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Adsorption of arsenate on soils. Part 2: Modeling the relationship between adsorption capacity and soil physiochemical properties using 16 Chinese soils

机译:砷酸盐在土壤上的吸附。第2部分:使用16种中国土壤模拟吸附能力与土壤理化性质之间的关系

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An attempt has been made to elucidate the effects of soil properties on arsenate adsorption by modeling the relationships between adsorption capacity and the properties of 16 Chinese soils. The model produced was validated against three Australian and three American soils. The results showed that nearly 93.8% of the variability in arsenate adsorption on the low-energy surface could be described by citrate-dithionite extractable Fe (Fe_(CD)), clay content, organic matter content (OM) and dissolved organic carbon (DOC); nearly 87.6% of the variability in arsenate adsorption on the high-energy surface could be described by Fe_(CD), DOC and total arsenic in soils. Fe_(CD) exhibited the most important positive influence on arsenate adsorption. Oxalate extractable Al(Al_(OX)), citrate-dithionite extractable Al (Al_(CD)), extractable P and soil pH appeared relatively unimportant for adsorption of arsenate by soils.
机译:通过模拟16种中国土壤的吸附能力与特性之间的关系,试图阐明土壤特性对砷酸盐吸附的影响。生成的模型已针对三种澳大利亚和三种美国土壤进行了验证。结果表明,柠檬酸-连二亚铁的可萃取铁(Fe_(CD)),粘土含量,有机物含量(OM)和溶解性有机碳(DOC)可以描述低能表面砷吸附的近93.8%的变化。 ); Fe_(CD),DOC和土壤中的总砷可以描述高能表面砷吸附的变异性的近87.6%。 Fe_(CD)对砷的吸附表现出最重要的积极影响。草酸盐可萃取的Al(Al_(OX)),柠檬酸盐-连二亚硫酸盐的可萃取Al(Al_(CD)),可萃取的P和土壤pH值似乎对土壤中砷的吸附并不重要。

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