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Development of a steam or microwave-assisted sequential salt-alkali pretreatment for lignocellulosic waste: Effect on delignification and enzymatic hydrolysis

机译:开发用于木质纤维素废料的蒸汽或微波辅助连续盐碱预处理:对脱木素和酶水解的影响

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This study compares two different sequential pretreatments for sugarcane leaf waste (SLW): steam salt alkali (SSA) and microwave salt-alkali (MSA). The two pretreatment types were modelled, optimized and validated with R-2 > 0.97. Reducing sugar yields of 1.21 g/g were obtained with optimized SSA pretreatment using 1.73 M ZnCl2, 1.36 M NaOH and 9.69% solid loading, and 1.17 g/g with optimized MSA pretreatment using 1.67 M ZnCl2, 1.52 M NaOH at 400 W for 10 min. A lower pretreatment time (10 min) was required for the MSA model (83% lower). The structure of pretreated SLW was assessed using scanning electron microscopy (SEM) and Fourier Transform Infrared analysis (FTIR). The optimized SSA and MSA models showed lignin removal of 80.5 and 73% respectively. The MSA pretreatment was further examined on sorghum leaves and Napier grass and showed yield improvements of 1.9- and 2.8-fold compared to recent reports. The developed pretreatment methods demonstrated high efficiency at enhancing enzymatic hydrolysis on various lignocellulosic substrates. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项研究比较了甘蔗叶废料(SLW)的两种不同的顺序预处理:蒸汽盐碱(SSA)和微波盐碱(MSA)。对两种预处理类型进行了建模,优化和验证,R-2> 0.97。使用1.73 M ZnCl2、1.36 M NaOH和9.69%固体载量进行优化的SSA预处理可得到1.21 g / g的还原糖产量,以及使用1.67 M ZnCl2、1.52 M的NaOH在400 W下进行10次优化的MSA预处理可获得的糖减少量为1.17 g / g分钟MSA模型需要更短的预处理时间(10分钟)(降低83%)。预处理的SLW的结构使用扫描电子显微镜(SEM)和傅立叶变换红外分析(FTIR)进行评估。优化的SSA和MSA模型显示木质素去除率分别为80.5和73%。 MSA预处理在高粱叶和纳皮尔草上进行了进一步检查,与最近的报道相比,单产提高了1.9倍和2.8倍。发达的预处理方法显示出在各种木质纤维素底物上增强酶促水解的高效率。 (C)2017 Elsevier Ltd.保留所有权利。

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