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采用顺序细菌水解和暗发酵策略的纤维素制氢

Cellulosic hydrogen production with a sequencing bacterial hydrolysis and dark fermentation strategy.

作者信息

Lo Yung-Chung, Bai Ming-Der, Chen Wen-Ming, Chang Jo-Shu

机构信息

Department of Chemical Engineering, National Cheng Kung University, Tainan 701, Taiwan.

出版信息

Bioresour Technol. 2008 Nov;99(17):8299-303. doi: 10.1016/j.biortech.2008.03.004. Epub 2008 Apr 15.

Abstract

In this study, cellulose hydrolysis activity of two mixed bacterial consortia (NS and QS) was investigated. Combination of NS culture and BHM medium exhibited better hydrolytic activity under the optimal condition of 35 degrees C, initial pH 7.0, and 100rpm agitation. The NS culture could hydrolyze carboxymethyl cellulose (CMC), rice husk, bagasse and filter paper, among which CMC gave the best hydrolysis performance. The CMC hydrolysis efficiency increased with increasing CMC concentration from 5 to 50g/l. With a CMC concentration of 10g/l, the total reducing sugar (RS) production and the RS producing rate reached 5531.0mg/l and 92.9mg/l/h, respectively. Furthermore, seven H2-producing bacterial isolates (mainly Clostridium species) were used to convert the cellulose hydrolysate into H2 energy. With an initial RS concentration of 0.8g/l, the H2 production and yield was approximately 23.8ml/l and 1.21mmol H2/g RS (0.097mmol H2/g cellulose), respectively.

摘要

在本研究中,对两个混合细菌群落(NS和QS)的纤维素水解活性进行了研究。在35℃、初始pH 7.0和100rpm搅拌的最佳条件下,NS培养物与BHM培养基的组合表现出更好的水解活性。NS培养物能够水解羧甲基纤维素(CMC)、稻壳、甘蔗渣和滤纸,其中CMC的水解性能最佳。CMC水解效率随着CMC浓度从5g/l增加到50g/l而提高。当CMC浓度为10g/l时,总还原糖(RS)产量和RS产率分别达到5531.0mg/l和92.9mg/l/h。此外,使用七株产氢细菌分离株(主要是梭菌属)将纤维素水解产物转化为氢能。当初始RS浓度为0.8g/l时,氢气产量和产率分别约为23.8ml/l和1.21mmol H2/g RS(0.097mmol H2/g纤维素)。

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