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Acidogenic fermentation of food waste for volatile fatty acid production with co-generation of biohydrogen

机译:食品垃圾的产酸发酵,用于产生挥发性脂肪酸并与生物氢联产

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Fermentation experiments were designed to elucidate the functional role of the redox microenvironment on volatile fatty acid (VFA, short chain carboxylic acid) production and co-generation of biohydrogen (H-2). Higher VFA productivity was observed at pH 10 operation (6.3 g/l) followed by pH 9, pH 6, pH 5, pH 7, pH 8 and pH 11 (3.5 g/l). High degree of acidification, good system buffering capacity along with co-generation of higher H-2 production from food waste was also noticed at alkaline condition. Experiments illustrated the role of initial pH on carboxylic acids synthesis. Alkaline redox conditions assist solubilization of carbohydrates, protein and fats and also suppress the growth of methanogens. Among the carboxylic acids, acetate fraction was higher at alkaline condition than corresponding neutral or acidic operations. Integrated process of VFA production from waste with co-generation of H-2 can be considered as a green and sustainable platform for value-addition. (c) 2015 Elsevier Ltd. All rights reserved.
机译:设计发酵实验以阐明氧化还原微环境在挥发性脂肪酸(VFA,短链羧酸)生产和生物氢(H-2)联产方面的功能作用。在pH 10操作(6.3 g / l),然后是pH 9,pH 6,pH 5,pH 7,pH 8和pH 11(3.5 g / l)时,观察到更高的VFA生产率。在碱性条件下,还发现高度酸化,良好的系统缓冲能力以及由食物垃圾产生的更高的H-2联产。实验说明了初始pH对羧酸合成的作用。碱性氧化还原条件有助于碳水化合物,蛋白质和脂肪的溶解,还可以抑制产甲烷菌的生长。在这些羧酸中,碱性条件下的乙酸酯含量高于相应的中性或酸性操作。由废物产生的VFA与H-2的联产相结合的综合过程可被视为绿色和可持续的增值平台。 (c)2015 Elsevier Ltd.保留所有权利。

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