Bioenergy and Wastewater Treatment Laboratory, Department of Environmental Sciences, Babasaheb Bhimrao Ambedkar University, Lucknow (U.P.), India- 226025,
Bioenergy and Wastewater Treatment Laboratory, Department of Environmental Sciences, Babasaheb Bhimrao Ambedkar University, Lucknow (U.P.), India- 226025.
Front Biosci (Landmark Ed). 2017 Mar 1;22(8):1195-1220. doi: 10.2741/4542.
Biohydrogen production by dark fermentation of different waste materials is a promising approach to produce bio-energy in terms of renewable energy exploration. This communication has reviewed various influencing factors of dark fermentation process with detailed account of determinants in biohydrogen production. It has also focused on different factors such as improved bacterial strain, reactor design, metabolic engineering and two stage processes to enhance the bioenergy productivity from substrate. The study also suggest that complete utilization of substrates for biological hydrogen production requires the concentrated research and development for efficient functioning of microorganism with integrated application for energy production and bioremediation. Various studies have been taken into account here, to show the comparative efficiency of different substrates and operating conditions with inhibitory factors and pretreatment option for biohydrogen production. The study reveals that an extensive research is needed to observe field efficiency of process using low cost substrates and integration of dark and photo fermentation process. Integrated approach of fermentation process will surely compete with conventional hydrogen process and replace it completely in future.
利用不同废物进行暗发酵生产生物氢,是探索可再生能源生产生物能源的一种很有前途的方法。本通讯综述了暗发酵过程的各种影响因素,并详细说明了生物氢生产中的决定因素。还重点讨论了不同因素,如改良细菌菌株、反应器设计、代谢工程和两段工艺,以提高底物的生物能源生产力。该研究还表明,要实现生物制氢底物的完全利用,需要集中研究和开发高效微生物的功能,并将其应用于能源生产和生物修复。这里考虑了各种研究,以展示不同底物和操作条件的比较效率,以及生物氢生产的抑制因素和预处理选择。该研究表明,需要进行广泛的研究,以观察使用低成本底物的过程现场效率,并整合暗发酵和光发酵过程。发酵过程的综合方法肯定会与传统的制氢工艺竞争,并在未来完全取代它。