Chair of Urban Water Systems Engineering, Technical University of Munich, Am Coulombwall 3, D-85748 Garching, Germany.
Chair of Urban Water Systems Engineering, Technical University of Munich, Am Coulombwall 3, D-85748 Garching, Germany.
Bioresour Technol. 2023 Oct;385:129383. doi: 10.1016/j.biortech.2023.129383. Epub 2023 Jun 22.
Biological methanation of H and CO in trickle bed reactors is a promising energy conversion and storage approach that can support the energy transition towards a renewable-based system. Research in trickle bed reactor design and operation has significantly increased in recent years, but most studies were performed at laboratory scale and conditions. This review provides a comprehensive overview of the trickle bed reactor concept and current developments to support the decision-making process for future projects. In particular, the key design and operational parameters, such as trickling or nutrient provision, are presented, introducing the most recent advances. Furthermore, reactor operation, including the inoculation, long-term and dynamic operation, is described. To better assess the reactor upscaling, several parameters that enable reactor comparison are discussed. On the basis of this review, suitable operational strategies and further research needs were identified that will improve the overall trickle bed reactor performance.
在滴流床反应器中进行 H 和 CO 的生物甲烷化是一种很有前途的能量转换和储存方法,可以支持向基于可再生能源的系统的能源转型。近年来,滴流床反应器设计和操作方面的研究显著增加,但大多数研究都是在实验室规模和条件下进行的。本综述全面概述了滴流床反应器的概念和当前的发展,以支持未来项目的决策过程。特别是,介绍了关键的设计和操作参数,如滴流或营养物供应,以及最新进展。此外,还描述了反应器的操作,包括接种、长期和动态操作。为了更好地评估反应器的放大,讨论了几个能够实现反应器比较的参数。在此基础上,确定了合适的操作策略和进一步的研究需求,这将提高整体滴流床反应器的性能。