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Mobility and fractionation of arsenic, chromium and copper in thermally treated soil

机译:热处理土壤中砷,铬和铜的迁移率和分馏

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Thermal treatment is used to remediate soil co-contaminated with organic and inorganic contaminants. It destroys organic contaminants, but the remaining inorganic contaminants require further treatment. In this study the effects of thermal treatment on the mobility, speciation and chemical fractionation of As, Cr and Cu in a CCA-polluted soil were evaluated by leaching tests, As speciation assays and a sequential extraction procedure. The soil was sieved into four size fractions (<0.125, 0.125-0.250, 0.250-0.500 and 0.500-1.0mm), each of which was treated at 800°C and analysed in comparison with the untreated soil. The leaching of As and Cr increased by factors of 18—40 and 2-23, respectively, while the mobility of Cu decreased 12-14-fold after treatment. The concentration of As(V) in pore water of the finest soil fraction increased 19-fold, whereas that of As(III) remained constant. The treatment reduced As, Cr and Cu associated with the reducible soil fraction. In addition, it increased the proportions of As and Cr (slightly) associated with the exchangeable and acid-soluble soil fractions, and the proportions of Cu and Cr (substantially) associated with the residual fraction.
机译:热处理用于修复被有机和无机污染物共同污染的土壤。它可以破坏有机污染物,但是剩余的无机污染物需要进一步处理。在这项研究中,通过浸出试验,As形态分析和顺序提取程序评估了热处理对CCA污染土壤中As,Cr和Cu的迁移率,形态和化学分馏的影响。将土壤筛分为四个尺寸部分(<0.125、0.125-0.250、0.250-0.500和0.500-1.0mm),分别在800°C下处理,并与未处理的土壤进行比较。处理后,砷和铬的浸出分别增加了18-40和2-23倍,而铜的迁移率降低了12-14倍。土壤最细部分的孔隙水中的As(V)浓度增加了19倍,而As(III)的浓度保持恒定。处理减少了与可还原土壤分数相关的As,Cr和Cu。此外,它增加了与可交换和酸溶性土壤组分相关的As和Cr的比例(略有增加),以及与残留组分相关的Cu和Cr的比例(实质上)增加了。

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