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Semi-aerobic fermentation as a novel pre-treatment to obtain VFA and increase methane yield from primary sludge

机译:半好氧发酵作为获得VFA和增加初级污泥甲烷产率的新型预处理

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摘要

There is a growing trend to consider organic wastes as potential sources of renewable energy and value-add products. Fermentation products have emerged as attractive value-add option due to relative easy production and broad application range. However, pre-fermentation and extraction of soluble products may impact down-stream treatment processes, particularly energy recovery by anaerobic digestion. This paper investigates primary sludge pre-fermentation at different temperatures (20, 37, 55, and 70°C), treatment times (12, 24, 48, and 72h), and oxygen availability (semi-aerobic, anaerobic); and its impact on anaerobic digestion. Pre-fermentation at 20 and 37°C succeeded for VFA production with acetate and propionate being major products. Pre-fermentation at 37, 55, and 70°C resulted in higher solubilisation yield but it reduced sludge methane potential by 20%. Under semi-aerobic conditions, pre-fermentation allowed both VFA recovery (43gCODkgVS) and improved methane potential. The latter phenomenon was linked to fungi that colonised the sludge top layer during pre-fermentation.
机译:越来越多的趋势将有机废物视为可再生能源和增值产品的潜在来源。由于相对容易生产和广泛的应用范围,发酵产品已成为有吸引力的增值选择。但是,可发酵产物的预发酵和提取可能会影响下游处理过程,特别是通过厌氧消化回收能量。本文研究了在不同温度(20、37、55和70°C),处理时间(12、24、48和72h)和氧气利用率(半好氧,厌氧)下的初次污泥发酵。及其对厌氧消化的影响。 VFA生产成功于20和37°C进行预发酵,乙酸和丙酸酯是主要产品。在37、55和70°C的温度下进行预发酵可获得更高的增溶收率,但可将污泥甲烷潜力降低20%。在半有氧条件下,预发酵既可以回收VFA(43gCODkgVS),又可以提高甲烷潜力。后一种现象与真菌在预发酵过程中定殖在污泥顶层有关。

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