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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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發(fā)表于 2025-3-21 18:56:16 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Bioelectrochemistry Stimulated Environmental Remediation
期刊簡(jiǎn)稱From Bioelectrorespi
影響因子2023Ai-Jie Wang,Bin Liang,Hao-Yi Cheng
視頻videohttp://file.papertrans.cn/187/186890/186890.mp4
發(fā)行地址Provides a comprehensive review of bioelectrochemical systems for biodegradation and bioremediation.Explores the mechanism of microbial extracellular electron transfer.Discusses in detail advanced bio
圖書封面Titlebook: Bioelectrochemistry Stimulated Environmental Remediation; From Bioelectrorespi Ai-Jie Wang,Bin Liang,Hao-Yi Cheng Book 2019 Springer Nature
影響因子.This book reviews the latest advances in the bioelectrochemical degradation of recalcitrant environmental contaminants. The first part introduces readers to the basic principles and methodologies of bioelectrochemical systems, electron-respiring microorganisms, the electron transfer mechanism and functional electrode materials. In turn, the second part addresses the bioelectrochemical remediation/treatment of various environmental pollutants (including highly toxic refractory organics, heavy metals, and nitrates) in wastewater, sediment and wetlands. Reactor configuration optimization, hybrid technology amplification and enhanced removal principles and techniques are also discussed..The book offers a valuable resource for all researchers and professionals working in environmental science and engineering, bioelectrochemistry, environmental microbiology and biotechnology..
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Acceleration of Microbial Dehalorespiration with Electrical Stimulation, biocathode performance, and EET-related molecular mechanisms involved in microbial dehalogenation of HOCs is expected to be helpful for the in situ enhanced bioremediation of HOCs. This chapter also highlights the challenges and outlook of HOCs-dehalogenating biocathodes from mechanism and application perspectives.
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Book 2019ders to the basic principles and methodologies of bioelectrochemical systems, electron-respiring microorganisms, the electron transfer mechanism and functional electrode materials. In turn, the second part addresses the bioelectrochemical remediation/treatment of various environmental pollutants (in
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,?konomische Analyse der Kulturnachfrage,rode-respiring microbiomes, including biofilm structure, composition, dynamics, activity, diversity, potential functional microbes, and interaction, is potentially feasible for regulating and scaling-up the microbial electrode-respiration-based engineering systems as well as the management of bioremediation applications.
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