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[通过稀碱预处理油棕残余物用于纤维素乙醇生产]

[Pretreatment of oil palm residues by dilute alkali for cellulosic ethanol production].

作者信息

Zhang Haiyan, Zhou Yujie, Li Jinping, Dai Lingmei, Liu Dehua, Zhang Jian'an, Choo Yuen May, Loh Soh Kheang

机构信息

Institute of Fine Chemical, Taiyuan University of Technology, Taiyuan 030024, Shanxi, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2013 Apr;29(4):490-500.

Abstract

In the study, we used oil palm residues (empty fruit bunch, EFB) as raw material to produce cellulosic ethanol by pretreatment, enzymatic hydrolysis and fermentation. Firstly, the pretreatment of EFB with alkali, alkali/hydrogen peroxide and the effects on the components and enzymatic hydrolysis of cellulose were studied. The results show that dilute alkali was the suitable pretreatment method and the conditions were first to soak the substrate with 1% sodium hydroxide with a solid-liquid ratio of 1:10 at 40 degrees C for 24 h, and then subjected to 121 degrees C for 30 min. Under the conditions, EFB solid recovery was 74.09%, and glucan, xylan and lignin content were 44.08%, 25.74% and 13.89%, respectively. After separated with alkali solution, the pretreated EFB was washed and hydrolyzed for 72 h with 5% substrate concentration and 30 FPU/g dry mass (DM) enzyme loading, and the conversion of glucan and xylan reached 84.44% and 89.28%, respectively. We further investigated the effects of substrate concentration and enzyme loading on enzymatic hydrolysis and ethanol batch simultaneous saccharification and fermentation (SSF). The results show that when enzyme loading was 30 FPU/g DM and substrate concentration was increased from 5% to 25%, ethanol concentration were 9.76 g/L and 35.25 g/L after 72 h fermentation with Saccharomyces cerevisiae (inoculum size 5%, V/V), which was 79.09% and 56.96% of ethanol theory yield.

摘要

在本研究中,我们以油棕残余物(空果串,EFB)为原料,通过预处理、酶水解和发酵来生产纤维素乙醇。首先,研究了用碱、碱/过氧化氢对EFB进行预处理及其对纤维素成分和酶水解的影响。结果表明,稀碱是合适的预处理方法,条件为首先将底物用1%氢氧化钠在固液比1:10、40℃下浸泡24小时,然后在121℃下处理30分钟。在此条件下,EFB固体回收率为74.09%,葡聚糖、木聚糖和木质素含量分别为44.08%、25.74%和13.89%。用碱溶液分离后,对预处理后的EFB进行洗涤,并在底物浓度5%、酶用量30 FPU/g干质量(DM)的条件下酶水解72小时,葡聚糖和木聚糖的转化率分别达到84.44%和89.28%。我们进一步研究了底物浓度和酶用量对酶水解以及乙醇分批同步糖化发酵(SSF)的影响。结果表明,当酶用量为30 FPU/g DM且底物浓度从5%提高到25%时,用酿酒酵母(接种量5%,V/V)发酵72小时后乙醇浓度分别为9.76 g/L和35.25 g/L,分别为乙醇理论产量的79.09%和56.96%。

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