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Major and Trace Element Geochemistry of Coals and Intra-Seam Claystones from the Songzao Coalfield, SW China

机译:中国西南地区松藻煤田煤和煤层内粘土的主要和微量元素地球化学

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Silicic, mafic and alkali intra-seam tonsteins have been known from SW China for a number of years. This paper reports on the geochemical compositions of coals and tonsteins from three seam sections of the Songzao Coalfield, SW China, and evaluates the geological factors responsible for the chemical characteristics of the coal seams, with emphasis on the influence from different types of volcanic ashes. The roof and floor samples of the Songzao coal seams mostly have high TiO2 contents, consistent with a high TiO2 content in the detrital sediment input from the source region, namely mafic basalts from the Kangdian Upland on the western margin of the coal basin. The coals from the Songzao Coalfield generally have high ash yields and are highly enriched in trace elements including Nb, Ta, Zr, Hf, rare earth elements (REE), Y, Hg and Se; some variation occurs among different seam sections due to input of geochemically different volcanic ash materials. The geochemistry of the Songzao coals has also been affected by the adjacent tonstein/K-bentonite bands. The relatively immobile elements that are enriched in the altered volcanic ashes also tend to be enriched in the adjacent coal plies, possibly due to leaching by groundwaters. The coals near the alkali tonstein bands in the Tonghua and Yuyang sections of the Songzao Coalfield are mostly high in Nb, Ta, Zr, Hf, Th, U, REE and Y. Coal samples overlying the mafic K-bentonite in the Tonghua section are high in V, Cr, Zn and Cu. The Datong coal, which has neither visible tonstein layers nor obvious volcanogenic minerals, has high TiO2, V, Cr, Ni, Cu and Zn concentrations in the intervals between the coal plies affected by mafic and alkaline volcanic ashes. This is consistent with the suggestion that a common source material was supplied to the coal basin, derived from the erosion of mafic basaltic rocks of the Kangdian Upland. Although the Songzao coal is generally a high-sulfur coal, most of the chalcophile trace elements show either poor or negative correlations with total iron sulfide contents. The absence of traditional pyrite-metal associations may reflect wide variations in the concentrations of these elements in individual pyrite/marcasite components, or simply poor retention of these elements in the pyrite/marcasite of the relevant coals.
机译:硅质,镁铁质和碱性的煤层内内补钙素已经从西南中国获知多年。本文报道了中国西南松藻煤田三个煤层的煤和吨岩的地球化学组成,并评估了影响煤层化学特征的地质因素,并重点研究了不同类型火山灰的影响。松藻煤层的顶板和底板样品大多具有较高的TiO 2 含量,这与从源区(铁镁质)输入的碎屑沉积物中较高的TiO 2 含量一致。煤田西缘的康甸高地的玄武岩。松枣煤田的煤通常具有很高的灰分产率,并且富含微量元素,包括Nb,Ta,Zr,Hf,稀土元素(REE),Y,Hg和Se。由于地球化学上不同的火山灰物质的输入,不同的煤层之间会发生一些变化。松藻煤的地球化学也受到了相邻的tonstein / K-膨润土带的影响。可能是由于地下水的淋溶,富集在改变后的火山灰中的相对固定的元素也倾向于富集在相邻的煤层中。松藻煤田通化和榆阳段碱性吨斯坦带附近的煤中Nb,Ta,Zr,Hf,Th,U,REE和Y含量较高。 V,Cr,Zn和Cu含量高。大同煤没有明显的坦斯坦层,也没有明显的火山成矿矿物,在受镁铁质和碱性火山作用影响的煤层之间,其TiO 2 ,V,Cr,Ni,Cu和Zn的浓度较高。骨灰。这与从康甸山地镁铁质玄武岩侵蚀产生的煤层中提供一种常见的原料是一致的。尽管松藻煤通常是高硫煤,但大多数硫族微量元素与总硫化铁含量的相关性不佳或呈负相关。缺乏传统的黄铁矿-金属缔合可能反映出这些元素在单个黄铁矿/镁铁矿成分中的浓度差异很大,或者仅是这些元素在相关煤的黄铁矿/镁铁矿中的保留能力差。

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