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首页> 外文期刊>Applied Microbiology and Biotechnology >In situ hydrogen utilization for high fraction acetate production in mixed culture hollow-fiber membrane biofilm reactor
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In situ hydrogen utilization for high fraction acetate production in mixed culture hollow-fiber membrane biofilm reactor

机译:在混合培养中空纤维膜生物膜反应器中原位利用氢以高产率生产乙酸盐

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摘要

Syngas fermentation is a promising route for resource recovery. Acetate is an important industrial chemical product and also an attractive precursor for liquid biofuels production. This study demonstrated high fraction acetate production from syngas (H_2 and CO_2) in a hollow-fiber membrane biofilm reactor, in which the hydrogen utilizing efficiency reached 100 % during the operational period. The maximum concentration of acetate in batch mode was 12.5 g/L, while the acetate concentration in continuous mode with a hydraulic retention time of 9 days was 3.6 ± 0.1 g/L. Since butyrate concentration was rather low and below 0.1 g/L, the acetate fraction was higher than 99 % in both batch and continuous modes. Microbial community analysis showed that the biofilm was dominated by Clostridium spp., such as Clostridium ljungdahlii and Clostridium drakei, the percentage of which was 70.5 %. This study demonstrates a potential technology for the in situ utilization of syngas and valuable chemical production.
机译:合成气发酵是资源回收的有希望的途径。乙酸盐是重要的工业化学产品,也是液体生物燃料生产的有吸引力的前体。这项研究表明,在中空纤维膜生物膜反应器中,合成气(H_2和CO_2)可产生高比例的乙酸盐,在运行期间,氢的利用效率达到100%。间歇模式中乙酸盐的最大浓度为12.5 g / L,而水力停留时间为9天的连续模式中乙酸盐的浓度为3.6±0.1 g / L。由于丁酸盐的浓度很低且低于0.1 g / L,因此在分批和连续模式下,乙酸酯的含量均高于99%。微生物群落分析表明,该生物膜主要由梭状芽胞杆菌(Clostridium spp。)所控制,如Ljungdahlii梭菌和德氏梭状芽胞杆菌(Clostridium drakei),其比例为70.5%。这项研究证明了合成气原位利用和有价值的化学生产的潜在技术。

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