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Arsenate adsorption to soils: Modelling the competition from humic substances

机译:砷对土壤的吸附:模拟腐殖质的竞争

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There is currently no agreement to what extent humic substances may compete with arsenate and other anions for oxide adsorption sites in soils, and how to model this interaction. In this study, batch experiments were made in which the competition between fulvic acid and arsenate was studied in a spodic Bs horizon. Additional experiments were performed in which the pH and concentration dependence of arsenate adsorption was studied in four soils. The results showed that fulvic acid decreased the adsorption of AsO4, probably because of competition effects. The Kd value of AsO4 adsorption to the four studied soils differed by three orders of magnitude at pH 5. The introduction of an irreversibly sorbed component RO- into the Three-Plane CD-MUSIC model,and the optimisation of RO- using the Kd of AsO4 for one sample from each data set, permitted the use of the model to predict AsO4 adsorption under different conditions. On the whole, the predictions were reasonably close to measured values, but the model failed in 3 of 4 soils at high surface coverage. A strong relationship between the optimised RO- value and the observed pyrophosphate-extractable C value supported the assumption that RO- can be considered as being an adsorbed humic functional group. The large concentrations of RO- compared to those of adsorbed PO4 and SO4 suggest that humic substances may be the most important competitors for anion adsorption sites in many soils.
机译:目前尚无共识,腐殖质在何种程度上可以与砷酸根和其他阴离子竞争土壤中的氧化物吸附位点,以及如何模拟这种相互作用。在这项研究中,进行了批处理实验,其中在间歇性Bs视野中研究了黄腐酸和砷酸盐之间的竞争。进行了另外的实验,其中研究了在四种土壤中砷酸盐的pH和浓度依赖性。结果表明,黄腐酸降低了AsO4的吸附,这可能是由于竞争作用。在pH 5时,对四种被研究土壤的AsO4吸附的Kd值相差三个数量级。将不可逆吸附组分RO-引入三平面CD-MUSIC模型,并使用Kd对RO-进行优化。来自每个数据集的一个样品的AsO4,允许使用该模型预测不同条件下的AsO4吸附。总体而言,预测值与测量值相当接近,但该模型在4个高表层土壤中有3个失败了。优化的RO-值与观察到的焦磷酸盐可提取的C值之间的密切关系支持以下假设:RO-可被视为吸附的腐殖质官能团。与吸附的PO4和SO4相比,RO-的浓度很高,表明腐殖质可能是许多土壤中阴离子吸附位点的最重要竞争者。

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