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Biohydrogen and Biomethane (Biogas) Production in the Consecutive Stages of Anaerobic Digestion of Molasses

机译:糖蜜厌氧消化连续阶段的生物氢和生物甲烷(沼气)生产

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摘要

Anaerobic digestion, whose final products are methane and carbon dioxide, has been used to produce biogas from waste biomass as an alternative energy source. For the purpose of innovative, modern technologies based on microbial processes, it is desirable to separate the hydrogen-(hydrolysis and acidogenesis) and methane-yielding (acetogenesis and methanogenesis) stages of anaerobic digestion to respectively favor the production of hydrogen and methane under controlled conditions. Previously, we developed a benchscale (3- and 3.5-litre bioreactors) two-stage anaerobic digestion system producing hydrogen (in stage 1) and methane (in stage 2) from sucrose-rich by-products of the sugar beet refining industry as the primary energy substrates under mesophilic conditions. Recently, the two-stage system for hydrogen and methane production has been successfully scaled up 10-fold (a pilot scale) and currently operates in one of the Polish sugar factories. The efficiency of hydrogen and methane production were directly proportional to the scale of installation. The obtained results led to the development objectives of further research that the end result will be an innovative solution for the sugar factory as a producer of gaseous biofuels.
机译:厌氧消化的最终产物是甲烷和二氧化碳,已被用来从废物生物质中产生沼气作为替代能源。出于基于微生物过程的创新性现代技术的目的,希望将厌氧消化的氢-(水解和酸生成)阶段和甲烷-产率(产乙酸和甲烷生成)阶段分开,以分别有利于在受控条件下生产氢和甲烷条件。以前,我们开发了台式规模(3升和3.5升生物反应器)两阶段厌氧消化系统,利用甜菜精炼行业的富含蔗糖的副产品生产氢气(第1阶段)和甲烷(第2阶段)。嗜温条件下的主要能量底物。最近,用于氢气和甲烷生产的两阶段系统已成功放大了10倍(中试规模),目前在波兰的一家制糖厂中运行。氢气和甲烷的生产效率与安装规模成正比。获得的结果导致了进一步研究的发展目标,即最终结果将成为制糖厂作为气态生物燃料生产商的创新解决方案。

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