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Valuable elements in Chinese coals: a review

机译:中国煤炭中有价值的元素:审查

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摘要

China is, and in the coming decades should continue to be, the largest producer and user of coal in the world. The high volume of coal usage in China has focused attention not only on the toxic trace elements that may be released from coal combustion but also on the valuable elements that may occur in the coal and associated ash. Valuable elements in several coals (or coal ashes) and some coal-bearing strata in China (e.g. Ge, Ga, U, rare earth elements and Y, Nb, Zr, Se, V, Re, Au, and Ag, as well as the base metal Al) occur at concentrations comparable to or even higher than those in conventional economic deposits. Several factors are responsible for these elevated concentrations: (1) injection of exfiltrational solutions during peat accumulation or as part of later epigenetic activity; (2) injection of infiltrational epigenetic solutions; (3) introduction of syngenetic alkali volcanic ashes into the peat-forming environment or into associated non-coal-forming terrestrial environments; (4) input of terrigenous materials into the coal-forming environment; (5) leaching of non-coal partings by groundwater/hydrothermal solutions; and (6) mixed processes involving both hydrothermal solutions and volcanic ash. The valuable elements in Chinese coals may be associated with either the organic matter or mineral matter, or have a mixed organic- and inorganic-affinity. For example, the Ge and U in coal-hosted ore deposits dominantly occur in the organic matter, with only traces of U-bearing minerals being present; gallium mainly occurs in boehmite and kaolinite, and to a lesser extent, in the organic matter. Rare earth elements and Y occur as carbonate-minerals (e.g. florencite, parisite), phosphate-minerals (e.g. rhabdophane, silico-rhabdophane, and xenotime), and in part are associated with the organic matter. Some metals (e.g. Ge, Al, Ga) have been successfully extracted at an industrial scale from Chinese coals, and others have significant potential for such extraction. Major challenges remaining for coal scientists include the development of economic extraction methods from coal ash, and the control of toxic elements released during the metal extraction process to protect human health and to avoid environmental pollution.
机译:中国是,在未来几十年中,应继续成为世界上最大的生产国和用户。中国的大量煤炭使用不仅关注可能从煤炭燃烧中释放的毒性微量元素,而且在煤炭和相关灰烬中可能发生的有价值的元素上的毒性痕量元素。中国的几个煤(或煤灰)和中国的一些燃煤地层的宝贵元素(例如Ge,Ga,U,稀土元素和y,Nb,zr,se,v,Re,au和Ag以及Ag以及Ag以及贱金属Al)以与常规经济沉积物中的浓度相当或甚至高于那些。若干因素对这些升高的浓度负责:(1)在泥炭积累期间注射抗污染溶液,或作为后来的表观遗传活动的一部分; (2)注射渗透外观遗传液; (3)将事宜碱性火山岩引入泥炭成型环境或与相关的非煤炭形成陆地环境中; (4)将人造物料输入到煤炭环境中; (5)地下水/水热溶液浸出非煤切除; (6)涉及水热溶液和火山灰的混合过程。中国煤中的有价值的元素可以与有机物或矿物质相关,或具有混合的有机物和无机 - 亲和力。例如,煤托管矿床中的GE和U在有机物中占主导地位,只有痕量的U承载矿物;镓主要发生在勃姆石和高岭石,并在较小程度上进行有机物。稀土元素和y发生作为碳酸盐矿物(例如氟碳酸盐,比例),磷酸盐 - 矿物(例如Rhabdophane,Silico-Rhabdophane和Xenotime),部分与有机物质相关。一些金属(例如Ge,Al,Ga)已成功地从中国煤中的工业规模提取,其他物质对这种提取有显着潜力。煤炭师留下的主要挑战包括从煤灰的经济提取方法的发展,以及在金属提取过程中释放的有毒元素的控制,以保护人类健康,避免环境污染。

著录项

  • 来源
    《International Geology Review》 |2018年第6期|共31页
  • 作者单位

    China Univ Min &

    Technol Beijing State Key Lab Coal Resources &

    Safe Min Beijing 100083 Peoples R China;

    China Univ Min &

    Technol Beijing Coll Geosci &

    Surveying Engn Beijing Peoples R China;

    Univ New South Wales Sch Biol Earth &

    Environm Sci Sydney NSW Australia;

    Univ Kentucky Ctr Appl Energy Res 3572 Iron Works Pike Lexington KY 40511 USA;

    China Univ Min &

    Technol Beijing State Key Lab Coal Resources &

    Safe Min Beijing 100083 Peoples R China;

    China Univ Min &

    Technol Beijing State Key Lab Coal Resources &

    Safe Min Beijing 100083 Peoples R China;

    China Univ Min &

    Technol Beijing Coll Geosci &

    Surveying Engn Beijing Peoples R China;

    China Univ Min &

    Technol Beijing State Key Lab Coal Resources &

    Safe Min Beijing 100083 Peoples R China;

    Univ Texas Dallas Geosci Dept Richardson TX 75083 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;
  • 关键词

    valuable elements; coal in China; enrichment origin; modes of occurrence; coal-hosted ore deposits;

    机译:有价值的元素;中国煤;富集起源;发生模式;煤托管矿床沉积物;

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