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Petrogenesis of the Neoarchean zincian chromite within ultramafic xenoliths,Bastar Craton,India
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作者 Arpita Karmakar Tushar Meshram +1 位作者 Mohammad Asif Yogesh Pandey 《Acta Geochimica》 EI CAS CSCD 2023年第3期471-487,共17页
The present study reports and discusses the genesis of zincian chromite in the ultramafic xenoliths from the Dongripali area,Bastar craton,Central India.The zincian chromite is in the ultramafic xenoliths of Bengpal s... The present study reports and discusses the genesis of zincian chromite in the ultramafic xenoliths from the Dongripali area,Bastar craton,Central India.The zincian chromite is in the ultramafic xenoliths of Bengpal supracrustal rock hosted by Neoarchaean Bundeli gneisses.Compositionally zincian chromite shows a range of Cr_(2)O_(3)(39.69 to 51.66 wt%),Al_(2)O_(3)(05.30 wt%to 08.71 wt%),FeO(21.74 wt%to 27.51 wt%),Fe_(2)O_(3)(10.19 wt%to 19.36wt%)with higher ZnO content ranging from 1.73 wt%to 4.08 wt%.Accordingly,their Cr#[Cr/(Cr+Al)]varies in a narrow range from 0.83 to 0.85.Its calculated melt composition supports metamorphic or post-magmatic nature rather than common occurrences such as inclusion in diamonds,meteorites,and association with any sulfide-rich mineralised belt.This reveals that the post-magmatic processes play a vital role in transforming chromite to zincian chromite.The empirical thermometric calculation from chromite,amphibole,and pyroxene support their metamorphic origin and formed during low-P and high-T amphibolite grade facies of metamorphism(~700℃).The Neoarchaean granitic magmatism has a significant role in generating and transferring the heat during contact metamorphism with hydration of ultramafic xenoliths and further alteration,i.e.,serpentinisation.The olivine is a major repository for Mn,Zn,and Co in peridotite/ultramafic;these elements get mobilised during the metamorphism and serpentinisation.This is a possible reason for the mobilisation of zinc and incorporation in the chromite within altered ultramafic.As a result,chromiterich ultramafic xenolith subjected to metamorphic process gets enrichment of Zn and Fe due to elemental exchange.It converts common chromite into zincian chromite,as reported in altered ultramafics elsewhere. 展开更多
关键词 zincian chromite ULTRAMAFIC Neoarchaean granitic magmatism High-grade metamorphism
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四川冕宁某铅锌矿床中的锌黝铜矿 被引量:1
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作者 徐盛林 《矿物学报》 CAS CSCD 北大核心 1990年第3期232-234,共3页
本文锌黝铜矿产于四川冕宁某铅锌矿床中。铅锌矿床为原生沉积成因。后受低级区域变质作用。对锌黝铜矿作了电子探针分析和X射线粉晶分析。两个锌黝铜矿颗粒的电子探针分析结果(wt%)是:Cu 36.95—37.63,平均37.29,Ag 0.58—1.39,平均0.9... 本文锌黝铜矿产于四川冕宁某铅锌矿床中。铅锌矿床为原生沉积成因。后受低级区域变质作用。对锌黝铜矿作了电子探针分析和X射线粉晶分析。两个锌黝铜矿颗粒的电子探针分析结果(wt%)是:Cu 36.95—37.63,平均37.29,Ag 0.58—1.39,平均0.99;Zn 7.08—7.53,平均7.31,Fe 0.22—0.26,平均0.24,Sb 27.19—27.69,平均27.58;As 2.37—2.51,平均2.44;S 24.35—24.67,平均24.51。相对平均化学成分的晶体化学式为,(Cu_(9-84) Ag_(0.16))_(10.00)(Zn_(1.90)Cu_(0.14) Fe_(0.07))_(2.11) (Sb_(3.85) As_(0.55))_(4.40) S_(13),简化式为Cu_(10) Zn_2Sb_4S_(13)。 展开更多
关键词 锌黝铜矿 铅锌矿 四川 矿床
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透射电镜原位观察Cu/ZnO甲醇催化剂前驱体的分解过程(英文)
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作者 肖康 王琼 陈月花 《化学通报》 CAS CSCD 北大核心 2018年第11期992-999,共8页
本文通过透射电镜原位研究了甲醇催化剂前驱体锌孔雀石的分解过程。HRTEM、电子衍射及STEM面扫元素分析结果显示锌孔雀石分解过程可大致分为四个阶段:分解首先同时引发于锌孔雀石晶体内部的随机区域和晶体外表面,导致局域结构塌陷形成... 本文通过透射电镜原位研究了甲醇催化剂前驱体锌孔雀石的分解过程。HRTEM、电子衍射及STEM面扫元素分析结果显示锌孔雀石分解过程可大致分为四个阶段:分解首先同时引发于锌孔雀石晶体内部的随机区域和晶体外表面,导致局域结构塌陷形成内部孔洞和非晶表面扩散层;随后孔洞逐渐增多增大,表面扩散层进一步增厚,同时CuO在孔洞区域和表面扩散层区域逐步结晶形成小晶粒;接着锌孔雀石结构完全分解,形成相互交织的CuO和ZnO,其中CuO小晶粒被非晶态ZnO相互隔离;此后进一步加热,ZnO逐步结晶得到相互交织的CuO晶粒和ZnO晶粒,即焙烧后催化剂的结构。本研究通过TEM直观观察了整个分解过程的结构变化,增进了对甲醇催化剂前驱体焙烧过程的理解,也有助于催化剂焙烧条件的优化。 展开更多
关键词 甲醇合成 催化剂前驱体 锌孔雀石 焙烧 原位TEM
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