Recent progress on rational design of catalysts for fermentative hydrogen production
作者机构:State Key Laboratory of Pollution Control and Resource ReuseState Key Laboratory of Analytical Chemistry for Life ScienceThe Frontiers Science Center for Critical Earth Material CyclingSchool of the EnvironmentSchool of Chemistry and Chemical EngineeringNanjing UniversityNanjingP.R.China School of Mechanical and Materials EngineeringWashington State UniversityPullmanWashingtonUSA School of Life SciencesHuzhou UniversityHuzhouP.R.China
出 版 物:《SusMat》 (可持续发展材料(英文))
年 卷 期:2022年第2卷第4期
页 面:392-410页
核心收录:
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:W.Z.would like to acknowledge the support from National Natural Science Foundation of China(grant number:22176086) Natural Science Foundation of Jiangsu Province(grant number:BK20210189) State Key laboratory of Pollution Control and Resource Reuse(grant number:PCRR-ZZ-202106) the Fundamental Research Funds for the Central Universities(grant number:021114380183 and 021114380189) the Research Funds from Frontiers Science Center for Critical Earth Material Cycling of Nanjing University,and Research Funds for Jiangsu Distinguished Professor.Y.L.would like to acknowledge the start-up fund from Washington State University
主 题:catalysts fermentation hydrogen production renewable energy
摘 要:The increasingly severe energy crisis has strengthened the determination to develop environmentally friendly *** hydrogen has emerged as a candi-date for clean *** many hydrogen generation methods,biohydrogen stands out due to its environmental sustainability,simple operating environ-ment,and cost *** review focuses on the rational design of catalysts for fermentative hydrogen *** principles of microbial dark fermen-tation and photo-fermentation are elucidated *** strategies to increase the efficiency of fermentative hydrogen production are summa-rized,and some recent representative works from microbial dark fermentation and photo-fermentation are ***,perspectives and discussions on the rational design of catalysts for fermentative hydrogen production are provided.