Center for Energy and Environment (CEE), School of Advanced Sciences, KLE Technological University, Hubballi 580031, India.
Center for Energy and Environment (CEE), School of Advanced Sciences, KLE Technological University, Hubballi 580031, India.
Bioresour Technol. 2024 Feb;394:130286. doi: 10.1016/j.biortech.2023.130286. Epub 2024 Jan 3.
Over the years, extensive research has gone into fermentative hydrogen production using pure and mixed cultures from waste biomass with promising results. However, for up-scaling of hydrogen production mixed cultures are more appropriate to overcome the operational difficulties such as a metabolic shift in response to environmental stress, and the need for a sterile environment. Mixed culture biotechnology (MCB) is a robust and stable alternative with efficient waste and wastewater treatment capacity along with co-generation of biohydrogen and platform chemicals. Mixed culture being a diverse group of bacteria with complex metabolic functions would offer a better response to the environmental variations encountered during biohydrogen production. The development of defined mixed cultures with desired functions would help to understand the microbial community dynamics and the keystone species for improved hydrogen production. This review aims to offer an overview of the application of MCB for biohydrogen production.
多年来,人们对利用废生物质中的纯培养物和混合培养物进行发酵产氢进行了广泛的研究,取得了可喜的成果。然而,为了实现产氢的规模化,混合培养物更为合适,可以克服一些操作上的困难,例如应对环境压力时的代谢转变,以及对无菌环境的需求。混合培养生物技术(MCB)是一种强大而稳定的替代方法,具有高效的废物和废水处理能力,同时还可以联产生物氢和平台化学品。混合培养物是一群具有复杂代谢功能的细菌,对生物氢生产过程中遇到的环境变化会有更好的响应。开发具有所需功能的限定混合培养物将有助于了解微生物群落动态和产氢的关键种。本综述旨在概述 MCB 在生物制氢中的应用。