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在低初始pH值下对各种预处理和水解底物进行乙醇发酵。

Ethanol fermentation of various pretreated and hydrolyzed substrates at low initial pH.

作者信息

Kádár Zsófia, Maltha San Feng, Szengyel Zsolt, Réczey Kati, de Laat Wim

机构信息

Department of Agricultural Chemical Technology, Budapest University of Technology and Economics, Szent Gellért tér 4, H-1521, Budapest, Hungary.

出版信息

Appl Biochem Biotechnol. 2007 Apr;137-140(1-12):847-58. doi: 10.1007/s12010-007-9102-y.

Abstract

Lignocellulosic materials represent an abundant feedstock for bioethanol production. Because of their complex structure pretreatment is necessary to make it accessible for enzymatic attack. Steam pretreatment with or without acid catalysts seems to be one of the most promising techniques, which has already been applied for large variety of lignocellulosics in order to improve enzymatic digestibility. During this process a range of toxic compounds (lignin and sugar degradation products) are formed which inhibit ethanol fermentation. In this study, the toxicity of hemicellulose hydrolysates obtained in the steam pretreatment of spruce, willow, and corn stover were investigated in ethanol fermentation tests using a yeast strain, which has been previously reported to have a resistance to inhibitory compounds generated during steam pretreatment. To overcome bacterial contamination, fermentations were carried out at low initial pH. The fermentability of hemicellulose hydrolysates of pretreated lignocellulosic substrates at low pH gave promising results with the economically profitable final 5 vol% ethanol concentration corresponding to 85% of theoretical. Adaptation experiments have shown that inhibitor tolerance of yeast strain can be improved by subsequent transfer of the yeast to inhibitory medium.

摘要

木质纤维素材料是生物乙醇生产的丰富原料。由于其结构复杂,需要进行预处理才能使其易于受到酶的攻击。有或没有酸催化剂的蒸汽预处理似乎是最有前途的技术之一,该技术已被应用于多种木质纤维素,以提高酶解消化率。在此过程中会形成一系列有毒化合物(木质素和糖降解产物),这些化合物会抑制乙醇发酵。在本研究中,使用一种先前报道对蒸汽预处理过程中产生的抑制性化合物具有抗性的酵母菌株,通过乙醇发酵试验研究了云杉、柳树和玉米秸秆蒸汽预处理得到的半纤维素水解产物的毒性。为了克服细菌污染,发酵在低初始pH值下进行。预处理木质纤维素底物的半纤维素水解产物在低pH值下的发酵性能取得了令人满意的结果,最终乙醇浓度达到5体积%,具有经济效益,相当于理论值的85%。适应性实验表明,通过将酵母随后转移到抑制性培养基中,可以提高酵母菌株对抑制剂的耐受性。

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