首页> 外文期刊>International journal of hydrogen energy >Continuous thermophilic hydrogen production from cheese whey powder solution in an anaerobic fluidized bed reactor: Effect of hydraulic retention time and initial substrate concentration
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Continuous thermophilic hydrogen production from cheese whey powder solution in an anaerobic fluidized bed reactor: Effect of hydraulic retention time and initial substrate concentration

机译:在厌氧流化床反应器中从干酪乳清粉溶液连续生产高温氢:水力停留时间和初始底物浓度的影响

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The focus of this study is the use of an anaerobic fluidized bed reactor (AFBR) to continuously produce hydrogen under thermophilic conditions (55 degrees C) using a range of cheese whey (CW) concentrations and hydraulic retention times (HRTs). The following combinations of tests parameters were evaluated: a fixed concentration of 4900 +/- 200 mg lactose L-1 and HRTs of 8, 6, 4, 2,1 and 0.5 h in AFBRi and a fixed HRT of 6 h and influent CW concentrations of 2800 +/- 100, 4900 +/- 200, 6800 +/- 300, 9800 +/- 300 and 14,600 +/- 300 mg lactose L-1 in AFBR(2). For AFBR(1), the maximum hydrogen production rate (HPR) obtained was 4.1 +/- 0.2 L H-2 h(-1) L-1 in the HRT of 0.5 h, and maximum hydrogen yield (HY) of 3.67 0.59 mol H-2 mol lactose(-1) in the HRT of 4 h. For AFBR(2), the maximum HPR was 0.85 0.12 L H-2 h(-1) L-1 at a concentration of 6800 +/- 300 mg lactose L-1, and the maximum HY was 2.64 mol H-2 mol lactose(-1) at a concentration of 2800 +/- 100 mg lactose L-1. In both reactors, the main metabolic products were acetic acid and butyric acid. Based on 16S rRNA clone analysis of the bacterial community, the identified sequences were affiliated with relative abundances of 48.42% (Thermoanaerobacterium and Thermohydrogenium kirishiense) and 75.53% (Thermoanaerobacterium thermosaccharolyticuum and T. kirishiense) in AFER(1) and AFBR(2), respectively. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:这项研究的重点是使用厌氧流化床反应器(AFBR)在高温条件下(55摄氏度)使用一系列干酪乳清(CW)浓度和水力停留时间(HRT)连续生产氢。评估了以下测试参数组合:AFBRi中4900 +/- 200 mg乳糖L-1的固定浓度和8、6、4、2、1和0.5小时的HRT,6小时的固定HRT和进水CW AFBR(2)中乳糖L-1的浓度为2800 +/- 100、4900 +/- 200、6800 +/- 300、9800 +/- 300和14,600 +/- 300 mg。对于AFBR(1),在0.5 h的HRT中获得的最大氢生产率(HPR)为4.1 +/- 0.2 L H-2 h(-1)L-1,最大氢产率(HY)为3.67 0.59 mol H-2 mol乳糖(-1)在4 h的HRT中。对于AFBR(2),最大HPR为0.85 0.12 L H-2 h(-1)L-1,浓度为6800 +/- 300 mg乳糖L-1,最大HY为2.64 mol H-2 mol乳糖(-1)的浓度为2800 +/- 100毫克乳糖L-1。在两个反应器中,主要的代谢产物是乙酸和丁酸。根据细菌群落的16S rRNA克隆分析,在AFER(1)和AFBR(2)中,鉴定出的序列与相对丰度分别为48.42%(热厌氧杆菌和kirishiense嗜热厌氧杆菌和热解热厌氧杆菌和T. kirishiense)。分别。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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