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初步的气流实验确定了用于氢气和一氧化碳生物甲烷化的中试规模滴流床反应器中改进的气流条件。

Preliminary gas flow experiments identify improved gas flow conditions in a pilot-scale trickle bed reactor for H and CO biological methanation.

作者信息

Feickert Fenske Carolina, Md Yasin, Strübing Dietmar, Koch Konrad

机构信息

Chair of Urban Water Systems Engineering, Technical University of Munich, Am Coulombwall 3, 85748 Garching, Germany.

Chair of Urban Water Systems Engineering, Technical University of Munich, Am Coulombwall 3, 85748 Garching, Germany.

出版信息

Bioresour Technol. 2023 Mar;371:128648. doi: 10.1016/j.biortech.2023.128648. Epub 2023 Jan 18.

Abstract

Biological methanation of H and CO is a potential energy conversion technology that can support the energy transition based on renewable sources. The methanation performance in trickle bed reactors can be improved by approaching the gas flow through the reactor towards plug flow. Through preliminary gas flow experiments without biological conversion, this study investigated operational and constructional conditions that enhance plug flow in a pilot-scale trickle bed reactor with 1 m gas volume. An improved gas flow was observed when the feed gas was applied in a top-to-bottom direction and when the process liquid was not trickled through the packing bed. Furthermore, the gas flow experiments identified reactor-specific properties, such as unused or dead volumes. Applying gas flow experiments prior to reactor start-up is recommended as a simple and convenient method to identify individual reactor properties and optimization potentials for higher methanation performance.

摘要

氢气和一氧化碳的生物甲烷化是一种潜在的能量转换技术,可为基于可再生能源的能源转型提供支持。通过使气体通过反应器的流动接近活塞流,可以提高滴流床反应器中的甲烷化性能。通过在没有生物转化的情况下进行初步气流实验,本研究调查了在气体体积为1立方米的中试规模滴流床反应器中增强活塞流的操作和结构条件。当进料气体从顶部到底部施加且工艺液体不通过填料床滴流时,观察到气流得到改善。此外,气流实验确定了反应器特定的特性,例如未使用或死体积。建议在反应器启动前进行气流实验,作为一种简单方便的方法来识别单个反应器的特性和更高甲烷化性能的优化潜力。

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