Department of Earth Resources and Environmental Engineering, Hanyang University, Seoul 04763, Republic of Korea.
Department of Civil, Environmental, and Construction Engineering, University of Central Florida, Orlando, FL 32816-2450, USA.
Bioresour Technol. 2022 Dec;365:128145. doi: 10.1016/j.biortech.2022.128145. Epub 2022 Oct 17.
The production of biohythane, a combination of energy-dense hydrogen and methane, from the anaerobic digestion of low-cost organic wastes has attracted attention as a potential candidate for the transition to a sustainable circular economy. Substantial research has been initiated to upscale the process engineering to establish a hythane-based economy by addressing major challenges associated with the process and product upgrading. This review provides an overview of the feasibility of biohythane production in various anaerobic digestion systems (single-stage, dual-stage) and possible technologies to upgrade biohythane to hydrogen-enriched renewable natural gas. The main goal of this review is to promote research in biohythane production technology by outlining critical needs, including meta-omics and metabolic engineering approaches for the advancements in biohythane production technology.
生物合成气是一种由低成本有机废物厌氧消化产生的富含能量的氢气和甲烷混合物,作为向可持续循环经济过渡的潜在候选物引起了关注。已经启动了大量的研究来扩大工艺工程规模,通过解决与工艺和产品升级相关的主要挑战,建立基于合成气的经济。本文综述了在各种厌氧消化系统(单级、两级)中生产生物合成气的可行性,以及将生物合成气升级为富氢可再生天然气的可能技术。本文的主要目的是通过概述关键需求,包括元组学和代谢工程方法,促进生物合成气生产技术的研究,推动生物合成气生产技术的发展。