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Microbial-driven ectopic uranium extraction with net electrical energy production

  • Xin Tang
  • , Yin Ye
  • , Chunlin Wang
  • , Bingqian Wang
  • , Zemin Qin
  • , Cui Li
  • , Yanlong Chen
  • , Yuheng Wang
  • , Zhiling Li
  • , Miao Lv
  • , Aijie Wang
  • , Fan Chen
  • Northwestern Polytechnical University Xian
  • Xi'an University of Architecture and Technology
  • School of Environment, Harbin Institute of Technology
  • Southwest Jiaotong University

科研成果: 期刊稿件文章同行评审

12 引用 (Scopus)

摘要

The extraction of uranium (U) from U-bearing wastewater is of paramount importance for mitigating negative environmental impacts and recovering U resources. Microbial reduction of soluble hexavalent uranium (U(VI)) to insoluble tetravalent uranium (U(IV)) holds immense potential for this purpose, but its practical application has been impeded by the challenges associated with managing U-bacterial mixtures and the biotoxicity of U. To address these challenges, we present a novel spontaneous microbial electrochemical (SMEC) method that spatially decoupled the microbial oxidation reaction and the U(VI) reduction reaction. Our results demonstrated stable and efficient U extraction with net electrical energy production, which was achieved with both synthetic and real wastewater. U(VI) removal occurred via diffusion-controlled U(VI)-to-U(IV) reduction-precipitation at the cathode, and the UIVO2 deposited on the surface of the cathode contributed to the stability and durability of the abiotic U(VI) reduction. Metagenomic sequencing revealed the formation of efficient electroactive communities on the anodic biofilm and enrichment of the key functional genes and metabolic pathways involved in electron transfer, energy metabolism, the TCA cycle, and acetate metabolism, which indicated the ectopic reduction of U(VI) at the cathode. Our study represents a significant advancement in the cost-effective recovery of U from U(VI)-bearing wastewater and may open a new avenue for sustainable uranium extraction.[Figure not available: see fulltext.].

源语言英语
期刊论文编号4
期刊Frontiers of Environmental Science and Engineering
18
1
DOI
出版状态已出版 - 1月 2024

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