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鸟粪石和有机酸对污染生物滞留过滤介质中铜锌固定化的影响。

Effect of struvite and organic acids on immobilization of copper and zinc in contaminated bio-retention filter media.

机构信息

Science and Engineering Faculty, Queensland University of Technology (QUT), Brisbane, Queensland 4000, Australia.

Science and Engineering Faculty, Queensland University of Technology (QUT), Brisbane, Queensland 4000, Australia.

出版信息

J Environ Sci (China). 2020 Nov;97:35-44. doi: 10.1016/j.jes.2020.04.023. Epub 2020 Jun 5.

Abstract

Few studies have been carried out to connect nutrient recovery as struvite from wastewater and sustainable utilization of the recovered struvite for copper and zinc immobilization in contaminated soil. This study revealed the effect of struvite on Cu and Zn immobilization in contaminated bio-retention soil in the presence of commonly exuded plant organic acids. The research hypothesis was that the presence of both struvite and organic acids may influence the immobilization of Cu and Zn in soil. The outcome of this research confirmed that more than 99% of Cu and Zn was immobilized in bio-retention filter media by struvite application. Water-soluble Cu and Zn concentrations of struvite treated soil were less than 1.83 and 0.86 mg/kg respectively, and these concentrations were significantly lower compared to the total Cu and Zn content of 747.05 mg/kg in the contaminated soil. Application of struvite to Cu- and Zn-contaminated soil resulted in formation of compounds similar to zinc phosphate tetrahydrate (Zn(PO)•4HO) and amorphous Cu and Zn phases. Struvite was effective in heavy metal remediation in acidic soil regardless of the presence of Ca impurities in struvite and the presence of plant organic acids in soil. Overall, this study revealed that struvite recovered from wastewater treatment plants has potential for use as an amendment for heavy metal remediation in contaminated bio-retention soil.

摘要

鲜有研究将从废水中回收营养物作为鸟粪石并将回收的鸟粪石用于受污染土壤中铜和锌的固定化以实现可持续利用联系起来。本研究揭示了在通常渗出的植物有机酸存在的情况下,鸟粪石对受污染生物滞留土壤中 Cu 和 Zn 固定化的影响。研究假设是鸟粪石和有机酸的存在可能会影响土壤中 Cu 和 Zn 的固定化。该研究的结果证实,通过施用鸟粪石,超过 99%的 Cu 和 Zn 被固定在生物滞留过滤介质中。鸟粪石处理土壤的水溶性 Cu 和 Zn 浓度分别小于 1.83 和 0.86mg/kg,与污染土壤中 747.05mg/kg 的总 Cu 和 Zn 含量相比,这些浓度明显较低。鸟粪石施用于 Cu 和 Zn 污染土壤会导致形成类似于四水磷酸锌(Zn(PO)•4HO)和无定形 Cu 和 Zn 相的化合物。无论鸟粪石中是否存在 Ca 杂质以及土壤中是否存在植物有机酸,鸟粪石在酸性土壤中的重金属修复中均有效。总的来说,本研究表明,从废水处理厂回收的鸟粪石有可能被用作受污染生物滞留土壤中重金属修复的改良剂。

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