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Treatment of arsenic-contaminated soils. I: Soil characterization

机译:处理被砷污染的土壤。 I:土壤特性

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Industrial sites frequently have arsenic-contaminated soils as a result of repeated applications of arsenic herbicides. Four such sites were investigated to determine the suitability of cement-based solidification/ stabilization (S/S) for in situ soil treatment. Arsenic concentrations ranged up to about 2,000 ppm in the soil, although leachability was relatively low. No toxicity characteristic leaching procedure leachates showed As concentrations as high as 5 mg/L. The low leachability appears to be due, at least in part, to iron present in the soil. Although soils with higher As concentrations generally showed greater leachability, a somewhat stronger relationship existed between the percentage of As in the soil that was leached and the iron concentration in the soil. Another factor working in favor of the success of S/S in the present cases is the sandy character of the soils with little clay or organic content. Thus, the quartz sand will serve as an aggregate and should not offer any interferences to cement hydration. A third favorable circumstance is afforded by the oxidizing character of the soils. The weathered arsenic present in the soils should be in the form of As(V), and arsenate salts present a wider range of possibilities for precipitation of insoluble arsenic species than arsenite salts. A significant variable with the potential to affect S/S is the soil moisture content, which varied greatly among the four sites due to differing water table depth. [References: 8]
机译:由于重复使用砷除草剂,工业现场经常被砷污染。调查了四个这样的站点,以确定水泥基固化/稳定化(S / S)在原位土壤处理中的适用性。尽管浸出率相对较低,但土壤中的砷浓度高达2,000 ppm。没有毒性特征的浸出程序浸出液显示出As浓度高达5 mg / L。低浸出率似乎至少部分是由于土壤中存在铁。尽管较高的砷浓度的土壤通常表现出较高的浸出性,但淋溶土壤中的砷百分比与土壤中的铁浓度之间存在某种更强的关系。在当前情况下,另一个有利于S / S成功的因素是粘土或有机物含量很少的土壤的沙质特性。因此,石英砂将用作骨料,不应对水泥的水化产生任何干扰。土壤的氧化特性提供了第三种有利的情况。土壤中存在的风化砷应以砷(V)的形式存在,与砷盐相比,砷酸盐对不溶性砷的沉淀具有更大的可能性。可能影响S / S的一个重要变量是土壤水分,由于地下水位不同,在四个地点之间的水分差异很大。 [参考:8]

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