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Bioelectrochemical system-mediated waste valorization

作     者:K.Chandrasekhar A.Naresh Kumar Tirath Raj Gopalakrishnan Kumar Sang-Hyoun Kim 

作者机构:School of Civil and Environmental EngineeringYonsei University50 Yonsei-roSeoul 03722Republic of Korea Faculty of Science and TechnologyInstitute of ChemistryBioscience and Environmental EngineeringUniversity of Stavanger4036 StavangerNorway 

出 版 物:《Systems Microbiology and Biomanufacturing》 (系统微生物学与生物制造(英文))

年 卷 期:2021年第1卷第4期

页      面:432-443页

学科分类:081704[工学-应用化学] 07[理学] 070304[理学-物理化学(含∶化学物理)] 08[工学] 0817[工学-化学工程与技术] 0703[理学-化学] 

基  金:Open access funding provided by University Of Stavanger.Funding information that explains whether and by whom the research was supported 

主  题:Microbial fuel cells Waste valorization Microbial electrolysis cell Waste-to-energy Biofuels 

摘      要:Bioelectrochemical systems(BESs)are a new and emerging technology in the field of fermentation *** energy was provided externally to the microbial electrolysis cells(MECs)to generate hydrogen or value-added chemicals,including caustic,formic acid,acetic acid,and ***,BES was designed to recover nutrients,metals or remove recalcitrant *** variety of naturally existing microorganisms and enzymes act as a biocatalyst to induce poten-tial differences amid the *** can be performed with non-catalyzed electrodes(both anode and cathode)under favorable circumstances,unlike conventional fuel *** recent years,value-added chemical producing microbial electrosyn-thesis(MES)technology has intensely broadened the prospect for *** additional strategy includes the introduction of innovative technologies that help with the manufacturing of alternative materials for electrode preparation,ion-exchange membranes,and pioneering *** of this,BES is emerging as a promising *** article deliberates recent signs of progress in BESs so far,focusing on their diverse applications beyond electricity generation and resulting performance.

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