Tianjin Key Lab of Indoor Air Environmental Quality Control, School of Environmental Science and Engineering, Tianjin University, No. 135 Yaguan Road, Jinnan District, Tianjin 300350, China.
Department of Environmental Systems Science, ETH Zurich, Universitätstrasse 16, CH-8092 Zurich, Switzerland.
Sci Total Environ. 2023 Aug 1;884:163850. doi: 10.1016/j.scitotenv.2023.163850. Epub 2023 May 1.
Carbon materials have been confirmed to promote phosphorus recovery as vivianite through enhancing dissimilatory iron reduction (DIR), which alleviates phosphorus crisis. Carbon black (CB) exhibits contradictory dual roles of cytotoxicity inducer and electron transfer bridge towards extracellular electron transfer (EET). Herein, the effect of CB on vivianite biosynthesis was investigated with dissimilatory iron reduction bacteria (DIRB) or sewage. With Geobacter sulfurreducens PCA as inoculum, the vivianite recovery efficiency increased accompanied with CB concentrations and enhanced by 39 % with 2000 mg·L CB. G. sulfurreducens PCA activated the adaptation mechanism of secreting extracellular polymeric substance (EPS) to resist cytotoxicity of CB. While in sewage, the highest iron reduction efficiency of 64 % was obtained with 500 mg·L CB, which was appropriate for functional bacterial selectivity like Proteobacteria and bio-transformation from Fe(III)-P to vivianite. The balance of CB's dual roles was regulated by inducing the adaptation of DIRB to gradient CB concentrations. This study provide an innovative perspective of carbon materials with dual roles for vivianite formation enhancement.
碳材料已被证实通过增强异化铁还原(DIR)促进磷的回收生成蓝铁矿,从而缓解磷危机。炭黑(CB)对细胞毒性诱导和电子传递桥在细胞外电子传递(EET)方面表现出矛盾的双重作用。在此,通过异化铁还原菌(DIRB)或污水研究了 CB 对蓝铁矿生物合成的影响。以 Geobacter sulfurreducens PCA 作为接种物,随着 CB 浓度的增加,蓝铁矿的回收效率增加,添加 2000mg·L CB 时增加了 39%。G. sulfurreducens PCA 激活了分泌胞外聚合物(EPS)的适应机制以抵抗 CB 的细胞毒性。而在污水中,添加 500mg·L CB 时可获得最高的铁还原效率 64%,这有利于功能细菌如 Proteobacteria 的选择性和从 Fe(III)-P 向蓝铁矿的生物转化。CB 的双重作用的平衡通过诱导 DIRB 适应 CB 浓度梯度来调节。本研究为具有增强蓝铁矿形成的双重作用的碳材料提供了一个创新视角。