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利用甘蔗糖蜜在 AFBR 中生产生物氢气。

Biohydrogen production in an AFBR using sugarcane molasses.

机构信息

Technology Center - Federal University of Alagoas. Av. Lourival Melo Mota, s/n Cidade Universitária, Maceió/AL, CEP 57072-900, Brazil.

出版信息

Bioprocess Biosyst Eng. 2021 Feb;44(2):307-316. doi: 10.1007/s00449-020-02443-0. Epub 2020 Sep 26.

Abstract

This study evaluated an anaerobic fluidized bed reactor to produce hydrogen from sugarcane molasses of 25 g-COD L. The reactor of 1.2 L working volume contained shredded tires as support material. The inoculum was sludge obtained in a UASB reactor of a sewage treatment plant. The AFBR was operated at hydraulic retention times of 12, 6, 4 and 3 h. The maximum hydrogen production rate (1.44 L-H h L) and the highest hydrogen yield (3.07 mol-H mol-glucose) occurred at HRT of 4 and 6 h, respectively. The highest COD removal (23.3 ± 8.5%) was achieved at HRT of 12 h, while the HRT of 6 h presented the maximum carbohydrate conversion of 70.1 ± 2.2%. Ethanol (44-67%) and acetic acid (18-38%) were the main metabolites produced, emphasizing a predominance of ethanol-type fermentation pathway in the process. The PCR-DGGE analysis revealed that the bacterial community presented a maximum similarity of 88% between HRT of 4 and 3 h, indicating that the microbial dynamic altered as the organic load has increased. The highest Shannon-Winner index of 2.77 was obtained at HRT of 6 h, inferring that higher microbial diversity favored hydrogen production.

摘要

本研究评估了一种厌氧流化床反应器,以从 25 g-COD L 的甘蔗废糖蜜中生产氢气。1.2 L 工作体积的反应器包含撕碎的轮胎作为支撑材料。接种物是从污水处理厂 UASB 反应器中获得的污泥。AFBR 在水力停留时间为 12、6、4 和 3 h 下运行。在 HRT 为 4 和 6 h 时,最大产氢率(1.44 L-H h L)和最高产氢量(3.07 mol-H mol-葡萄糖)分别达到。在 HRT 为 12 h 时,COD 去除率(23.3 ± 8.5%)最高,而在 HRT 为 6 h 时,碳水化合物转化率最高,为 70.1 ± 2.2%。产生的主要代谢物为乙醇(44-67%)和乙酸(18-38%),强调了该过程中乙醇型发酵途径的优势。PCR-DGGE 分析表明,在 HRT 为 4 和 3 h 之间,细菌群落的最大相似度为 88%,这表明随着有机负荷的增加,微生物动态发生了变化。在 HRT 为 6 h 时,Shannon-Winner 指数最高,为 2.77,这表明更高的微生物多样性有利于氢气的生产。

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