Remediation of arsenic-contaminated soil by biochar-loaded nanoscale zero-valent iron: Performance, mechanism, and microbial response
编号:789 访问权限:私有 更新:2023-04-08 18:37:06 浏览:251次 口头报告

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摘要
Given the increasingly serious problem of arsenic-contaminated soil, biochar-loaded nanoscale zero-valent iron (nZVI@BC) was prepared in this study for remediation of arsenic-contaminated soil. Characterization analysis showed that nZVI was evenly dispersed on the BC, and the functional groups were enriched and strengthened. The effects of various factors (different materials, nZVI loading ratio, and remediation time) on arsenic speciation, pH, and CEC in soil were comprehensively investigated. The results demonstrated that arsenic stabilization was positively correlated with the dosage, nZVI loading ratio, and remediation time. 5% nZVI@BC (3:1) exhibited the best immobilization performance, significantly promoted the transformation from labile arsenic to iron-aluminum oxide binding state and residue state, and improved the available iron, pH, and CEC of the soil. The remediation mechanism was revealed, involving electrostatic attraction, surface adsorption, redox, complexation and co-precipitation. In addition, the bacterial community abundance, diversity, and species composition displayed discrepancies with various treatments, especially with 5% nZVI@BC (3:1). Sixty-six biomarker species were screened, mainly belonging to Actinobacteria and Gemmatimonadetes with biochar treatment as well as Firmicutes, Acidobacteria, and Chloroflexi with nZVI@BC treatment. This study will provide the essential theoretical basis and extensive application value for nZVI@BC remediation of arsenic-contaminated soil.
关键词
nZVI@BC; Arsenic; Soil; Remediation mechanism; Bacterial community
报告人
宋佩佩
山东农业大学

稿件作者
宋佩佩 山东农业大学
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重要日期
  • 会议日期

    05月05日

    2023

    05月08日

    2023

  • 03月31日 2023

    初稿截稿日期

  • 05月25日 2023

    注册截止日期

主办单位
青年地学论坛理事会
中国科学院青年创新促进会地学分会
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武汉大学
中国科学院精密测量科学与技术创新研究院
中国地质大学(武汉)
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