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An experimental approach to produce hydrogen and methane from food waste using catalyst

机译:用催化剂生产食品废物中氢和甲烷的实验方法

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Anaerobic co-digestion of food waste, cow dung, and sludge solution is experimented in the presence of calcium peroxide (CaO2) as the catalyst to produce hydrogen and methane as a source of renewable energy. The substrate to inoculum ratios (v/v) of 1:1(S1), 1:2(S2), 1:3(S3), 1:4(S4) and 1:5(S5) are investigated in separate fermentative and methanogenic reactors. The result from the fermentative reactors indicate maximum hydrogen concentration of 26.34% with cumulative yield of 114.1 mL/g total solid (TS) in S3 compared to the other samples. Methanogenic reaction shows the highest methane concentration of 54.13% in S3. The highest daily (average) and cumulative biogas yield of 5.36 mL/g TS and 201.9 mL/g TS respectively are identified in S3. A maximum carbon dioxide concentration of 63.11% is found in 51. Overall, the substrate to inoculum ratio of 1:3 is spotted to be optimal for effective hydrogen and methane production during the anaerobic co-digestion process. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:厌氧共消化食物废物,牛粪和污泥溶液在过氧化钙(CaO2)的存在下,作为催化剂,以产生氢气和甲烷作为可再生能源的来源。在单独的发酵中研究了1:1(S1),1:2(S2),1:3(S3),1:4(S4)和1:5(S5)的底物(v / v)和甲状腺反应器。来自发酵反应器的结果表明,与其他样品相比,S3中的114.1ml / g总固体(Ts)的累积产率为26.34%的最大氢浓度。甲烷化反应显示S3中最高甲烷浓度为54.13%。分别在S3中鉴定了5.36ml / g和201.9ml / g ts的最高每日(平均)和累积沼气产率。在51中发现了63.11%的最大二氧化碳浓度。总体而言,在厌氧共消化过程中,发现底物与接种物质为1:3的底物是最佳的,在厌氧共消化过程中为有效的氢和甲烷产生。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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