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Anaerobic granular sludge as a biocatalyst for 1,3-propanediol production from glycerol in continuous bioreactors

机译:厌氧颗粒污泥作为连续生物反应器中甘油生产1,3-丙二醇的生物催化剂

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摘要

1,3-propanediol (1,3-PDO) was produced from glycerol in three parallel Expanded Granular Sludge Blanket (EGSB) reactors inoculated with granular sludge (control reactor-R1), heat-treated granular sludge (R2) and disrupted granular sludge (R3) at Hydraulic Retention Times (HRT) between 3 and 24 h. Maximum 1,3-PDO yield (0.52 mol mol-1) and productivity (57 g L-1 d-1) were achieved in R1 at HRTs of 12 h and 3 h, respectively. DGGE profiling of PCR-amplified 16S rRNA gene fragments showed that variations in the HRT had a critical impact in the dominant community of microorganisms. However, no appreciable differences in the bacterial population were observed between R2 and R3 at low HRTs. Production of H2 was observed at the beginning of the operation, but no methane production was observed. This study proves the feasibility of 1,3-PDO production in EGSB reactors and represents a novel strategy to valorise glycerol generated in the biodiesel industry.
机译:在三个平行的膨胀式颗粒污泥毯(EGSB)反应器中,用甘油生产了1,3-丙二醇(1,3-PDO),该反应器接种了颗粒污泥(控制反应器-R1),经过热处理的颗粒污泥(R2)和破碎的颗粒污泥(R3)在3至24小时之间的水力停留时间(HRT)。在H1分别为12 h和3 h的R1中,实现了1,3-PDO的最大产量(0.52 mol mol-1)和生产率(57 g L-1 d-1)。 DGGE对PCR扩增的16S rRNA基因片段的分析表明,HRT的变异对微生物的优势群落具有至关重要的影响。但是,在低HRT时,R2和R3之间没有观察到细菌种群的明显差异。在操作开始时观察到氢气的产生,但是没有观察到甲烷的产生。这项研究证明了在EGSB反应器中生产1,3-PDO的可行性,并代表了一种新的策略来使生物柴油工业中产生的甘油增值。

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