首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >The origin, migration, and accumulation mechanism of germanium and the metallogenic model of coal-hosted Ge ore deposits in Wulantuga, Erlian Basin, China
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The origin, migration, and accumulation mechanism of germanium and the metallogenic model of coal-hosted Ge ore deposits in Wulantuga, Erlian Basin, China

机译:锗的起源,迁移和累积机制以及乌兰盆地武兰谷煤矿床矿床矿床成矿模型

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To explore the source, migration, and enrichment mechanism of germanium (Ge) and the metallogenic model of the Wulantuga coal-hosted Ge ore deposits in the Shengli Coalfield, this study analyzed the geochemical parameters of Ge-rich coal seams, including major element, trace elements, and rare earth element (REE) compositions, with X-ray fluorescence (XRF) spectrometry, inductively coupled plasma mass spectrometry (ICP-MS) and instrumental neutron activation analysis (INAA). An isoline map of Ge concentration and a cross-section map of sedimentary strata and Ge element distribution were drawn with the sampling data. The results showed that there were three periods of Ge accumulation in the Wulantuga coal seam. The enrichment coefficients of the lowcontent Ge samples and high-content Ge samples displayed that Ge was enriched together with As, Mo, Sb, and W. Compared with the Ge-bearing parent rocks located southwest of the Wulantuga area, the Ge-rich samples are clearly enriched in heavy REEs relative to light REEs in the REE distribution pattern, with positive anomalies of Tb, Ho, Tm, (La/Yb)n and (La/Sm)n > 1, as well as a very high positive delta Eu anomaly, which indicated that the Ge ore deposit in Wulantuga was indeed likely affected by hydrothermal fluids with a left-slanting REE distribution pattern. In addition, based on the sulfophilic affinity and organic affinity of Ge and the geochemical characteristics of Ge in hydrothermal fluids, the authors speculate that the Ge-rich fluids originated from thermal convection and the interaction between surface freshwater carrying O2 and hydrothermal fluids from the mantle.
机译:为了探索胜利煤田乌兰图加含煤锗矿床锗(Ge)的来源、迁移和富集机制及成矿模式,本研究利用X射线荧光光谱(XRF)分析了富锗煤层的地球化学参数,包括常量元素、微量元素和稀土元素(REE)组成,电感耦合等离子体质谱(ICP-MS)和仪器中子活化分析(INAA)。利用采样数据绘制了锗浓度等值线图、沉积地层剖面图和锗元素分布图。结果表明,乌兰图加煤层中锗的富集经历了三个阶段。低含量锗样品和高含量锗样品的富集系数表明,锗与As、Mo、Sb和W一起富集。与位于乌兰图加地区西南部的含锗母岩相比,富锗样品在稀土元素分布模式中明显富集重稀土元素,相对于轻稀土元素,Tb、Ho、Tm、Tb、Tb、Tb、Tb、Tb、Tb、Tb、Tb、Tb、Tb、Tb、Tb、Tb、Tb、Tb、Tb、Tb、Tb,(La/Yb)n和(La/Sm)n>1,以及一个非常高的正三角洲-铕异常,这表明乌兰图加的锗矿床确实可能受到热液的影响,稀土元素分布呈左倾斜。此外,基于锗的亲硫亲和力和有机亲和力以及热液中锗的地球化学特征,作者推测富锗流体起源于热对流以及携带O2的地表淡水与地幔热液之间的相互作用。

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