Integration of nanoscale zero-valent iron and functional anaerobic bacteria for groundwater remediation: A review

The technology of integrating nanoscale zero-valent iron (nZVI) and functional anaerobic bacteria has broad prospects for groundwater remediation. This review focuses on the interactions between nZVI and three kinds of functional anaerobic bacteria: organohalide-respiring bacteria (OHRB), sulfate re...

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Veröffentlicht in:Environment international 2019-03, Vol.124, p.265-277
Hauptverfasser: Dong, Haoran, Li, Long, Lu, Yue, Cheng, Yujun, Wang, Yaoyao, Ning, Qin, Wang, Bin, Zhang, Lihua, Zeng, Guangming
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Sprache:eng
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Zusammenfassung:The technology of integrating nanoscale zero-valent iron (nZVI) and functional anaerobic bacteria has broad prospects for groundwater remediation. This review focuses on the interactions between nZVI and three kinds of functional anaerobic bacteria: organohalide-respiring bacteria (OHRB), sulfate reducing bacteria (SRB) and iron reducing bacteria (IRB), which are commonly used in the anaerobic bioremediation. The coupling effects of nZVI and the functional bacteria on the contaminant removal in the integrated system are summarized. Generally, nZVI could create a suitable living condition for the growth and activity of anaerobic bacteria. OHRB and SRB could synergistically degrade organic halides and remove heavy metals with nZVI, and IRB could reactive the passivated nZVI by reducing the iron (hydr)oxides on the surface of nZVI. Moreover, the roles of these anaerobic bacteria in contaminant removal coupling with nZVI and the degradation mechanisms are illustrated. In addition, this review also discusses the main factors influencing the removal efficiency of contaminants in the integrated treatment system, including nZVI species and dosage, inorganic ions, organic matters, pH, type of pollutants, temperature, and carbon/energy sources, etc. Among these factors, the nZVI species and dosage play a fundamental role due to the potential cytotoxicity of nZVI, which might exert a negative impact on the performance of this integrated system. Lastly, the future research needs are proposed to better understand this integrated technology and effectively apply it in groundwater remediation. [Display omitted] •Interactions between nZVI and functional bacteria (OHRB, SRB, IRB) are summarized.•The coupling effects of nZVI and functional bacteria are discussed.•The roles of the bacteria in pollutant removal coupling with nZVI are illustrated.•Factors influencing the efficacy of the integrated treatment system are discussed.•Future research needs and challenges are proposed.
ISSN:0160-4120
1873-6750
DOI:10.1016/j.envint.2019.01.030