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The role of common metal contaminants on arsenic speciation in soils and on common soil minerals

机译:常见金属污染物对土壤砷形态的作用及普通土壤矿物质

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Arsenic (As) occurs naturally as an impurity in metal ores (e.g. arseno-pyrite, copper, gold), in sulfide minerals (e.g. realgar = AsS, orpiment = As2S3, arsenopy-rite = AsFeS), coal, shales, and in rock-phosphate, among others (Tamaki and Frankenberger, 1992; Williams, 2001; Carlson et al., 2002; O'Day, 2006). It has been released into the near-surface environment as a result of natural weathering phenomena, but more profoundly as a result of mining and other industrial operations. Although there is a fixed planetary As concentration, the concentration of As in the biosphere has and continues to increase! Arsenic in the solid phase is safer than in the aqueous and bio-available form, i.e. it is not readily accessible to biological receptors. Increased As concentrations in soils and soil solution have been responsible for yield decreases in and contamination of edible products (Woolson et al., 1971; Carbonell-Barrachina et al., 1995; Smith et al., 1998; Smith et al., 2009) and cause diseases such as bone marrow depression, liver diseases, and various forms of cancer in humans (Hall, 2002). The processes and factors that govern the transition from soluble to solid As phases are hence of great importance to many communities that suffer from elevated As levels in potable and irrigation waters. Of particular concern are regions in Bangladesh, India, and Vietnam.
机译:砷(AS)自然发生,作为金属矿石(例如亚苯甲酸盐,铜,金)的杂质,在硫化物矿物(例如雄真=屁股,orpiment = As2s3,arsenopy-rite = Asfes),煤炭,罗斯和岩石中 - 除了(Tamaki和Frankenberger,1992;威廉姆斯,2001年; Carlson等,2002; 2002年)。由于自然风化现象,它已被释放到近地表环境中,但由于采矿和其他工业运营的结果更深刻。虽然存在固定的行星作为浓度,但在生物圈中的浓度具有并继续增加!固相的砷比在水性和生物和生物中的形式中更安全,即生物受体不易易用。随着土壤和土壤溶液的浓度而导致收益率降低和食用产品的污染(Woolson等,1971; Carbonell-Barrachina等,1995; Smith等,1998; Smith等,2009 )和人类(大厅,2002年)的骨髓抑郁症,肝病和各种形式的癌症等疾病。根据阶段,从溶于溶于固体的转变的过程和因素是对许多患有饮用水和灌溉水域升高的社区的重要性。特别关注的是孟加拉国,印度和越南的地区。

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