Laufer F., Yariv S., Steinberg M., 1984. The adsorption of quadrivalent cerium by kaolinite, Clay Minerals 19. 137-149. </unstructured_citation></citation><citation key="ref20"><unstructured_citation>Maiza P. J., Pieroni D. and Marfil S. A., 2003. Geochemistry of hydrothermal kaolins in the SE area of Los Menucos, Province of Rlo Negro, Argentina", In: Dominguez, E. A., Mas, G. R., Cravero, F. (Eds.), 2001, A Clay Odyssey. Elsevier, Amsterdam 123-130. </unstructured_citation></citation><citation key="ref21"><unstructured_citation>Maynard, J.B., 1983. Geochemistry of sedimentary ore deposits, Springer 305. </unstructured_citation></citation><citation key="ref22"><unstructured_citation>Muchangos, A. C., 2006. The mobility of rare earth and other elements in process of alteration of rhyolitic rocks to bentonite (Lebombo Volcanic Mountainous Chain, Mozambigue), Journal of Geochemical Exploration, 88 300-303. </unstructured_citation></citation><citation key="ref23"><unstructured_citation>Mutakyahwa, M. K. D., Ikingura, J. R. and Mruima, A. H., 2000. Geology and geochemistry of bauxite deposits in Lushoto district, Usambara Vill Marie Quebe, Canada. Geochimica et Cosmochimica Acta 64,2199-2220. </unstructured_citation></citation><citation key="ref24"><unstructured_citation>Nessbitt, H. W. and Young, G. M. 1984. Early proterozoic climate and plate motions inferred from major element chemistry of lutites. Nature 299: 715-717. </unstructured_citation></citation><citation key="ref25"><unstructured_citation>Panahi A., Young G.M. and Rainbird R.H., 2000. Behavior of major and trace elements including REE during Paleoproterozoic pedogenesis and diagenetic alteration of an Archean granite near Ville Marie, Quebec, Canada", Geochimica et Cosmochimica Acta 64 2199–2220. </unstructured_citation></citation><citation key="ref26"><unstructured_citation>Plank, T. and Langmuir, C. H., 1988. The chemical composition of subducting sediment And its consequence for the crust and mantle. Chemical Geology 145,325-394. </unstructured_citation></citation><citation key="ref27"><unstructured_citation>Rollinson, H.R., 1993. Using geochemical data: Evaluation, presentation, interpretation, Longman Scientific and Technical, London. Şengör, A.M.C., Görür, N. &amp; Saroglu, F., 1985. “Strike slip faulting and related basin formation in zones of tectonic escape: Turkey as a case study, In: Biddle T.R., Christie-Blick N. (Eds.), Strike-slip Deformation, Basin formation and Sedimentation. Soc. Econ. Paleontol. Min. Spec. Publ., 37: 227-264. </unstructured_citation></citation><citation key="ref28"><unstructured_citation>Salvis., Williams-Jones A. E., 1996.  The role of hydrothermal processes in concentrating highfield strength elements in the Strange Lake peralkaline complex, northeastern Canada", Geochimica et CosmochimicaActa 60 1917-1932. </unstructured_citation></citation><citation key="ref29"><unstructured_citation>Shelley, D., 1993. Igneous and metamorphic rocks under the microscope, Chapman and Hall. </unstructured_citation></citation><citation key="ref30"><unstructured_citation>Taboada. T., Cortizas, A. M., Gscia, C. and Garcia-Rodeja, F., 2006. U and Thweathering and pedogenetic profile devovloped on granitic rock form NW Spain Science of the total Environmental, 