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Enhancement of acetate productivity in a thermophilic (55 A degrees C) hollow-fiber membrane biofilm reactor with mixed culture syngas (H-2/CO2) fermentation

机译:增强嗜热(55℃)中空纤维膜生物膜反应器中的醋酸盐生产率,用混合培养合成气(H-2 / CO2)发酵

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摘要

Conversion of organic wastes to syngas is an attractive way to utilize wastes. The produced syngas can be further used to produce a variety of chemicals. In this study, a hollow-fiber membrane biofilm reactor with mix cultures was operated at 55 A degrees C to convert syngas (H-2/CO2) into acetate. A high concentration of acetate (42.4 g/L) was reached in batch experiment while a maximum acetate production rate of 10.5 g/L/day was achieved in the continuous-flow mode at hydraulic retention time (HRT) of 1 day. Acetate was the main product in both batch and continuous-flow experiments. n-Butyrate was the other byproduct in the reactor. Acetate accounted for more than 98.5 and 99.1% of total volatile fatty acids in batch and continuous modes, respectively. Illumina Miseq high-throughput sequencing results showed that microorganisms were highly purified and enriched in the reactor. The main genus was Thermoanaerobacterium (66% of relative abundance), which was usually considered as H-2 producer in the literature, however, likely played a role as a H-2 consumer in this study. This study provides a new method to generate the high producing rate and purity of acetate from syngas.
机译:有机废物的转换为合成气是一种利用废物的有吸引力的方式。所生产的合成气可以进一步用于产生各种化学品。在该研究中,在55℃下操作具有混合培养物的空心纤维膜生物膜反应器,以将合成气(H-2 / CO2)转化为乙酸盐。在分批实验中达到高浓度的乙酸盐(42.4g / L),而在液压保留时间(HRT)的连续流动模式下,在1天的连续流动模式下实现了10.5g / L /天的最大乙酸盐生产速率。醋酸盐是两批和连续流动实验中的主要产物。正丁酸丁酸酯是反应器中的其他副产品。醋酸盐分批和连续模式分别占总挥发性脂肪酸的98.5和99.1%。 Illumina miseq高通量测序结果表明,微生物高度纯化并富含反应器。主要属的是热对抗杆菌(66%的相对丰度),其通常被认为是文献中的H-2生产者,但可能在这项研究中作为H-2消费者发挥作用。该研究提供了一种新方法,从合成气产生醋酸盐的高产生速率和纯度。

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