Evaluation of bio-hydrogen production using rice straw hydrolysate extracted by acid and alkali hydrolysis

被引:21
|
作者
Kim, Do-Hyung [1 ,4 ]
Jo, In-Seung [1 ,4 ]
Kang, Beom-Jung [1 ,4 ]
Lee, Byung-Don [2 ]
Kumar, Sunil [3 ]
Kim, Sang-Hyoun [4 ]
Yoon, Jeong-Jun [1 ,5 ]
机构
[1] Korea Inst Ind Technol KITECH, Green & Sustainable Mat R&D Dept, Cheonan 31056, South Korea
[2] JEONJIN ENTECH LTD, Inst Chem & Environm Proc, Busan 46729, South Korea
[3] Natl Environm Engn Res Inst, Technol Dev Ctr, CSIR, NEERI, Nagpur, India
[4] Yonsei Univ, Sch Civil & Environm Engn, Seoul 03722, South Korea
[5] Korea Inst Ind Technol KITECH, Green & sustainable Mat R&D Dept, Cheonan Si 31056, South Korea
关键词
Anaerobic fermentation; Bio-hydrogen; Dark fermentation; Hydrolysis; Rice straw; BIOHYDROGEN PRODUCTION; XYLITOL PRODUCTION; METHANE PRODUCTION; ORGANIC FRACTION; FERMENTATION; PRETREATMENT; CLOSTRIDIUM; BIOMASS; FEASIBILITY; INHIBITION;
D O I
10.1016/j.ijhydene.2021.12.177
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
This study was conducted to investigate the properties of hydrolysates obtained from acid and alkali hydrolysis and to evaluate the feasibility of employing them for bio-hydrogen production. High sugar concentrations of 16.8 g/L and 13.3 g/L were present in 0.5% and 1.0% H2SO4 hydrolysates, respectively. However, H2SO4 hydrolysis resulted in large amounts of short-chain fatty acids (SCFAs) and furan derivatives, which were removed by detoxification. In bio-hydrogen production, 1.0% H2SO4 hydrolysate showed a 55.6 mL of highest hydrogen production and 1.14 mol-H2/mol-hexose equivalentadded of hydrogen yield. In control and 1.0% NaOH hydrolysate, 29.7 mL and 36.9 mL of hydrogen were pro-duced, respectively. Interestingly, relatively high acetate and butyrate production resulted in lactate reduction. Also, NH4OH hydrolysate produced less than 10 mL of hydrogen. Thus, these results indicate that hydrogen production and metabolite distribution can vary depending on the sugars and by-product composition in the hydrolysate. (c) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:37385 / 37393
页数:9
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