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Characterizing As(Ⅲ, Ⅴ) adsorption by soils surrounding ash disposal facilities

机译:灰渣处理设施周围土壤对As(Ⅲ,Ⅴ)的吸附特性

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Leachate derived from unlined coal ash disposal facilities is a potential anthropogenic source of arsenic to the environment. To establish a theoretical framework for predicting attenuation of arsenic by soils subject to ash landfill leach-ate, which is typically enriched in calcium and sulfate, the adsorption of As(Ⅴ) and As(Ⅲ) was characterized from 1 mM CaSO_4 for 18 soils obtained down-gradient from three ash landfill sites and representing a wide range in soil properties. As(Ⅴ) consistently exhibited an order of magnitude greater adsorption than As(Ⅲ). As(Ⅴ) adsorption was best described by coupling pH with 15 s DCB-Fe (R~2 = 0.851, α = 0.001), although pH coupled to clay, DCB-Fe, or DCB-Al also generated strong correlations. For As(Ⅲ), pH coupled to Ox-Fe (R~2 = 0.725, α = 0.001) or Ox-Fe/Al (R~2 = 0.771, α = 0.001) provided the best predictive relationships. Ca~(2+) induced increases in As(Ⅴ) adsorption whereas sulfate suppressed both As(Ⅴ) and As(Ⅲ) adsorption. Attenuation of arsenic from ash leachate agreed well with adsorption measured from 1 mM CaSO_4 suggesting that the use of 1 mM CaSO_4 in laboratory adsorption tests is a reasonable approach for estimating arsenic behavior in soils surrounding ash landfills. We also showed that the impact of leachate-induced changes in soil pH over time may not be significant for As(Ⅴ) adsorption at pH < 7; however, As(Ⅲ) adsorption may be impacted over a wider pH range especially if phyllosilicate clays contribute significantly to adsorption. The benefits and limitations of predicting arsenic mobility using linearized adsorption coefficients estimated from nonlinear adsorption isotherms or from the relationships generated in this study are also discussed.
机译:无衬里煤灰处理设施产生的渗滤液是环境中潜在的人为来源的砷。为了建立理论模型来预测灰烬垃圾渗滤液中典型富含钙和硫酸盐的土壤中砷的衰减,从1 mM CaSO_4对18种土壤的吸附特征来表征As(Ⅴ)和As(Ⅲ)的吸附。从三个灰烬填埋场获得了下降梯度,代表了广泛的土壤特性。砷(Ⅴ)的吸附能力始终比砷(Ⅲ)大一个数量级。用pH值与15 s DCB-Fe耦合可以最好地描述As(Ⅴ)的吸附(R〜2 = 0.851,α= 0.001),尽管与粘土,DCB-Fe或DCB-Al耦合的pH也产生很强的相关性。对于As(Ⅲ),pH与Ox-Fe(R〜2 = 0.725,α= 0.001)或Ox-Fe / Al(R〜2 = 0.771,α= 0.001)耦合提供了最好的预测关系。 Ca〜(2+)引起As(Ⅴ)的吸附增加,而硫酸盐抑制As(Ⅴ)和As(Ⅲ)的吸附。灰分渗滤液中砷的衰减与从1 mM CaSO_4测得的吸附值非常吻合,这表明在实验室吸附测试中使用1 mM CaSO_4是估算灰烬填埋场周围土壤中砷行为的合理方法。我们还表明,浸出液诱导的土壤pH随时间变化的影响对于pH <7的As(Ⅴ)吸附可能并不显着。然而,As(Ⅲ)的吸附可能在更宽的pH范围内受到影响,特别是如果页硅酸盐粘土显着促进吸附。还讨论了使用从非线性吸附等温线或本研究生成的关系估算的线性吸附系数预测砷迁移率的好处和局限性。

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