一种新型氢气柔性生物甲烷化反应器的设计与建造

IF 3.3 3区 农林科学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
K. Hoffstadt, D. Cheenakula, M. Nikolausz, S. Krafft, H. Harms, I. Kuperjans
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引用次数: 0

摘要

可再生电力在电网中所占份额的增加推动了对足够存储容量的需求。特别是对于季节性储存,电力转天然气可能是一种很有前途的方法。从剩余电力中产生的氢气中生物产生的甲烷可以用来替代现有基础设施中的天然气。目前的反应器类型没有或很差地针对柔性甲烷化进行优化。因此,本工作提出了一种新型的塞流反应器(PFR)设计。COMSOL Multiphysics®的模拟显示出在层流中运行的良好性能。进行了一项实验来支持模拟结果,并确定新型反应器的气体分数,测量结果为29%。基于这些模拟和实验结果,反应器被构造为具有曲折方向的14m长、50mm直径的管。建立了数据处理方法,并进行了分步实验。此外,确定了1 h−1的kLa。结果表明,该类型的流量和气体分数的实验结果与理论模拟一致。新的设计显示出柔性甲烷化的良好性能,并将进行测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Construction of a New Reactor for Flexible Biomethanation of Hydrogen
The increasing share of renewable electricity in the grid drives the need for sufficient storage capacity. Especially for seasonal storage, power-to-gas can be a promising approach. Biologically produced methane from hydrogen produced from surplus electricity can be used to substitute natural gas in the existing infrastructure. Current reactor types are not or are poorly optimized for flexible methanation. Therefore, this work proposes a new reactor type with a plug flow reactor (PFR) design. Simulations in COMSOL Multiphysics ® showed promising properties for operation in laminar flow. An experiment was conducted to support the simulation results and to determine the gas fraction of the novel reactor, which was measured to be 29%. Based on these simulations and experimental results, the reactor was constructed as a 14 m long, 50 mm diameter tube with a meandering orientation. Data processing was established, and a step experiment was performed. In addition, a kLa of 1 h−1 was determined. The results revealed that the experimental outcomes of the type of flow and gas fractions are in line with the theoretical simulation. The new design shows promising properties for flexible methanation and will be tested.
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来源期刊
Fermentation-Basel
Fermentation-Basel BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
CiteScore
3.80
自引率
18.90%
发文量
594
审稿时长
7 weeks
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