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首页> 外文期刊>Biochemical Engineering Journal >Effects of operating parameters on hydrogen production from raw wet steam-exploded cornstalk and two-stage fermentation potential for biohythane production
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Effects of operating parameters on hydrogen production from raw wet steam-exploded cornstalk and two-stage fermentation potential for biohythane production

机译:操作参数对湿蒸汽爆玉米秸秆制氢的影响以及两段式发酵生产生物丙烷的潜力

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摘要

Biohythane (biohydrogen + biomethane) production from agricultural residue is a win-win solution for the supply of renewable energy and valorization of waste biomass. This study reported the first investigation on hydrogen fermentation directly using raw wet steam-exploded cornstalk (SC) without any further processing for drying or detoxification. The effects of key operating parameters (feedstock concentration, initial pH and heat treatment of seed sludge) were systematically studied. The suitable conditions for hydrogen fermentation from the wet SC were the feedstock concentration at 200 glr~(-1)(TS, 6-8%), pH at 6.5 and seed sludge without heat treatment. In addition, compared to one-stage biomethane fermentation, the two-stage biohythane fermentation by integrating hydrogen fermentation with biomethane production from SC led to the hydrogen and methane yields of 12 and 195 L kg~(-1) TS~(-1), respectively, corresponding to an increased energy recovery of 26%, reduced fermentation time and facilitated conversion of volatile fatty acids. These results demonstrated the feasible energy-efficient biohydrogen or biohythane production from the wet steam-exploded cornstalk, implying the promising potential of this method for harvesting clean hythane vehicle fuel from agricultural biomass.
机译:从农业残余物中生产生物乙烷(生物氢+生物甲烷)是双赢解决方案,可用于提供可再生能源和废物生物质的增值。这项研究报告了首次使用未经处理的湿蒸汽爆炸玉米秸秆(SC)直接进行氢发酵的研究,无需进行进一步的干燥或解毒处理。系统地研究了关键操作参数(原料浓度,初始pH和种子污泥的热处理)的影响。从湿式SC进行氢发酵的合适条件是:原料浓度为200 glr〜(-1)(TS,6-8%),pH为6.5,种子污泥未经热处理。此外,与一阶段生物甲烷发酵相比,通过将氢发酵与SC产生的生物甲烷相结合的两阶段生物bio发酵,氢气和甲烷的产率分别为12和195 L kg〜(-1)TS〜(-1)分别相当于增加了26%的能量回收率,减少了发酵时间并促进了挥发性脂肪酸的转化。这些结果证明了用湿蒸汽爆炸的玉米秸秆生产可行的高能效生物氢或生物bio烷,表明该方法从农业生物质中收集清洁的hy烷燃料的潜力很大。

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