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Simultaneous Saccharification and Fermentation of Rice Straw Pretreated by a Sequence of Dilute Acid and Dilute Alkali at High Dry Matter Content

机译:干物质含量高的稀酸和稀碱序列预处理的稻草同时糖化发酵

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In lignocellulosic materials, the presence of lignin and hemicellulose makes the access of enzymes to cellulose difficult, thus reducing the efficiency of the hydrolysis. To improve the substrate hydrolysis for ethanol production, and to decrease the ethanol cost, rice straw was pretreated by a sequence of dilute acid and dilute alkali to remove lignin and hemicellulose, and then the production of bio-ethanol from the pretreated rice straw using simultaneous saccharification and fermentation at high dry content was investigated. After the complex pretreatment, the cellulose content in rice straw increased from 41.5 to 88.5%. Complex method and dilute acid pretreatment of rice straw result in glucose concentrations of 101.7 and 50.2 g/L, respectively. As a result, ethanol concentration of 58.7 g/L was obtained by simultaneous saccharification and fermentation of rice straw pretreated using a sequence of dilute acid and dilute alkali at a substrate concentration of 160 g/L; the ethanol yield was 73.4% based on the glucose content in the raw material. A biorefinery combining a sequence of dilute acid and dilute alkali pretreatment with commercial ethanol instant active dry yeast (S. cerevisiae) in SSF could achieve 175 g EtOH/kg untreated rice straw.
机译:在木质纤维素材料中,木质素和半纤维素的存在使得酶难以进入纤维素,从而降低了水解效率。为了改善乙醇生产的底物水解并降低乙醇成本,将稻草用一系列稀酸和稀碱进行预处理,以去除木质素和半纤维素,然后从预处理的稻草中同时生产生物乙醇。研究了高干含量下的糖化和发酵。经过复杂的预处理后,稻草中的纤维素含量从41.5增加到88.5%。稻草的复杂方法和稀酸预处理分别导致葡萄糖浓度为101.7和50.2 g / L。结果,通过同时用一系列稀酸和稀碱预处理的稻草进行糖化和发酵,乙醇浓度为58.7 g / L,底物浓度为160 g / L;基于原料中的葡萄糖含量,乙醇产率为73.4%。在SSF中,将一系列稀酸和稀碱预处理与商品乙醇速溶活性干酵母(S. cerevisiae)结合起来的生物精炼厂可以达到175 g EtOH / kg未经处理的稻草。

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