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15%氧化钙掺杂纳米零价铁对高砷酸废水中砷去除的增强作用。

Enhancement of 15% calcium oxide doped nano zero-valent iron on arsenic removal from high-arsenic acid wastewater.

机构信息

School of Civil Engineering and Architecture, Anhui University of Technology, Maanshan, 243002, Anhui, China.

Engineering Research Center of Biomembrane Water Purification and Utilization Technology, Ministry of Education, Maanshan, 243002, Anhui, China.

出版信息

Environ Sci Pollut Res Int. 2023 Jun;30(30):75156-75169. doi: 10.1007/s11356-023-27604-y. Epub 2023 May 22.

DOI:10.1007/s11356-023-27604-y
PMID:37217816
Abstract

Nano zero-valent iron (nZVI) has a great potential for arsenic removal, but it would form aggregates easily and consume largely by H in the strongly acidic solution. In this work, 15%CaO doped with nZVI (15%CaO-nZVI) was successfully synthesized from a simplified ball milling mixture combined with a hydrogen reduction method, which had a high adsorption capacity for As(V) removal from high-arsenic acid wastewater. More than 97% As(V) was removed by 15%CaO-nZVI under the optimum reaction conditions of pH 1.34, initial As(V) concentration 16.21 g/L, and molar ratio of Fe/As (n/n) 2.5:1. The effluent pH solution was weakly acidic 6.72, and the secondary arsenic removal treatment reduced the solid waste and improved arsenic grade in slag from the mass fraction of 20.02% to 29.07%. Multiple mechanisms including Ca enhanced effect, adsorption, reduction, and co-precipitation coexisted for As(V) removal from high-arsenic acid wastewater. Doping of CaO might lead to improving cracking channels which was benefit for electronic transmission and the confusion of atomic distribution. The in situ weak alkaline environment generated on the surface of 15%CaO-nZVI would increase the content of γ-FeO/FeO, which was in favor for As(V) adsorption. In addition, H in the strongly acidic solution could accelerate corrosion of 15%CaO-nZVI and abundant fresh and reactive iron oxides continuously generated, which would provide plenty specific reactive site and fast charge transfer and ionic mobility for arsenic removal.

摘要

纳米零价铁 (nZVI) 在去除砷方面具有巨大的潜力,但它在强酸性溶液中容易形成聚集体并大量消耗 H。在这项工作中,通过简化的球磨混合物与氢气还原法成功合成了掺杂 nZVI 的 15%CaO (15%CaO-nZVI),对高砷酸性废水中的 As(V) 具有很高的去除吸附能力。在最佳反应条件下,即 pH 1.34、初始 As(V)浓度 16.21 g/L 和 Fe/As(n/n)比 2.5:1,15%CaO-nZVI 可去除超过 97%的 As(V)。出水 pH 值为弱酸性 6.72,二次砷去除处理减少了固体废物并提高了渣中的砷品位,从质量分数 20.02%提高到 29.07%。共存多种机制,包括 Ca 增强效应、吸附、还原和共沉淀,用于去除高砷酸性废水中的 As(V)。掺杂 CaO 可能会导致改善开裂通道,有利于电子传输和原子分布的混乱。15%CaO-nZVI 表面原位产生的弱碱性环境会增加 γ-FeO/FeO 的含量,有利于 As(V)的吸附。此外,强酸性溶液中的 H 可以加速 15%CaO-nZVI 的腐蚀,并且不断产生大量新鲜和反应性的氧化铁,这为砷的去除提供了充足的特定反应位点、快速的电荷转移和离子迁移率。

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