356,.192-206. </unstructured_citation></citation><citation key="ref31"><unstructured_citation>Taunton A. E., Welch S. A. and Banfield J. F., 2000. Geomicrobiological controls on light rare earth element, Y and Ba distribution during granite weathering and soil formation", Journal of Alloys and Compounds 303-304 30-36. </unstructured_citation></citation><citation key="ref32"><unstructured_citation>Van der Weijden, C. H. and R. D. Van der Weijden, 1995. Mobility of major, minor and some redox-sensitive trace elements and rare earth elements during weathering of four granitoids in central Portugal [J]: Chemical Geolology 125,  149–168. </unstructured_citation></citation><citation key="ref33"><unstructured_citation>Wood, D. A., 2006. Rare element systematic of acidic maters from the Taupo volcanic zone Newzealand Journal of Geochemical exploration, 99,424-427.</unstructured_citation></citation></citation_list></journal_article><journal_article publication_type="full_text"><titles><title>Palynostratigraphy and palaeoecology of the Middle Jurassic strata, Tapal, west of Shahrood, eastern Alborz</title></titles><contributors><person_name contributor_role="author" sequence="first"><given_name>F.</given_name><surname>Sajjadi</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Firoozeh</given_name><surname>Hashemi Yazdi</surname></person_name><person_name contributor_role="author" sequence="additional"><given_name>Hossain</given_name><surname>Hashemi </surname></person_name></contributors><publication_date media_type="online"><month>6</month><day>15</day><year>2023</year></publication_date><pages><first_page>91</first_page><last_page>110</last_page></pages><doi_data><doi>10.66224/ijg.42807.17.65.91</doi><resource>http://geology.saminatech.ir/fa/Article/42807</resource><collection property="crawler-based"><item crawler="iParadigms"><resource>http://geology.saminatech.ir/fa/Article/Download/42807</resource></item><item crawler="google"><resource>http://geology.saminatech.ir/fa/Article/Download/42807</resource></item><item crawler="msn"><resource>http://geology.saminatech.ir/fa/Article/Download/42807</resource></item><item crawler="altavista"><resource>http://geology.saminatech.ir/fa/Article/Download/42807</resource></item><item crawler="yahoo"><resource>http://geology.saminatech.ir/fa/Article/Download/42807</resource></item><item crawler="scirus"><resource>http://geology.saminatech.ir/fa/Article/Download/42807</resource></item></collection><collection property="text-mining"><item><resource mime_type="application/pdf">http://geology.saminatech.ir/fa/Article/Download/42807</resource></item></collection></doi_data><citation_list><citation key="ref1"><unstructured_citation>ارکانی، ع.، 1397. پالينواستراتيگرافي و ديرين بوم‌شناسی سازند دليچاي در روستاي بار (شمال نيشابور) به‌منظور تهيه¬ي نقشه ديرين بوم‌شناسی البرز و كپه داغ در ترياس و ژوراسيك، پایان‌نامه کارشناسی ارشد، دانشکده زمین‌شناسی، دانشگاه تهران، 107.</unstructured_citation></citation><citation key="ref2"><unstructured_citation>افشار، آ.، 1399. پالینواستراتیگرافی قسمت فوقانی سازند شمشک و قاعده سازند دلیچای در برش چینه‌شناسی برمهان، شمال نیشابور. پایان‌نامه کارشناسی ارشد، دانشکده زمین‌شناسی دانشگاه تهران، 217. </unstructured_citation></citation><citation key="ref3"><unstructured_citation>آقانباتي، ع.