首页> 外文期刊>International journal of hydrogen energy >Feasibility of successive hydrogen and methane production in a single-reactor configuration of batch anaerobic digestion through bioaugmentation and stimulation of hydrogenase activity and direct interspecies electron transfer
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Feasibility of successive hydrogen and methane production in a single-reactor configuration of batch anaerobic digestion through bioaugmentation and stimulation of hydrogenase activity and direct interspecies electron transfer

机译:通过生物强化和刺激氢化酶活性和直接种间电子转移,在间歇厌氧消化的单反应器配置中连续生产氢气和甲烷的可行性

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摘要

Two-stage anaerobic digestion is a promising way to increase the efficiency of decompo-sition of organic waste. However, spatial separation of stages makes this technology less economically attractive. In this work, we studied a model of two-stage anaerobic digestion with stages separated in time in one reactor. To implement this model, we used a com-bination of (1) bioaugmentation with a hydrogen-producing Thermoanaerobacterium ther-mosaccharolyticum SP-H2, resistant to low pH, (2) setting a low initial pH (5.5) to reduce the activity of hydrogenotrophic methanogens, (3) supplementing additives in the form of soluble iron (II) and granular activated carbon (GAC) to stimulate hydrogenase activity and direct interspecies electron transfer (DIET), respectively. For comparison, two methano-genic inoculums with different dominant microbial groups and initial iron concentrations were used. With the simultaneous addition of GAC and iron (II), sequential production of hydrogen and methane was observed for both methanogenic inoculums. Without the addition of GAC, methane formation was practically not observed, which, apparently, indicated the impossibility of syntrophic degradation of acidogenesis products due to the high partial pressure of hydrogen and the absence of conductive material for activation of DIET. Significant differences in hydrogenase activity and the kinetics of hydrogen and methane formation according to the modified Gompertz equation depending on the iron content in the system may indicate the importance of this additive. Further studies should be aimed at determining the optimal initial pH, concentrations of stimulating additives, bioaugmentation and methanogenic cultures, as well as confirming the stability of the proposed single-reactor two-stage anaerobic digestion system in semi-continuous mode. (c) 2022 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:两阶段厌氧消化是提高有机废物分解效率的一种有前途的方法。然而,阶段的空间分离使得这项技术在经济上不那么有吸引力。在这项工作中,我们研究了一种两级厌氧消化模型,该模型在一个反应器中按时间间隔。为了实现该模型,我们结合了 (1) 与产氢热厌氧菌 ther-mosaccharolyticum SP-H2 的生物强化,耐低 pH 值,(2) 设置低初始 pH 值 (5.5) 以降低氢基因组产甲烷菌的活性,(3) 补充可溶性铁 (II) 和颗粒活性炭 (GAC) 形式的添加剂以刺激氢化酶活性和直接种间电子转移 (DIET), 分别。为了进行比较,使用了两种具有不同优势微生物群和初始铁浓度的产甲烷接种物。同时添加GAC和铁(II)后,观察到两种产甲烷接种物的氢气和甲烷的顺序产生。在不添加GAC的情况下,实际上没有观察到甲烷的形成,这显然表明由于氢的高分压和缺乏用于激活DIET的导电材料,酸生成产物的合成降解是不可能的。根据改进的 Gompertz 方程,氢化酶活性以及氢气和甲烷形成动力学的显着差异取决于系统中的铁含量,这可能表明该添加剂的重要性。进一步的研究应旨在确定最佳初始pH值,刺激添加剂浓度,生物强化和产甲烷培养物,以及确认所提出的单反应器两级厌氧消化系统在半连续模式下的稳定性。(c) 2022 Hydrogen Energy Publications LLC.,由爱思唯尔有限公司出版。保留所有权利。

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