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Arsenic distribution and pathway scenarios for sediments and water in a peri-urban Mongolian small-scale coal mining area (Nalaikh District, Ulaanbaatar)

机译:秘密城市蒙古小规模煤矿区沉积物和水的砷分布和途径情景(乌兰巴托纳利克区)

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The distribution of arsenic (As) in environmental compartments is investigated in the Nalaikh Depression of NMongolia. In Nalaikh, lignite coal is mined by artisanal small-scale mining (ASM) approaches. Because As is often associated with sulfuric minerals in coal, it was hypothesized that enrichment of As is related to coal ASM. A second hypothesis considered coal combustion in power plants, and stoves are a key source of As in the local environment. Three mobilization and distribution scenarios were developed for potential As pathways in this semiarid environment. About 43 soil and 14 water sites were analyzed for As concentrations and meaningful parameters in soil and water. About 28 topsoil samples were analyzed in surface-subsurface pairs in order to identify potential eolian surface enrichment. Additionally, fluvial-alluvial sediments and geogenic and anthropogenic deposits were sampled. Water was sampled as surface water, groundwater, precipitation, and industrial water. Results show that As does not pose a ubiquitous risk in the Nalaikh Depression. However, locally and specifically in water, As concentrations may exceed the WHO guideline value for drinking water by up to a factor of 10. A carefully selected sampling strategy allows the evaluation of the distribution scenarios, which reveals a combination of (a) geogenic As in groundwater and distribution via surface water with (b) anthropogenic As redistribution via eolian pathways. An immediate linkage between As redistribution and coal mining is not evident. However, As distribution in fly ash from coal combustion in the local power plant and yurt settlements is the most likely As pathway. Hence, the results indicate the potential influence of diffuse, low-altitude sources on As emission to the environment. As such, this study provides a good example for As distribution under semiarid climate conditions influenced by geogenic and anthropogenic factors.
机译:在Nmongolia的Nalaikh抑郁症中研究了砷(AS)的砷(AS)的分布。在纳雷帕赫,褐煤煤由手工小规模采矿(ASM)方法开采。因为常常与煤中的硫矿物质相关,所以假设与煤ASM相关的富集。第二个假设认为发电厂的煤燃烧,炉灶是当地环境中的关键来源。在该半干旱环境中开发了三种动员和分配方案,以潜在的途径。在土壤和水中分析了约43个土壤和14个水位,作为浓度和有意义的参数。在表面地下对中分析了约28个表土样品,以识别潜在的Eolian表面富集。此外,采样氟激烈沉积物和造环和造环沉积物。水被取样为地表水,地下水,沉淀和工业用水。结果表明,由于Nalaikh抑郁症的风险普遍存在。然而,局部且特别是在水中,作为浓度可能超过饮用水的人们的准则值,最多可少于一个10倍。精心选择的采样策略允许评估分配方案,其揭示(a)造成的造林的组合在地下水中通过地面水和(B)人为的分布作为通过Eolian途径重新分布。作为再分配和煤炭开采之间的直接联系并不明显。然而,由于粉煤灰在煤炭燃烧中的粉煤灰和Yurt沉淀物中的分布是最有可能作为途径的。因此,结果表明弥漫性,低空来源对环境的发射的潜在影响。因此,本研究提供了在由造工和人为因素影响的半干旱气候条件下分布的一个很好的例子。

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