، 1377. چینه‌شناسی ژوراسيك ايران. جلد اول و دوم، انتشارات سازمان زمین‌شناسی و اكتشافات معدني كشور، 746. </unstructured_citation></citation><citation key="ref4"><unstructured_citation>بشیری، ن.، 1398. پالینولوژی سازند دلیچای در برش چینه‌شناسی اندریه. شمال غرب فیروزکوه، پایان‌نامه کارشناسی ارشد، دانشکده زمین‌شناسی دانشگاه تهران، 207. </unstructured_citation></citation><citation key="ref5"><unstructured_citation>خاکی، و.، 1380. پالینواستراتیگرافی رسوبات ژوراسیک بالایی منطقه کوه سفید کوههای سلطانیه در جنوب شرق زنجان. پایان‌نامه کارشناسی ارشد، دانشکده علوم، دانشگاه تهران، 201. </unstructured_citation></citation><citation key="ref6"><unstructured_citation>درمنکی فراهانی، س.، 1395. پالینولوژی سازند دلیچای در جنوب شرق (برش گویداغ) و شمال غرب (برش آهق) مراغه، پایان‌نامه کارشناسی ارشد، دانشکده زمین‌شناسی، دانشگاه تهران، 188. </unstructured_citation></citation><citation key="ref7"><unstructured_citation>ده بزرگی، ا. 1392. پالینولوژی و پالئواکولوژی رسوبات ژوراسیک میانی (سازندهای دلیچای و بغمشاه) شرق سمنان (منطقه جام). پایان‌نامه دکتری، دانشکده زمین‌شناسی، دانشگاه تهران، 320. </unstructured_citation></citation><citation key="ref8"><unstructured_citation>ده بزرگی، ا.، 1399. پالینواستراتیگرافی، آب‌وهوا و محیط دیرینه سازند دلیچای در برش چینه‌شناسی بشم (البرز شرقی). مجله دو فصلنامه رخساره‌های رسوبی، سال 16، 8، 20-12. </unstructured_citation></citation><citation key="ref9"><unstructured_citation>سجادی هزاوه، ف.، درمنکی فراهانی، س. و هاشمی یزدی، ف.، 1397. پالینولوژی سازند دلیچای در برش چینه‌شناسی گویداغ، جنوب شرقی مراغه بر مبنای داینوفلاژله ها. مجله پژوهش‌های چینه نگاری و رسوب‌شناسی، 34، 91-108. </unstructured_citation></citation><citation key="ref10"><unstructured_citation>سجادی هزاوه، ف. و درمنکی فراهانی، س.، 1396. پالینواستراتیگرافی و پالئواکولوژی نهشته‌های ژوراسیک میانی در جنوب شرقی مراغه، براساس پالینومورف های خشکی مجله پژوهش‌های چینه نگاری و رسوب‌شناسی 67، 41-64. </unstructured_citation></citation><citation key="ref11"><unstructured_citation>صباغیان، ح.، 1388. پالینواستراتیگرافی سازند دلیچای در کوه راهبند مهدی‌شهر، البرز مرکزی. پایان‌نامه کارشناسی ارشد، دانشکده زمین‌شناسی، دانشگاه تهران، 110. </unstructured_citation></citation><citation key="ref12"><unstructured_citation>محمدخانی، خ. و زارعی، ا.، 1397. پالینواستراتیگرافی سازند دلیچای در برش درجزین در شمال سمنان، مجله پژوهش‌های چينه نگاري و رسوب‌شناسی، سال 34، 73، 21-38. </unstructured_citation></citation><citation key="ref13"><unstructured_citation>نویدی ایزد، ن.، 1392. پالینواستراتیگرافی سازند دلیچای در برش چینه‌شناسی دیکتاش، شمال شرق سمنان. پایان‌نامه کارشناسی ارشد، دانشکده زمین‌شناسی، دانشگاه تهران، 220. </unstructured_citation></citation><citation key="ref14"><unstructured_citation>هاشمی یزدی، ف.، سجادی، ف. و هاشمی، ح.، 1397. پالینواستراتیگرافی رسوبات ژوراسیک میانی (دوگر) البرز مرکزی و شرقی، مجله پژوهش‌های چينه نگاري و رسوب‌شناسی، 34، 72، 21-36. </unstructured_citation></citation><citation key="ref15"><unstructured_citation>هاشمی یزدی، ف.، ده بزرگی، ا.، سجادی، ف. و هاشمی، ح.، 1396. استفاده از گروه‌های اسپورومورفی در بازسازی محیط رسوبی سازند دلیچای در دو برش چینه‌شناسی شرف (البرز مرکزی) و تپال (البرز شرقی). مجله پژوهش‌های چینه نگاری و رسوب‌شناسی، 33، 68، 1-14. </unstructured_citation></citation><citation key="ref16"><unstructured_citation>هاشمی یزدی، ف.