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重力驱动膜系统处理含重金属的二级出水:重金属去除的改进和机制。

Gravity-driven membrane system treating heavy metals-containing secondary effluent: Improved removal of heavy metals and mechanism.

机构信息

State Key Laboratory of Urban Water Resource and Environment (SKLUWRE), Harbin Institute of Technology, 73 Huanghe Road, Nangang District, Harbin, 150090, PR China.

Heilongjiang College of Construction, 999 Xueyuan Road, Hulan District, Harbin, 150025, PR China.

出版信息

Chemosphere. 2023 Oct;339:139590. doi: 10.1016/j.chemosphere.2023.139590. Epub 2023 Jul 20.

Abstract

This study aimed at investigating the removal performance of the gravity-driven membrane (GDM) system in treating the heavy metals-containing secondary effluent, as well as evaluating the respective roles of Fe and Mn addition on the removal of heavy metals. GDM process with the formation of biocake layer exerted effective removals of Cr, Pb and Cd, with an average removal efficiency of 98%, 95% and 40%, respectively, however, after removing the biocake layer, the removal efficiencies of Cr, Pb and Cd reduced to 59%, 85% and 19%, respectively, indicating that the biocake layer played a fundamental role in removing heavy metals. With the assistance of Fe, the removal efficiency of heavy metals increased, and exhibited a positive response to the Fe dosage, due to the adsorption by the freshly generated iron oxides. On the contrary, the Mn involvement would result in the reduction of Cd removal due to the competitive adsorption of residual dissolved Mn and Cd. Furthermore, the addition of a high dosage of Fe increased the diversity of eukaryotic communities and facilitated the elimination of heavy metals, however, the involvement of Mn would lead to a reduction in microbial diversity, resulting in a decrease of heavy metal removal efficiency. These findings are expected to develop new tactics to enhance heavy metal removal and promote widespread application of GDM technology in the fields of deep treatment of heavy metals-containing wastewater and reclamation of secondary effluent.

摘要

本研究旨在探讨重力驱动膜(GDM)系统在处理含重金属的二级出水方面的去除性能,并评估 Fe 和 Mn 的添加对重金属去除的各自作用。形成生物膜层的 GDM 工艺对 Cr、Pb 和 Cd 的去除效果显著,平均去除率分别为 98%、95%和 40%,然而,去除生物膜层后,Cr、Pb 和 Cd 的去除率分别降至 59%、85%和 19%,表明生物膜层在去除重金属方面发挥了重要作用。在 Fe 的辅助下,重金属的去除效率提高,且对 Fe 剂量呈正响应,这归因于新生成的氧化铁的吸附作用。相反,Mn 的参与会由于残留溶解的 Mn 和 Cd 的竞争吸附而降低 Cd 的去除率。此外,添加高剂量的 Fe 会增加真核生物群落的多样性,并有利于重金属的去除,然而,Mn 的参与会导致微生物多样性减少,从而降低重金属去除效率。这些发现有望为增强重金属去除提供新策略,并促进 GDM 技术在含重金属废水深度处理和二级出水回用上的广泛应用。

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