首页> 外文期刊>Minerals >Mineralogical and Geochemical Compositions of the Lopingian Coals and Carbonaceous Rocks in the Shugentian Coalfield, Yunnan, China: with Emphasis on Fe-Bearing Minerals in a Continental-Marine Transitional Environment
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Mineralogical and Geochemical Compositions of the Lopingian Coals and Carbonaceous Rocks in the Shugentian Coalfield, Yunnan, China: with Emphasis on Fe-Bearing Minerals in a Continental-Marine Transitional Environment

机译:中国云南顺根田煤田罗坪滩煤和碳质岩石的矿物学和地球化学组成:以陆-海过渡环境中含铁矿物为重点

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This paper presents the mineralogical and geochemical compositions of coal benches and non-coal (carbonaceous rock benches, parting, roof and floor) samples from the No. 1 Coal in the Longtan Formation of the Permian-Lopingian epoch from the Shugentian Coalfield, eastern Yunnan Province, southwestern China. The coal is rich in Nb, Ta, Zr, and Hf, which were derived from the Kangdian Upland with the dominant compositions of the Emeishan basalt. The minerals identified in the samples include mixed-layer illite-smectite, kaolinite, quartz, siderite, and minor calcite, pyrite, anatase and ankerite. Albite and chamosite occur in the roof and floor samples. The parting sample (SGT1-2p) is characterized by abundant siderite (64.9%) and calcite (20.1%), and one carbonaceous rock sample SGT1-11 contained a large amount of pyrite (26.1%). Four factors were responsible for the geochemical and mineralogical compositions in the samples; namely, the terrigenous detrital materials transported from the Kangdian Upland, direct volcanic ash inputs, multi-stage inputs of hydrothermal fluids, and marine influences. The co-existence of siderite and pyrite was attributed to a continental-marine transitional environment.
机译:本文介绍了云南东部水gentian煤田龙潭组二叠纪-Lopingian时代1号煤的煤阶和非煤(碳质岩阶,分型,顶板和底板)样品的矿物学和地球化学组成。中国西南省。煤中富含Nb,Ta,Zr和Hf,这些煤是从峨眉山玄武岩的主要成分的康甸山地中提取的。样品中鉴定出的矿物包括混合层伊利石-蒙脱石,高岭石,石英,菱铁矿和次方解石,黄铁矿,锐钛矿和铁皮石。屋顶和地板样品中会发生阿尔比特和硫铁矿。分离样品(SGT1-2p)的特征是富含菱铁矿(64.9%)和方解石(20.1%),一个碳质岩石样品SGT1-11含有大量的黄铁矿(26.1%)。样品中的地球化学和矿物组成是由四个因素引起的。从康甸山地运来的陆源碎屑物,直接火山灰输入,热液的多级输入以及海洋影响。菱铁矿和黄铁矿的共存归因于大陆-海洋过渡环境。

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