، 1394. پالینولوژی و پالئواکولوژی سازند دلیچای در حوضه البرز مرکزی - شرقی و سازند هجدک در شرق ایران مرکزی. پایان‌نامه دکتری، دانشکده زمین‌شناسی، دانشگاه تهران، 388. </unstructured_citation></citation><citation key="ref17"><unstructured_citation>هاشمی یزدی، ف. سجادی، ف. و هاشمی، ح.، 1393. پالئواکولوژی رسوبات ژوراسیک میانی در البرز مرکزی و شرقی، فصلنامه زمین‌شناسی ایران، 8، 32، 3-17. </unstructured_citation></citation><citation key="ref18"><unstructured_citation>هاشمی یزدی، ف.، 1387. پالینواستراتیگرافی سازند دلیچای در برش بلو، شمال سمنان. پایان‌نامه کارشناسی ارشد، دانشکده زمین‌شناسی، دانشگاه تهران، 129. </unstructured_citation></citation><citation key="ref19"><unstructured_citation>Abbink, O.A., Van Konijnenburg-Van Cittert, J.H.A. and Visscher, H., 2004. A sporomorph ecogroup model for the Northwest European Jurassic-Lower Cretaceous: concepts and framework. Netherlands. Journal of Geosciences, Geologieen Mijnbouw, 83, 17-38. </unstructured_citation></citation><citation key="ref20"><unstructured_citation>Aboul Ela, N.M. and El Shamma, A.A., 1997. Palynostratigraphy of the Middle–Upper Jurassic rocks in El-Giddi borehole, North Sinai, Egypt. Acta Geologica Polonica, 41, 45–55. </unstructured_citation></citation><citation key="ref21"><unstructured_citation>Aboul Ela, N.M.and Mahrous, H.A., 1990. Bathonian dinoflagellate cysts from the subsurface Jurassic of North Western Desert Egypt. MERC Ain Shams University of Earth Sciences Series, 4, 95–111. </unstructured_citation></citation><citation key="ref22"><unstructured_citation>Batten, D.J., 1996. Upper Jurassic and Cretaceous miospores. Chapter 26A, Palynofacies and palaeoenvironmental interpretation. In: Jansonius, J. and McGregor, D.C. (eds.): Palynology: Principles and Application, American Association Stratigraphic Palynologists Foundation, 3, 1011-1064. </unstructured_citation></citation><citation key="ref23"><unstructured_citation>Boulter, M. C. and Riddick, A., 1986. Classification and analysis of palynodebris from the Paleocene sediments of the Forties Field. Sedimentology, 33, 871-886. </unstructured_citation></citation><citation key="ref24"><unstructured_citation>Carvaliho, M.A., 2004. Palynological Assemblage from Aptian/ Albian of the Sergipe Basin: paleoenvironmental reconstruction. Revista Brasileira de Paleontologia, 7(2), 159-168. </unstructured_citation></citation><citation key="ref25"><unstructured_citation>Dehbozorgi, A., Sajjadi, F. and Hashemi, H., 2013. Middle Jurassic palynomorphs of the Dalichai Formation, central Alborz Ranges, northeastern Iran: Paleoecological inferences, Science China Earth Sciences, 56, 12, 2107-2115. </unstructured_citation></citation><citation key="ref26"><unstructured_citation>Dodd, J.R. and Stanton, J.r. R.S., 1990. Paleoecology: concepts and applications.. 2nd ed., Wiley, New York, 501. </unstructured_citation></citation><citation key="ref27"><unstructured_citation>El Beialy, S.Y. and Ibrahim, M., 1997. Callovian–Oxfordian (Middle–Upper Jurassic) microplankton and miospores from the Masajid Formation, WX1 boreholes, El Maghra area, North Sinai, Egypt. Biostratigraphy and palaeoenvironmental interpretation. Neues Jahrbuch für Geologie und Paläontologie Abhandlungen, 204, 379–398. </unstructured_citation></citation><citation key="ref28"><unstructured_citation>El Beialy, S.Y., 1994. Middle Jurassic and Neocomian palynomorphs from the Mamura IX borehole, Western