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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Hydrothermal processing and enzymatic hydrolysis of sorghum bagasse for fermentable carbohydrates production
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Hydrothermal processing and enzymatic hydrolysis of sorghum bagasse for fermentable carbohydrates production

机译:高粱渣的水热加工和酶促水解以生产可发酵的碳水化合物

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摘要

Untreated and hydrothermally treated sorghum bagasse (SB) was hydrolyzed to simple sugars by the synergistic action of cellulases and hemicellulases produced by the fungi Fusarium oxysporum and Neurospora crassa. Synergism between the two lignocellulolytic systems was maximized with the application of higher fraction of N. crassa enzymes. Hydrothermolysis of SB was studied at a wide range of treatment times and temperatures. At intense pretreatment conditions (210 degrees C for 20 min; logR(0) = 4.54), the residual hemicellulose percentage was 17.45%, while formation of inhibitory products, 5-hydromethyl-furfural (HMF), furfural, acetic and formic acid, (0.21, 0.51, 3.36 and 1.80 g/l, respectively) remained in acceptable levels. Maximum conversion of cellulose and total polysaccharides of the untreated SB were 23.18% and 18.79%, respectively. Combining hydrothermal treatment and enzymatic hydrolysis of released oligosaccharides and insoluble solids resulted in improvement of cellulose (approximately 15% increase) and total polysaccharides (two fold) hydrolysis compared to that of untreated SB.
机译:未经处理和经水热处理的高粱渣(SB)通过真菌尖孢镰刀菌(Fusarium oxysporum)和神经孢霉(Neurospora crassa)产生的纤维素酶和半纤维素酶的协同作用被水解成单糖。通过应用较高含量的克雷萨氏菌酶,两个木质纤维素分解系统之间的协同作用将最大化。在广泛的处理时间和温度下研究了SB的水热解。在强烈的预处理条件下(210摄氏度,持续20分钟; logR(0)= 4.54),残留的半纤维素百分比为17.45%,同时形成了抑制性产物5-氢甲基糠醛(HMF),糠醛,乙酸和甲酸, (分别为0.21、0.51、3.36和1.80 g / l)保持在可接受的水平。未经处理的SB的纤维素和总多糖的最大转化率分别为23.18%和18.79%。与未处理的SB相比,将水热处理和释放的寡糖和不溶性固体的酶促水解相结合,可改善纤维素的水解度(增加约15%)和总多糖的水解度(两倍)。

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