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Point of zero charge: Role in pyromorphite formation and bioaccessibility of lead and arsenic in phosphate amended soils

机译:零电荷点:在磷酸盐改良土壤中硫铁矿的形成以及铅和砷的生物可利用性中的作用

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摘要

Soluble lead (Pb) can be immobilized in pure systems as pyromorphite by adding sources of phosphorus (P), but uncertainties still remain in natural systems. Knowledge of PZC is important to predict the ionization of functional groups and their interaction with metal species in solution. This study utilized the Pb- and As-contaminated soils to determine the combined effect of pH with respect to PZC and different rates of P-application on pyromorphite formation, and Pb and arsenic (As) bioaccessibility as impacted by speciation changes. Solution chemistry analysis along with synchrotron-based Pb- and As-speciation, and bioaccessibility treatment effect ratios (TERs) were conducted. Results indicated no significant effect of PZC on pyromorphite formation in P-amended soils; however, the TERPb appeared significantly lower at pH>pHPZC and higher at pH<pHPZC (α = 0.05). In contrast, the TERAs was significantly higher at pH>pHPZC, compared to the other two treatments, for the tested soils. The lack of conversion of soil Pb to pyromorphite may be attributed to presence of stable minerals limiting soluble-Pb availability and high organic matter content of the tested soils.
机译:可以通过添加磷(P)的来源将可溶性铅(Pb)固定为纯硫铁矿,但不确定性仍然存在于自然系统中。对PZC的了解对于预测官能团的电离及其与溶液中金属物质的相互作用非常重要。这项研究利用被Pb和As污染的土壤来确定pH值与PZC以及不同的P施用量对焦亚铁矿形成的综合影响,以及受形态变化影响的Pb和砷(As)生物可及性。进行了溶液化学分析,以及基于同步加速器的Pb和As形态以及生物可及性处理效果比(TERs)。结果表明,PZC对磷改良土壤中亚铁矿的形成没有显着影响。然而,当pH> pHPZC时,TERPb显着降低,而当pH HPZC时,TERPb显着升高(α= 0.05)。相反,与其他两种处理相比,对于被测土壤,在pH> pHPZC时,TERA显着更高。土壤Pb不能转化为焦晶石的原因可能是稳定矿物质的存在限制了可溶Pb的可利用性和被测土壤的有机物含量高。

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