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Effect of biochar addition on hydrogen and methane production in two-phase anaerobic digestion of aqueous carbohydrates food waste

机译:添加生物碳对含水碳水化合物食物垃圾两相厌氧消化中氢气和甲烷产生的影响

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Effect of biochar addition on hydrogen and methane production in two-phase anaerobic digestion of aqueous carbohydrates was studied using bench-scale bioreactors. The cultures with biochar additions were placed in 100 ml reactors and incubated at 35 degrees C and pH 5 for hydrogen production. The residual cultures were then used for methane production, incubated at 35 degrees C and pH 7. Daily yields of hydrogen and methane and weekly yield of volatile fatty acids (VFA) were measured. The hydrogen and methane production potentials, rate and lag phases of the two phases were analysed using the Gompertz model. The results showed that biochar addition increased the maximum production rates of hydrogen by 32.5% and methane 41.6%, improved hydrogen yield by 31.0% and methane 10.0%, and shortened the lag phases in the two phases by 36.0% and 41.0%, respectively. Biochar addition also enhanced VFA generation during hydrogen production and VFA degradation in methane production. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用台式规模的生物反应器研究了生物炭添加对水性碳水化合物两相厌氧消化中氢气和甲烷产生的影响。将添加了生物炭的培养物置于100 ml反应器中,并在35摄氏度和pH 5下孵育以产生氢气。然后将残留的培养物用于甲烷生产,在35摄氏度和pH 7下孵育。测量了氢气和甲烷的日产量以及每周的挥发性脂肪酸(VFA)产量。使用Gompertz模型分析了两相的氢气和甲烷生产潜力,速率和滞后阶段。结果表明,添加生物炭可将氢气的最高生产率提高32.5%,将甲烷的最高生产率提高41.6%,将氢气的产率提高31.0%,将甲烷的产率提高10.0%,并将两相的滞后相分别缩短36.0%和41.0%。添加生物碳还可以提高制氢过程中VFA的产生和甲烷生产中VFA的降解。 (C)2016 Elsevier Ltd.保留所有权利。

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