首页> 外文期刊>Fuel >Lithium and redox-sensitive (Ge, U, Mo, V) element mineralization in the Pennsylvanian coals from the Huangtupo coalfield, Shanxi, northern China: With emphasis on the interaction of infiltrating seawater and exfiltrating groundwater
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Lithium and redox-sensitive (Ge, U, Mo, V) element mineralization in the Pennsylvanian coals from the Huangtupo coalfield, Shanxi, northern China: With emphasis on the interaction of infiltrating seawater and exfiltrating groundwater

机译:来自中国山西山西山西山西煤田的宾夕法尼亚煤矿锂和氧化还原敏感(GE,U,MO,V)元素矿化:重点是渗透海水和抗火地下水的相互作用

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摘要

Geochemistry of low-ash and medium-sulfur coal and non-coal horizons from the Huangtupo coalfield, Shanxi, northern China was investigated. The economic potential of coal mining for critical elements (e.g., U, Li) was investigated in the present study. Uranium, Mo, and Sr are slightly enriched in the Pennsylvanian Huangtupo coal; with U and Mo reaching their highest concentrations in the topmost coal bench underlying the limestone roof. These enrichments are probably related to a marine invasion in the basin. The Al2O3/TiO2 ratio and the Zr/ TiO2-Nb/Y relationship indicate the input of felsic-intermediate materials. The similar rare earth elements plus Y (REY) distribution patterns between non-coal horizons and Yinshan Upland granite suggests a detrital input from the Yinshan Upland. The Li mineralization, common in coals of the Qinshui basin, is represented by Li enrichments in the lower coal benches associated with the parting and floor mudstones. This mineralization is probably related to the neutralization of infiltrating seawater by acidic groundwater. This acidic water, possibly derived from the Triassic Li-Cs-Ta pegmatites and exfiltrated through the clastic deposits into the coal seam, could cause some additional Li enrichments in the lower coal benches and associated clastic rocks. Some coal benches (e.g., from the Jincheng and Changzhi Mines) in the Qinshui Basin meet the mining grade of lithium (80-120 mu g/g, on whole coal and/or rock basis) for coals, making them promising for commercial Li recovery.
机译:研究了中国北部黄田煤田的低灰和中硫煤和非煤层的地球化学。在本研究中研究了关键元素(例如,U,Li)的煤炭开采的经济潜力。铀,莫和SR略微丰富于宾夕法尼亚黄特煤;随着U和Mo在石灰石屋顶下面的最顶层煤层中达到最高浓度。这些浓缩可能与盆地的海洋入侵有关。 Al 2 O 3 / TiO 2比和Zr / TiO2-Nb / Y关系表示术术中间材料的输入。非煤层气和银山高地花岗岩之间的类似稀土元素和Y(REY)分布图案表明了裕山高地的杂散投入。秦水盆地煤中常见的李矿化由李富集在与分区和地板泥岩相关的下部煤炭长椅上。这种矿化可能与酸性地下水中和渗透海水的中和有关。这种酸性水,可能来自三叠系Li-Cs-Ta Pegmatites并通过碎屑沉积物灭绝于煤层,可能导致下部煤炭长凳和相关碎屑岩中的一些额外的李富集。秦山盆地的一些煤炭长凳(例如,来自金城和长治矿山)符合煤矿的采矿等级(80-120亩,全煤和/或岩石基础)的煤炭,使其对商业李有前途恢复。

著录项

  • 来源
    《Fuel》 |2021年第15期|120948.1-120948.15|共15页
  • 作者单位

    Hebei Univ Technol Sch Civil & Transportat Engn Tianjin 300401 Peoples R China|China Univ Min & Technol State Key Lab Coal Resources & Safe Min Beijing 100083 Peoples R China;

    Univ Kentucky Ctr Appl Energy Res Lexington KY 40511 USA|Univ Kentucky Dept Earth & Environm Sci Lexington KY 40506 USA;

    Far East Geol Inst Vladivostok 690022 Russia;

    Sinohydro Fdn Engn Co LTD Tianjin 301700 Peoples R China;

    Jizhong Energy Handan Min Grp Co LTD Handan 056105 Hebei Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lithium mineralization; Acid hydrothermal solutions; Marine invasion; Yinshan Upland; Pennsylvanian Shanxi coals;

    机译:锂矿化;酸热热解决方案;海洋入侵;尹山市;宾夕法尼亚人山西煤炭;
  • 入库时间 2022-08-19 02:46:05

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