首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Geochemical characterization of arsenic-rich coal-combustion ashes buried under agricultural soils and the release of arsenic
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Geochemical characterization of arsenic-rich coal-combustion ashes buried under agricultural soils and the release of arsenic

机译:农业土壤下富砷燃煤灰分的地球化学特征及砷的释放

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摘要

A combination of geochemical and mineralogical methods was used to determine the concentrations, mobility, and sources of As in coal-combustion ashes and soils in the vicinity of a thermal power plant at Nováky, central Slovakia. Fresh lagooned ash, ashes buried under agricultural soils for 45. a, and the overlying soils, contain high concentrations of As ranging from 61 to 1535. mg/kg. There is no differences in the water extractable percentages of As between the fresh lagooned ash and buried ashes, which range from 3.80% to 6.70% of the total As. This small amount of As may perhaps reside on the surfaces of the ash particles, as postulated in the earlier literature, but no evidence was found to support this claim. Electron microprobe analyses show that the dominant primary As carriers are the aluminosilicate glasses enriched in Ca and Fe. The acid NH4+-oxalate extraction hints that the oxyhydroxides of Si, Al, and Fe are the most probable secondary carriers of labile As. The X-ray absorption spectroscopy (XAS) analyses show that As in the lagooned and buried ashes occurs mostly as As(V). The long-term burial of the coal-combustion ash under agricultural soil did not cause any major change of its chemical composition or As lability compared to the fresh lagooned ash.
机译:结合地球化学和矿物学方法来确定斯洛伐克中部Nováky附近火力发电厂附近燃煤灰烬和土壤中As的浓度,迁移率和As的来源。新鲜的泻湖灰烬,灰烬埋在农业土壤下长达45. a,以及上覆的土壤中所含的高浓度As从61到1535 mg / kg。新鲜的泻湖灰烬与埋入的灰烬之间,As的水可萃取百分比没有差异,其范围为总As的3.80%至6.70%。如先前文献中所假定的那样,少量的As可能留在灰烬颗粒的表面上,但是没有发现证据支持这一说法。电子探针分析表明,主要的主要As载体是富含Ca和Fe的硅铝酸盐玻璃。酸性NH4 +-草酸盐萃取表明,Si,Al和Fe的羟基氧化物是最不稳定的As的最可能二级载体。 X射线吸收光谱(XAS)分析表明,在泻湖和埋藏的灰烬中,As主要以As(V)的形式出现。与新鲜的泻湖灰相比,长期埋葬在农业土壤中的燃煤灰不会引起化学成分或砷稳定性的任何重大变化。

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