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黄铁矿和零价铁在人工湿地中协同去除 Hg(Ⅱ)的作用:电子传递和微生物反应机制。

Synergetic effect of pyrrhotite and zero-valent iron on Hg(Ⅱ) removal in constructed wetland: Mechanisms of electron transfer and microbial reaction.

机构信息

College of Environment and Safety Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.

College of Environment and Safety Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.

出版信息

J Hazard Mater. 2024 Dec 5;480:136041. doi: 10.1016/j.jhazmat.2024.136041. Epub 2024 Oct 2.

Abstract

Effective removal of mercury (Hg) from wastewater is significant due to its high toxicity, especially methylmercury (MeHg). Reducing of Hg(II) to Hg(0) in constructed wetlands (CWs) using iron-based materials is an effective strategy for preventing the formation of MeHg. However, the surface passivation of zero-valent iron (ZVI) limits its application. Herein, synergetic ZVI and pyrrhotite were utilized to enhance Hg removal in CWs. Results indicated that the removal of total Hg, dissolved Hg, and particulate Hg in CWs with ZVI and pyrrhotite were improved by 21.68 ± 0.76 %, 13.02 ± 0.88 %, and 22.27 ± 0.76 % compared to that with single ZVI or pyrrhotite. Pyrrhotite increased the surface corrosion of ZVI, thereby facilitating the process of iron reduction. The redox of iron promoted the generation of EPS, which could provide electrons for Hg(II) reduction. The sulfur also participates in electron transfer by driving the methylation of Hg and provides sulfides to form FeS-Hg complexes and HgS precipitation. The abundance of key enzymes that involved in iron reduction and Hg transformation was enhanced with the addition of ZVI and pyrrhotite. The synergetic of pyrrhotite and ZVI enhances the removal of Hg in CW, offering a promising technology for high-efficiency treatment of Hg.

摘要

有效去除废水中的汞(Hg)很重要,因为汞的毒性很高,尤其是甲基汞(MeHg)。在人工湿地(CWs)中使用铁基材料将 Hg(II)还原为 Hg(0)是防止形成 MeHg 的有效策略。然而,零价铁(ZVI)的表面钝化限制了其应用。本文利用协同 ZVI 和磁黄铁矿来增强 CWs 中的 Hg 去除。结果表明,与单独使用 ZVI 或磁黄铁矿相比,CWs 中添加 ZVI 和磁黄铁矿可分别将总 Hg、溶解 Hg 和颗粒态 Hg 的去除率提高 21.68 ± 0.76%、13.02 ± 0.88%和 22.27 ± 0.76%。磁黄铁矿增加了 ZVI 的表面腐蚀,从而促进了铁还原过程。铁的氧化还原促进了 EPS 的生成,EPS 可以为 Hg(II)还原提供电子。硫还通过驱动 Hg 的甲基化和提供硫化物来形成 FeS-Hg 配合物和 HgS 沉淀参与电子转移。添加 ZVI 和磁黄铁矿后,涉及铁还原和 Hg 转化的关键酶的丰度增加。磁黄铁矿和 ZVI 的协同作用增强了 CW 中 Hg 的去除,为高效处理 Hg 提供了一种有前景的技术。

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