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Microbial community composition and reactor performance during hydrogen production in a UASB reactor fed with raw cheese whey inoculated with compost

机译:用堆肥接种原始干酪乳清的UASB反应器中制氢过程中的微生物群落组成和反应器性能。

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This study investigated the microbial community developed in a UASB reactor for hydrogen production and correlated it to reactor performance. The reactor was inoculated with kitchen waste compost and fed with raw cheese whey at two organic loading rates, 20 gCOD/Ld and 30 gCOD/Ld. Hydrogen production was very variable, using an OLR of 30 gCOD/Ld averaged 1.0 LH _2/Ld with no methane produced under these conditions. The hydrogen yield was also very variable and far from the theoretical. This low yield could be explained by selection of a mixed fermentative population with presence of hydrogen producing organisms (Clostridium, Ruminococcus and Enterobacter) and other non-hydrogen producing fermenters (Lactobacillus, Dialister and Prevotella). The molecular analysis of the raw cheese whey used for feeding revealed the presence of three predominant organisms that are affiliated with the genera Buttiauxella (a low-yield hydrogen producer) and Streptococcus (a lactic acid-producing fermenter). Although these organisms did not persist in the reactor, the continuous addition of these fermenters could decrease the reactor's hydrogen yield.
机译:这项研究调查了在UASB反应器中开发的用于产生氢气的微生物群落,并将其与反应器性能相关联。将反应堆中的厨房垃圾堆肥接种,并以两种有机物上料量(20 gCOD / Ld和30 gCOD / Ld)进料生干酪乳清。氢气的产量变化很大,在这些条件下,使用30 gCOD / Ld的OLR平均为1.0 LH _2 / Ld,而没有甲烷产生。氢气的产率也变化很大,与理论值相去甚远。如此低的产量可以通过选择存在产氢生物体(梭状芽孢杆菌,鲁米诺球菌和肠杆菌)和其他非产氢发酵罐(乳酸杆菌,迪亚斯特氏菌和普氏杆菌)的混合发酵种群来解释。对用于喂养的原始干酪乳清的分子分析显示,存在三种主要的生物,它们与Buttiauxella属(一种低产氢量的生产者)和Streptococcus(一种产乳酸的发酵罐)有关。尽管这些生物并不存在于反应器中,但连续添加这些发酵​​罐会降低反应器的氢气产量。

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