中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Phase equilibria modeling of anatexis during ultra-high temperature metamorphism of the crust

文献类型:期刊论文

作者Huang, Guangyu1; Guo, Jinghui1; Palin, Richard2
刊名LITHOS
出版日期2021-10-01
卷号398页码:22
ISSN号0024-4937
关键词Anatexis Crustal differentiation Forward modeling Open system Ultra-high temperature
DOI10.1016/j.lithos.2021.106326
英文摘要Ultra-high temperature (UHT) granulite-facies metamorphism is commonly identified in Mg-Al-rich rocks. Many such lithologies are thought to be metasedimentary rocks based on the presence of detrital zircon. However, whether a metasedimentary protolith is required to form diagnostic mineral assemblages and how much melt is lost during burial and heating to reach UHT conditions varies significantly according to the prograde pressure-temperature path. In this study, integrated thermodynamic modeling, accessory mineral modeling, and trace element modeling has been conducted on an average metapelite composition and average mid-ocean ridge basalt (MORB) composition under open-system conditions. The results show at least three and two melt loss events occur before reaching UHT conditions in initially water-saturated pelitic and basaltic rocks, respectively. Around 22-27 vol% S-type granite and 12-17 vol% I-type granite would be produced during these evolutions, respectively. Melt extraction leads to an increase of Al and Mg in metapelite residua. Mineral assemblage sapphirine + quartz is then allowed to form at higher grades; however, metabasalt does not form these UHT diagnostic assemblages, regardless of the amount of melt lost. During equilibrium melting, crustal differentiation induced by UHT metamorphism would significantly reduce the amount of heat-producing elements (HPEs) in the meltdepleted residuum, which progressively decreases a rock's heat production capacity. In reality, however, new monazite grains likely form during peak metamorphism and some monazite grains would be shielded by porphyroblasts, resulting in an increase of Th in the residua during heating. Even so, we suggest the efficiency of heat production would still decrease, given the heat production rate of Th is much lower than U. Considering some granitic rocks with relatively high heat production are emplaced into the granulite terrane, we suggest that radioactive heat production may be a contributing driving force for UHT metamorphism; however, it is not sufficient. Most heat required to generate UHT granulites must come from hybrid sources, such as advected heat from the mantle, conducted heat from nearby magmatic intrusions, radioactive heat production, and ductile shear deformation.
WOS关键词CONTINENTAL-CRUST ; MONAZITE GROWTH ; SOUTH-AFRICA ; ZIRCON ; BEHAVIOR ; CONSEQUENCES ; GEOCHEMISTRY ; GRANULITES ; GRANITE ; BEARING
资助项目National Natural Science Foundation of China[41902057] ; National Natural Science Foundation of China[41890832] ; China Postdoctoral Science Foundation[2019M650834]
WOS研究方向Geochemistry & Geophysics ; Mineralogy
语种英语
出版者ELSEVIER
WOS记录号WOS:000683549000004
资助机构National Natural Science Foundation of China ; National Natural Science Foundation of China ; National Natural Science Foundation of China ; National Natural Science Foundation of China ; China Postdoctoral Science Foundation ; China Postdoctoral Science Foundation ; China Postdoctoral Science Foundation ; China Postdoctoral Science Foundation ; National Natural Science Foundation of China ; National Natural Science Foundation of China ; National Natural Science Foundation of China ; National Natural Science Foundation of China ; China Postdoctoral Science Foundation ; China Postdoctoral Science Foundation ; China Postdoctoral Science Foundation ; China Postdoctoral Science Foundation ; National Natural Science Foundation of China ; National Natural Science Foundation of China ; National Natural Science Foundation of China ; National Natural Science Foundation of China ; China Postdoctoral Science Foundation ; China Postdoctoral Science Foundation ; China Postdoctoral Science Foundation ; China Postdoctoral Science Foundation ; National Natural Science Foundation of China ; National Natural Science Foundation of China ; National Natural Science Foundation of China ; National Natural Science Foundation of China ; China Postdoctoral Science Foundation ; China Postdoctoral Science Foundation ; China Postdoctoral Science Foundation ; China Postdoctoral Science Foundation
源URL[http://ir.iggcas.ac.cn/handle/132A11/101901]  
专题地质与地球物理研究所_岩石圈演化国家重点实验室
通讯作者Huang, Guangyu
作者单位1.Chinese Acad Sci, Inst Geol & Geophys, State Key Lab Lithospher Evolut, Beijing 100029, Peoples R China
2.Univ Oxford, Dept Earth Sci, South Parks Rd, Oxford OX1 3AN, England
推荐引用方式
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Huang, Guangyu,Guo, Jinghui,Palin, Richard. Phase equilibria modeling of anatexis during ultra-high temperature metamorphism of the crust[J]. LITHOS,2021,398:22.
APA Huang, Guangyu,Guo, Jinghui,&Palin, Richard.(2021).Phase equilibria modeling of anatexis during ultra-high temperature metamorphism of the crust.LITHOS,398,22.
MLA Huang, Guangyu,et al."Phase equilibria modeling of anatexis during ultra-high temperature metamorphism of the crust".LITHOS 398(2021):22.

入库方式: OAI收割

来源:地质与地球物理研究所

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