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首页> 外文期刊>Journal of Volcanology and Geothermal Research >Rare earth elements in sinters from the geothermal waters (hot springs) on the Tibetan Plateau, China
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Rare earth elements in sinters from the geothermal waters (hot springs) on the Tibetan Plateau, China

机译:青藏高原地热水(温泉)中的烧结矿中的稀土元素

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摘要

The mineralogical and geochemical composition of sinters from the geothermal areas on the Tibetan Plateau was determined. They occur as siliceous, salty and calcareous sinters but biogenic siliceous sinters were also found. The analyses indicate that there are no distinct inter-element relationships between individual rare earth elements (REEs) and other elements. Formed from the same geothermal water, the mineralogical and chemical composition of the sinters is influenced by their genesis and formation conditions. The REE distributions depend on the origin of the sinters. Fe-Mn phases in sinters tend to scavenge more REEs from geothermal water. Neither the REE fractionation nor the Ce anomaly seems to be associated with Fe-Mn phases in the sinters. The fourth tetrads of some sinters display weak W-type (concave) effects. In contrast, the third tetrads present large effects in some sinters due to positive Gd anomalies. The origin of the positive Eu anomalies in some sinters seems to be caused by preferential dissolution of feldspars during water-rock interaction. The complexing ligands in geothermal water may contribute significantly to the fractionation of REEs in sinters. The dominant CO_3~(2-) and HCO_3~-complexing in geothermal water favors enrichment of heavy REEs in calcareous sinters.
机译:确定了青藏高原地热地区的烧结矿的矿物学和地球化学组成。它们以硅质,盐质和钙质烧结矿形式存在,但也发现有生物成因的硅质烧结矿。分析表明,各个稀土元素(REE)与其他元素之间没有明显的元素间关系。由相同的地热水形成的烧结矿的矿物学和化学组成受其成因和形成条件的影响。 REE分布取决于烧结矿的来源。烧结矿中的铁锰相倾向于从地热水中清除更多的稀土元素。 REE分馏和Ce异常似乎都与烧结矿中的Fe-Mn相无关。一些烧结矿的第四四分体显示出弱的W型(凹形)效应。相反,由于正Gd异常,第三部分在某些烧结矿中表现出较大的影响。在某些烧结矿中,正Eu异常的起源似乎是由长石在水-岩相互作用过程中的优先溶解引起的。地热水中的配位体可能对烧结矿中稀土元素的分馏有重要作用。地热水中占优势的CO_3〜(2-)和HCO_3〜-络合物有利于钙质烧结矿中重稀土元素的富集。

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  • 作者单位

    Key Laboratory of Tibetan Environment Changes and Land Surface Processes, Institute of Tibetan Plateau Research, Chinese Academy of Sciences, 100101 Beijing, China,Institute of Tibetan Plateau Research, Chinese Academy of Sciences, Building 3, 16th Lincui Road, Chaoyang, Beijing, 100101, China;

    The 4th Hydrogeology Croup of Hebei Bureau of Geological Development, 061000 Cangzhou, China;

    Key Laboratory of Tibetan Environment Changes and Land Surface Processes, Institute of Tibetan Plateau Research, Chinese Academy of Sciences, 100101 Beijing, China,University of Chinese Academy of Sciences, 100049 Beijing, China;

    Key Laboratory of Tibetan Environment Changes and Land Surface Processes, Institute of Tibetan Plateau Research, Chinese Academy of Sciences, 100101 Beijing, China,University of Chinese Academy of Sciences, 100049 Beijing, China;

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  • 正文语种 eng
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  • 关键词

    Tibetan Plateau; Geothermal water; Sinters; Rare earth elements; Lanthanide tetrad effect; Ce anomaly; Gd anomaly;

    机译:青藏高原地热水;烧结矿;稀土元素;镧系元素四元效应;Ce异常;Gd异常;

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