Extracellular electron transfer-dependent Cr(VI)/sulfate reduction mediated by iron sulfide nanoparticles

被引:13
|
作者
Qian, Danshi [1 ]
Liu, Huimin [1 ]
Hu, Fan [1 ]
Song, Song [1 ]
Chen, Yuancai [1 ]
机构
[1] South China Univ Technol, Coll Environm & Energy, Key Lab Pollut Control & Ecol Remediat Ind Agglom, Minist Educ, Guangzhou 510006, Peoples R China
关键词
Sulfate reducing bacteria; Heavy metal pollution; Competing electron acceptor; Iron sulfide nanoparticles; Extracellular electron transfer; SULFATE-REDUCING BACTERIA; HEXAVALENT CHROMIUM; DISSIMILATORY IRON; CR(VI) REMOVAL; FES; MECHANISMS; CHROMATE; DECHLORINATION; REMEDIATION; TOXICITY;
D O I
10.1016/j.jbiosc.2022.05.005
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The slow electron transfer rate is a bottleneck to the biological wastewater treatment. This study evaluated the concomitant biotransformation and nonenzymatic reduction of Cr(VI) mediated by sulfate reducing bacteria (SRB), especially for the reinforcing Cr(VI) reduction via accelerating the electron transfer by the in-situ biosynthesized iron sulfide nanoparticles (FeS NPs). The kinetic results showed that 10 mg/L Cr(VI) was completely removed by pre-cultured FeS NPs within 7 h with k(Cr(VI)) of 2.6 x 10(-4) s(-1), one magnitude higher than that without FeS NPs. Despite its competing electron to postpone sulfate reduction, the reduction of Cr(VI) was markedly improved via nonenzymatic reactions by the sulfide, the product of sulfate reduction. In the reinforcing system (bio-FeS NP@SRB), the bio-FeS NPs served as an electronic bypass conduit for CoQ could significantly amplify the electron flux, and switch the Cr(VI) reduction from intracellular space to extracellular environment, which had a great detoxification effect on the microorganisms, eventually markedly promoted electron transfer extracellularly and the reduction of Cr(VI). After the long-term acclimatization, Desulfovibrio became the dominant bacteria at the genus level and accounted for the relative abundance of 32%. This study provides an alternative to use biogenic FeS NPs for Cr(VI) remediation. (C) 2022, The Society for Biotechnology, Japan. All rights reserved.
引用
收藏
页码:153 / 161
页数:9
相关论文
共 50 条
  • [1] Extracellular electron transfer-dependent anaerobic oxidation of ammonium by anammox bacteria
    Dario R. Shaw
    Muhammad Ali
    Krishna P. Katuri
    Jeffrey A. Gralnick
    Joachim Reimann
    Rob Mesman
    Laura van Niftrik
    Mike S. M. Jetten
    Pascal E. Saikaly
    Nature Communications, 11
  • [2] Extracellular electron transfer-dependent anaerobic oxidation of ammonium by anammox bacteria
    Shaw, Dario R.
    Ali, Muhammad
    Katuri, Krishna P.
    Gralnick, Jeffrey A.
    Reimann, Joachim
    Mesman, Rob
    van Niftrik, Laura
    Jetten, Mike S. M.
    Saikaly, Pascal E.
    NATURE COMMUNICATIONS, 2020, 11 (01)
  • [3] Biogenic Iron Sulfide Nanoparticles to Enable Extracellular Electron Uptake in Sulfate-Reducing Bacteria
    Deng, Xiao
    Dohmae, Naoshi
    Kaksonen, Anna H.
    Okamoto, Akihiro
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2020, 59 (15) : 5995 - 5999
  • [4] Extracellular electron transfer-dependent bioremediation of uranium-contaminated groundwater: Advancements and challenges
    Li, Zhi-Ling
    Li, Sheng-Fang
    Zhang, Zi-Meng
    Chen, Xue-Qi
    Li, Xi-Qi
    Zu, Yun-Xia
    Chen, Fan
    Wang, Ai-Jie
    WATER RESEARCH, 2025, 272
  • [5] Enhanced Cr(VI) bioreduction by biochar: Insight into the persistent free radicals mediated extracellular electron transfer
    Yu, Cheng
    Zhu, Xiaoxi
    Mohamed, Abdelkader
    Dai, Ke
    Cai, Peng
    Liu, Shilin
    Huang, Qiaoyun
    Xing, Baoshan
    JOURNAL OF HAZARDOUS MATERIALS, 2023, 442
  • [6] Biosynthesized iron sulfide nanoparticles by mixed consortia for enhanced extracellular electron transfer in a microbial fuel cell
    Cui, Yan
    Chen, Xueru
    Pan, Zhengyong
    Wang, Yuqi
    Xu, Qiang
    Bai, Jiaying
    Jia, Honghua
    Zhou, Jun
    Yong, Xiaoyu
    Wu, Xiayuan
    BIORESOURCE TECHNOLOGY, 2020, 318
  • [7] Biogenic carbon encapsulated iron oxides mediated oxalic acid for Cr(VI) reduction in aqueous: Efficient performance, electron transfer and radical mechanisms
    Gu, Chunyao
    Cai, Miao
    He, Peng
    Zhu, Jianyu
    Gan, Min
    CHEMOSPHERE, 2023, 313
  • [8] Optimizing nanocarbon shell in zero-valent iron nanoparticles for improved electron utilization in Cr(VI) reduction
    Zhou, Na
    Gong, Kedong
    Hu, Qian
    Cheng, Xiang
    Zhou, Juying
    Dong, Mengyao
    Wang, Ning
    Ding, Tao
    Qiu, Bin
    Guo, Zhanhu
    CHEMOSPHERE, 2020, 242
  • [9] Intra/extracellular electron transfer and energy-dependent Cr(VI) efflux for Gram-negative/positive bacteria mediated by PMo12
    Yi, Linya
    Chen, Shuyan
    Chen, Yuancai
    JOURNAL OF HAZARDOUS MATERIALS, 2025, 491
  • [10] Engineering a Rhamnose-Inducible System to Enhance the Extracellular Electron Transfer Ability of Shewanella Genus for Improved Cr(VI) Reduction
    Cheng, Lei
    He, Ru-Li
    Min, Di
    Li, Wen-Wei
    Liu, Dong-Feng
    Yu, Han-Qing
    ACS ES&T ENGINEERING, 2021, 1 (05): : 842 - 850