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Zirconium in rutile thermometry of the Himalayan ultrahigh-pressure eclogites and their retrogressed counterparts, Kaghan Valley, Pakistan
Hafiz UrRehman;  YoshiyukiIizuka;  Hao-YangLee;  Sun-LinChung;  ZhanzhanDuan;  ChunjingWei;  Tahseenullah Khane;  Tehseen Zafarf;  Hiroshi Yamamotoa
2019
Source PublicationLithos
Volume344–345Pages:86-99
Abstract

This study reports zirconium-in-rutile thermometry data from the Himalayan ultrahigh-pressure eclogites and their retrogressed counterparts. The Zr contents of three textural varieties of rutile i.e. matrix rutile, inclusion phase, and overgrown by ilmenite/titanite from coesite-bearing eclogites, slightly retrogressed eclogites, highly retrogressed eclogites, and amphibolites were analyzed for Zr contents using the electron probe micro-analyser. Majority of the rutile grains exhibited homogeneous chemical compositions in all the aforementioned textural varieties; however, some of grains were relatively heterogeneous. Average temperature values of 729 °C, 727 °C, and 706 °C were obtained for the matrix, inclusion, and overgrown rutiles from UHP eclogites and of 705 °C, 699 °C, and 707 °C for those from HP eclogites, respectively. Slightly retrogressed eclogites yielded similar average T values of 703 °C, 706 °C, and 706 °C, respectively, whereas highly retrogressed eclogites resulted in relatively low average temperatures, ca. 690 °C, 691 °C, and 679 °C, respectively. When compared with these eclogites, lower average T values of 672 °C, 630 °C, and 656 °C were obtained from garnetites, and of 665 °C, 658 °C, and 640 °C from garnet amphibolites, respectively. The relatively homogeneous Zr contents and higher temperature values from the matrix rutile in HP and UHP eclogites suggest peak or near-peak metamorphic crystallization, whereas grains with low Zr contents, yielding low temperature values, were likely to be affected by the late-stage retrogression.

KeywordZr-in-rutile Thermometry himalaya kaghan Valley uhp Eclogites garnet-amphibolites
Indexed BySCI
Language英语
Document Type期刊论文
Identifierhttp://ir.gyig.ac.cn/handle/42920512-1/10827
Collection矿床地球化学国家重点实验室
Affiliation1.Graduate School of Science and Engineering, Kagoshima University, Kagoshima 890-0065, Japan
2.Institute of Earth Sciences, Academia Sinica, Taipei, Taiwan
3.Department of Geosciences, National Taiwan University, Taipei, Taiwan
4.MOE Key Laboratory of Orogenic Belts and Crustal Evolution, School of Earth and Space Sciences, Peking University, Beijing 100871, China
5.Department of Earth and Environmental Sciences, Bahria University, Islamabad, Pakistan
6.State Key Laboratory of Ore Deposit Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China
Recommended Citation
GB/T 7714
Hafiz UrRehman;YoshiyukiIizuka;Hao-YangLee;Sun-LinChung;ZhanzhanDuan;ChunjingWei;Tahseenullah Khane;Tehseen Zafarf;Hiroshi Yamamotoa. Zirconium in rutile thermometry of the Himalayan ultrahigh-pressure eclogites and their retrogressed counterparts, Kaghan Valley, Pakistan[J]. Lithos,2019,344–345:86-99.
APA Hafiz UrRehman;YoshiyukiIizuka;Hao-YangLee;Sun-LinChung;ZhanzhanDuan;ChunjingWei;Tahseenullah Khane;Tehseen Zafarf;Hiroshi Yamamotoa.(2019).Zirconium in rutile thermometry of the Himalayan ultrahigh-pressure eclogites and their retrogressed counterparts, Kaghan Valley, Pakistan.Lithos,344–345,86-99.
MLA Hafiz UrRehman;YoshiyukiIizuka;Hao-YangLee;Sun-LinChung;ZhanzhanDuan;ChunjingWei;Tahseenullah Khane;Tehseen Zafarf;Hiroshi Yamamotoa."Zirconium in rutile thermometry of the Himalayan ultrahigh-pressure eclogites and their retrogressed counterparts, Kaghan Valley, Pakistan".Lithos 344–345(2019):86-99.
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