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Titlebook: Bioelectrochemistry Stimulated Environmental Remediation; From Bioelectrorespi Ai-Jie Wang,Bin Liang,Hao-Yi Cheng Book 2019 Springer Nature

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楼主: 天真无邪
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Application of Redox Mediators in Bioelectrochemical System,hlighting in brief the natural-presented, solid-phase humin, as RMs for enhancing the biotransformation of contaminants in BESs. Conclusions have been drawn from the literature reviewed, and suggestions for future research on enhancing the applicability of BESs assisted by redox mediators were proposed.
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,Ökonomische Analyse des Kulturangebots,n the biocatalysts and the interfacial charge transfer between solid electrode and the microbial cells. Apparently, the latter step is always the controlling step for all kinds of BES devices due to the insulation cell envelope. The interfacial electron transfer determines the performances of the de
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,Ökonomische Analyse der Kulturnachfrage,rganic contaminants in bioelectrochemical systems (BESs). The microbial ecology and physiology of the involved electrode-associated multispecies biofilms are essential for the catalytic function of BESs. In this chapter, we summarize the advances of the electrode-respiring biofilm microbiomes involv
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https://doi.org/10.1007/978-3-531-90370-5cal systems (BES) with organohalide-respiring bacteria (OHRB) has been recognized as a promising alternative and gained extensive attention in recent years. In this chapter, the enhanced microbial dehalogenation of HOCs by electrochemical stimulation from capacities to extracellular electron transfe
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,Ökonomische Analyse des Kulturangebots,hortage of natural ores and environmental considerations. Present metallurgical BESs have been conducted with the aim either to increase the efficiency of metal recovery using these established BESs or to develop novel processes for broadening the applicable BESs for metal recovery. This review atte
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,Konsequenzen für Kunst und Kultur,racted increasing attention in the past decade for the bioremediation. The treatability of various pollutants by BESs has been proved in lab scale. However, these technologies are still far from the real application. One of the greatest challenges is the difficulty of achieving high rates of extrace
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