Ways of Rare Earth Elements Migration and Transportation to the coals of the Shubarkol Deposit

IF 0.8 Q4 METALLURGY & METALLURGICAL ENGINEERING
G. Blyalova, A. N. Kopobayeva, A. Amangeldykyzy, N. Askarova, D. Ozhigin
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Abstract

The article presents the results of studying the mineralogical and geochemical features of coals and clay interlayers of the Shubarkol deposit. There were analyzed 71 samples of clay layers and 49 samples of coal using the instrumental neutron activation analysis (INAA), powder X-ray diffractometry, and scanning electron microscopy. A comprehensive analysis of the geochemical and mineralogical characteristics of coals and their enclosing clay interlayers was carried out. A variety of geochemical criteria made it possible to establish the facts of the rare earth elements (REE) migration, and the latest data of mineralogy made it possible to establish the ways of their transportation to the paleobasin in the syn- and epigenetic periods of the Shubarkol deposit formation. The data of the paleoclimate and water composition of the paleobasin of peat formation are presented for the first time. Among other things, the analysis made it possible to identify a number of independent sources and various mechanisms of REE accumulation in the sediments of the Shubarkol deposit. The main patterns of the REE distribution that are expressed in the predominance of light lanthanides over heavy lanthanides, were established, and the role and composition of the rocks surrounding coal deposits in the concentration of REE were considered. Aluminosilicates, sulfides, and sulfates with inclusions of microparticles of rare and rare-earth REE elements were found in coals and clay interlayers.
舒巴里科尔矿床稀土元素向煤的迁移和输运途径
本文介绍了舒巴里科尔矿床煤、粘土夹层的矿物学和地球化学特征。采用仪器中子活化分析(INAA)、粉末x射线衍射和扫描电镜对71个粘土层样品和49个煤样品进行了分析。综合分析了煤及其包覆粘土夹层的地球化学和矿物学特征。多种地球化学指标使稀土元素迁移事实的确立成为可能,最新矿物学资料使其在舒巴里科尔矿床形成同成期和后成期向古盆地迁移的途径得以确立。本文首次获得了泥炭形成古盆地的古气候和水成分资料。除其他外,该分析使确定Shubarkol矿床沉积物中稀土元素的一些独立来源和各种富集机制成为可能。建立了以轻镧系优于重镧系为主要特征的稀土元素分布模式,并分析了矿床周围岩石的组成和作用。在煤和粘土夹层中发现了含有稀土和稀土元素微粒包裹体的铝硅酸盐、硫化物和硫酸盐。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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42.90%
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