Advances in Fe(III) bioreduction and its application prospect for groundwater remediation: A review
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Environmental Science
Link
http://link.springer.com/content/pdf/10.1007/s11783-019-1173-9.pdf
Reference82 articles.
1. Aburto-Medina A, Ball A S (2015). Microorganisms involved in anaerobic benzene degradation. Annals of Microbiology, 65(3): 1201–1213
2. Al-Abadleh H A (2015). Review of the bulk and surface chemistry of iron in atmospherically relevant systems containing humic-like substances. RSC Advances, 5(57): 45785–45811
3. Amstaetter K, Borch T, Kappler A (2012). Influence of humic acid imposed changes of ferrihydrite aggregation on microbial Fe(III) reduction. Geochimica et Cosmochimica Acta, 85: 326–341
4. Anderson R T, Lovley D R (2000). Anaerobic bioremediation of benzene under sulfate-reducing conditions in a petroleum-contaminated aquifer. Environmental Science & Technology, 34(11): 2261–2266
5. Anderson R T, Rooney-Varga J N, Gaw C V, Lovley D R (1998). Anaerobic benzene oxidation in the Fe(III) reduction zone of petroleum contaminated aquifers. Environmental Science & Technology, 32(9): 1222–1229
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