Desert, Egypt. Neues Jahrbuch für Geologie und Paläontologie Abhandlungen, 193, 195–208. </unstructured_citation></citation><citation key="ref29"><unstructured_citation>Feist-Burkhardt, S. and Monteil, E., 2001. Gonyaulacacean dinoflagellate cysts with multi-plate precingular archaeopyle. Neues Jahrbuch für Geologie und Paläontologie, Abhandlungen, v.219, Fensome, R.A., 1979. Dinoflagellate cysts and acritarchs from the Middle and Upper Jurassic of Jameson Land, East Greenland. Bulletin Grønlands Geologiske Undersøgelse, 132, 98. </unstructured_citation></citation><citation key="ref30"><unstructured_citation>Fenton, J.P.G., Neves, R. and Piel, K.M., 1980. Dinoflagellate cysts and acritarchs from Upper Bajocian to Middle Bathonian strata of central and southern England. Palaeontology, 23, 151–170. </unstructured_citation></citation><citation key="ref31"><unstructured_citation>Fenton, J.P.G. and Fisher, M.J., 1978. Regional distribution of marine microplankton in the Bajocian and Bathonian of north-west Europe. Palínologia, número extraordinario, 1, 233–243. </unstructured_citation></citation><citation key="ref32"><unstructured_citation>Fisher, M.J. and Riley, L.A., 1980: The stratigraphic distribution of dinoflagellate cysts at the boreal Jurassic–Cretaceous boundary. Proceedings of the 4th International Palynological Conference (Lucknow) 2, 313–329. </unstructured_citation></citation><citation key="ref33"><unstructured_citation>Gedl, P., 2008. Organic-walled dinoflagellate cyst stratigraphy of dark Middle Jurassic marine deposits of the Pieniny Klippen Belt, West Carpathians. Studia Geologica Polonica, 131, 7—227. </unstructured_citation></citation><citation key="ref34"><unstructured_citation>Ghasemi-Nejad, E., Sabbaghiyan, H. and Mosaddegh, H., 2012. Paleobiogeographic implications of late Bajocian-late Callovian (Middle Jurassic) dinoflagellate cysts from the Central Alborz Mountain, northern Iran. Journal of Asian Earth Sciences, 43, 1-10. </unstructured_citation></citation><citation key="ref35"><unstructured_citation>Ghasemi-Nejad, E., 2001. Dinocyst Morphotype Groups Versus Sequence Stratigraphy of the Upper Jurassic Sediments of the Northern Switzerland Sedimentary Basin. International Journal of Science, 2. </unstructured_citation></citation><citation key="ref36"><unstructured_citation>Gorin, G.E. and Steffen, D., 1991. Organic facies as a tool for recording eustatic variations in marine fine-grained carbonates-example of the Berriasian stratotype at Berrias (Ardéche, SE France). Palaeogeography, Palaeoclimatology, Palaeoecology, 85,303-320. </unstructured_citation></citation><citation key="ref37"><unstructured_citation>Habib, D. and Miller, J.A., 1989. Dinoflagellate species and organic facies evidence of marine transgression and regression in the Atlantic coastal plain. Palaeogeography, Palaeoclimatology, Palaeoecology, 74, 23–47. </unstructured_citation></citation><citation key="ref38"><unstructured_citation>Hashemi Yazdi, F., Sajjadi, F. and Dehbozorgi, A., 2015. A new lycophyte miospore species from the middle Juraaic of Iran. Revista Brasileira de Paleontologia, 18(2). </unstructured_citation></citation><citation key="ref39"><unstructured_citation>Ibrahim, M.I.A, Aboul Ela, N.M. and Kholeif, S.E., 2001. Palynostratigraphy of Jurassic