首页> 外文期刊>Cellulose Chemistry and Technology: International Journal for Physics, Chemistry and Technology of Cellulose and Lignin >EFFECT OF DIFFERENT PRETREATMENT METHODS OF CORNCOB ON BIOETHANOL PRODUCTION AND ENZYME RECOVERY
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EFFECT OF DIFFERENT PRETREATMENT METHODS OF CORNCOB ON BIOETHANOL PRODUCTION AND ENZYME RECOVERY

机译:玉米芯的不同预处理方法对生物乙醇生产和酶回收的影响

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摘要

Efficient pretreatment and reuse of cellulose are effective methods to promote the cellulosic bioethanol commercialization. Corncob was used as substrate in this study, and the effects of pretreatment methods, including dilute acid, sodium hydroxide, aqueous ammonia soaking and acid-base coupling (dilute sulfuric acid-aqueous ammonia) on glucose and ethanol concentration were analyzed during pre-hydrolysis and the simultaneous saccharification and fermentation (SSF) process. The influence of each pretreatment on the adsorption and desorption of cellulase and on the recycling effect of cellulase after re-adsorption by the fresh substrate were also discussed. The results showed that acid-base coupling pretreatment was much better than a single acid or alkali pretreatment, i.e. the cellulose content of the corncob substrate reached 73.84% after pretreatment; the desorption percent and recycling percent of cellulase after 96 h of SSF and re-adsorption in the first round was 57.7% and 62.4% respectively; ethanol concentration amounted to 62.0% of the first time in the second round of SSF after the enzyme re-adsorption.
机译:纤维素的有效预处理和再利用是促进纤维素生物乙醇商业化的有效方法。本研究以玉米芯为底物,分析了预水解过程中稀酸,氢氧化钠,氨水浸泡和酸碱耦合(稀硫酸-氨水)等预处理方法对葡萄糖和乙醇浓度的影响。以及同时进行的糖化和发酵(SSF)过程。还讨论了每种预处理对纤维素酶吸附和解吸的影响以及对新鲜底物重新吸附后纤维素酶回收利用效果的影响。结果表明,酸碱偶联预处理优于单一酸或碱预处理,即预处理后玉米芯底物的纤维素含量达到73.84%。第一轮SSF和再吸附96小时后,纤维素酶的解吸率和再循环率分别为57.7%和62.4%。酶重新吸附后,第二轮SSF中乙醇浓度达第一次的62.0%。

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