首页> 美国卫生研究院文献>Molecules >Acid Assisted Organosolv Delignification of Beechwood and Pulp Conversion towards High Concentrated Cellulosic Ethanol via High Gravity Enzymatic Hydrolysis and Fermentation
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Acid Assisted Organosolv Delignification of Beechwood and Pulp Conversion towards High Concentrated Cellulosic Ethanol via High Gravity Enzymatic Hydrolysis and Fermentation

机译:酸辅助山毛榉木的有机溶剂脱木质素和纸浆通过高重力酶水解和发酵转化为高浓度纤维素乙醇

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摘要

Background: Future biorefineries will focus on converting low value waste streams to chemical products that are derived from petroleum or refined sugars. Feedstock pretreatment in a simple, cost effective, agnostic manner is a major challenge. Methods: In this work, beechwood sawdust was delignified via an organosolv process, assisted by homogeneous inorganic acid catalysis. Mixtures of water and several organic solvents were evaluated for their performance. Specifically, ethanol (EtOH), acetone (AC), and methyl- isobutyl- ketone (MIBK) were tested with or without the use of homogeneous acid catalysis employing sulfuric, phosphoric, and oxalic acids under relatively mild temperature of 175 °C for one hour. Results: Delignification degrees (DD) higher than 90% were achieved, where both AC and EtOH proved to be suitable solvents for this process. Both oxalic and especially phosphoric acid proved to be good alternative catalysts for replacing sulfuric acid. High gravity simultaneous saccharification and fermentation with an enzyme loading of 8.4 mg/gsolids at 20 wt.% initial solids content reached an ethanol yield of 8.0 w/v%. Conclusions: Efficient delignification combining common volatile solvents and mild acid catalysis allowed for the production of ethanol at high concentration in an efficient manner.
机译:背景:未来的生物精炼厂将专注于将低价值废物流转化为源自石油或精制糖的化学产品。以简单,经济高效,不可知论的方式进行原料预处理是一项重大挑战。方法:在这项工作中,通过均质无机酸催化,通过有机溶剂法对山毛榉木屑进行脱木素。评价了水和几种有机溶剂的混合物的性能。具体而言,在175℃相对温和的温度下,使用或不使用使用硫酸,磷酸和草酸的均相酸催化,对乙醇(EtOH),丙酮(AC)和甲基异丁酮(MIBK)进行了测试小时。结果:脱木素度(DD)高于90%,其中AC和EtOH均被证明是该工艺的合适溶剂。草酸,尤其是磷酸都被证明是替代硫酸的良好替代催化剂。高重力同时糖化和发酵,初始固体含量为20 wt。%时,酶负载量为8.4 mg / g固体,乙醇产量为8.0 w / v%。结论:将常见的挥发性溶剂与温和的酸催化相结合的有效脱木素作用可以有效地高浓度生产乙醇。

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