to Lower Cretaceous sequences from the Eastern Desert of Egypt. Journal of African Earth Sciences, 32(2), 269-297. https://doi.org/ 10.1016/S0899-5362(01)90007-7. </unstructured_citation></citation><citation key="ref40"><unstructured_citation>Ibrahim, M.I.A. and El Beialy, S. 1995. Kimmeridgian–Barremian palynostratigraphy of the Malha-1 borehole, North Sinai, Egypt. Sciences Géologiques Bulletin, 48(4), 187–209. </unstructured_citation></citation><citation key="ref41"><unstructured_citation>Mafi, A., Ghasemi-Nejad, E., Ashouri, A. and Vahidi-Nia, M., 2013. Dinoflagellate cysts from the upper Bajocian- lower Oxfordian of the Dalichai Formation in Binalud Mountains (NE Iran) their biostratigraphical and biogeographical significance. Arabian Journal of Geosciences, 7(9), 3683-3692. </unstructured_citation></citation><citation key="ref42"><unstructured_citation>Mahmoud, M.S. and Moawad, A.M.M., 2000. Jurassic-Cretaceous (Bathonian to Cenomanian) palynology and stratigraphy of the West Tiba-1 borehole, northern Western Desert, Egypt. Journal of African Earth Sciences, 30(2), 401-416. https://doi.org/10.1016/S0899-5362 (00)00026-9. </unstructured_citation></citation><citation key="ref43"><unstructured_citation>Phipps, D. and Playford, G., 1984. Laboratory techniques for extraction of palynomorphs from sediments. Department of Geology, University of Queensland. Papers, 11(1), 1-23. </unstructured_citation></citation><citation key="ref44"><unstructured_citation>Poulsen, N.E. and Riding, J.B., 2003. The Jurassic dinoflagellate cyst zonation of Subboreal Northwest Europe. In: Ineson, J.R. and Surlyk, F. (eds). The Jurassic of Denmark and Greenland. Geological Survey of Denmark and Greenland Bulletin, 1, 115-144. </unstructured_citation></citation><citation key="ref45"><unstructured_citation>Riding, J.B. and Hubbard, N.L.B., 1999. Jurassic (Toarcian to Kimmeridgian) Dinoflagellate Cysts and Paleoclimates. Palynology, 23, 15-30. </unstructured_citation></citation><citation key="ref46"><unstructured_citation>Riding, J.B. and Thomas, J.E., 1992. Dinoflagellate cysts of the Jurassic System. In: Powell, A.J. (ed), A stratigraphic index of dinoflagellate cysts. British Micropalaeontological Society Publications Series. Chapman and Hall, London, 7-97. </unstructured_citation></citation><citation key="ref47"><unstructured_citation>Riding, J.B., 1987. Dinoflagellate cyst stratigraphy of the Nettleton Bottom Borehole (Jurassic: Hettangian to Kimmeridgian), Lincolnshire, England. Proceedings of the Yorkshire Geological Society, 46, 231-266. </unstructured_citation></citation><citation key="ref48"><unstructured_citation>Riley, L.A. and Fenton, J.P.G., 1982. A dinocyst zonation for the Callovian to Middle Oxfordian succession (Jurassic) of northwest Europe. Palynology, 6, 193-202. </unstructured_citation></citation><citation key="ref49"><unstructured_citation>Scull, B.J., Felix, C.J., McCaleb, S.B. and Shaw, W.G., 1966. The inter-discipline approach to paleoenvironmental interpretations. Transactions of the Gulf Coast Association of Geological Societies, 16: 81-117. </unstructured_citation></citation><citation key="ref50"><unstructured_citation>Sarjeant, W.A.S., 1974. Fossil and living dinoflagellates. London: Academic Press, 182. </unstructured_citation></citation><citation key="ref51"><unstructured_citation>Schioler, P., 1992. Dinoflagellate cysts from the Arnager Limestone Formation (Coniacian, Late Cretaceous), Bornholm, Denmark. Review of Palaeobotany and Palynology, 72, 1-25. </unstructured_citation></citation><citation key="ref52"><unstructured_citation>Skupien, P., Pavlus, J., Falahatgar, M. and Javidan, M., 2015. Middle Jurassic organic-walled dinoflagellate cysts and palynofacies from Telma- Dareh, south of Sari, northern Iran. Review of Palaeobotany and Palynology, 223, 128-137. </unstructured_citation></citation><citation key="ref53"><unstructured_citation>Smelror, M. and Dietl, G., 1994. Dinofiagellates cysts of the Bathonian/Callovian boundary beds in Southern Germany. Geobios, 17, 453-459. </unstructured_citation></citation><citation key="ref54"><unstructured_citation>Smelror, M., Arhus, N., Melendez, G. L. M. and Lardies, M. D., 1991. A reconnaissance study of Bathonian to Oxfordian (Jurassic) dinoflagellates and acritarchs from the Zaragoza region (NE Spain) and Figueira da Foz (Portugal). Revista Española de Micropaleontología, 23(2), 47‐82. </unstructured_citation></citation><citation key="ref55"><unstructured_citation>Smelror, M. and Leereveld, H., 1989. Dinoflagellate cyst and acritarch assemblages from the Late Bathonian-Early Oxfordian of Montange Crussol, Rhône Valley, southern France. Palynology, 13, 121-141. </unstructured_citation></citation><citation key="ref56"><unstructured_citation>Steiger, R., 1966. Die Geologie der West-Firuzkuh-Area (Zentral Elburz/Iran). Geologisches Institute der Eidgenosischen Technischen Hochschule und der Universitat Zürich, 68, 1-145. </unstructured_citation></citation><citation key="ref57"><unstructured_citation>Traverse A., 2007. Paleopalynology.2nd ed. Springer, Dordrecht, Netherlands, 813. </unstructured_citation></citation><citation key="ref58"><unstructured_citation>Tyson, R.V., 1993. Palynofacies analysis. In: Jenkins D.G. (ed), Applied Micropaleontology, Kluwer Academic Publishers, Dordrecht, 153-172. </unstructured_citation></citation><citation key="ref59"><unstructured_citation>Tyson, R.V., 1995. Sedimentary organic matter; organic facies and palynofacies. Chapman and Hall, London, 615. </unstructured_citation></citation><citation key="ref60"><unstructured_citation>Van der Zwan, C.J., 1990. Palynostratigraphy and palynofacies reconstruction of the Upper Jurassic to lowermost Cretaceous of the Draugen Field, offshore Mid Norway. Review of Palaeobotany and Palynology, 62, 157-186. </unstructured_citation></citation><citation key="ref61"><unstructured_citation>Vozzhennikova, T. F., 1965. Introduction to the study of fossil peridinian algae. Nauka Publishers, Moscow, 154. </unstructured_citation></citation><citation key="ref62"><unstructured_citation>Wheeler, J.W. and Sarjeant, W.A.S., 1990. Jurassic and Cretaceous palynomorphs from the central Alborz Mountains, Iran. Their significance in biostratigraphy and palaeogeography. Modern Geology, 14(4), 375. </unstructured_citation></citation><citation key="ref63"><unstructured_citation>Woollam, R. and Riding, J.B., 1983. Dinoflagellate cyst zonation of the English Jurassic. Institute of Geological Sciences, 83/2, 42.</unstructured_citation></citation></citation_list></journal_article></journal></body></doi_batch>