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Microwave-assisted inorganic salt pretreatment of sugarcane leaf waste: Effect on physiochemical structure and enzymatic saccharification

机译:微波辅助无机盐预处理甘蔗叶废料:对物理化学结构和酶糖化的影响

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This paper presents a method to pretreat sugarcane leaf waste using microwave-assisted (MA) inorganic salt to enhance enzymatic saccharification. The effects of process parameters of salt concentration, microwave power intensity and pretreatment time on reducing sugar yield from sugarcane leaf waste were investigated. Pretreatment models based on MA-NaCl, MA-ZnCl2 and MA-FeCl3 were developed with high coefficients of determination (R-2 > 0.8) and optimized. Maximum reducing sugar yield of 0.406 g/g was obtained with 2 M FeCl3 at 700W for 3.5 min. Scanning electron microscopy (SEM), Fourier Transform Infrared analysis (FTIR) and X-ray diffraction (XRD) showed major changes in lignocellulosic structure after MA-FeCl3 pretreatment with 71.5% hemicellulose solubilization. This regime was further assessed on sorghum leaves and Napier grass under optimal MA-FeCl3 conditions. A 2-fold and 3.1-fold increase in sugar yield respectively were observed compared to previous reports. This pretreatment was highly effective for enhancing enzymatic saccharification of lignocellulosic biomass. (C) 2017 Published by Elsevier Ltd.
机译:本文介绍了使用微波辅助(MA)无机盐预测甘蔗叶废料的方法,以增强酶糖化。研究了盐浓度,微波功率强度和预处理时间对降低甘蔗叶废弃物降低糖产量的影响。基于MA-NaCl,MA-ZnCl2和MA-FECL3的预处理模型具有高系数(R-2> 0.8)并优化。在700W的2mW中获得最大降低的糖产率为0.406g / g,以700w为3.5分钟。扫描电子显微镜(SEM),傅里叶变换红外分析(FTIR)和X射线衍射(XRD)显示了在MA-FECL3预处理中的木质纤维素结构的主要变化,具有71.5%的半纤维素溶解。在最佳MA-FECL3条件下,在高粱叶子和纳皮尔草上进一步评估了该制度。与先前的报告相比,分别观察到2倍和3.1倍的糖屈服的增加。这种预处理对于增强木质纤维素生物质的酶促糖化非常有效。 (c)2017年由elestvier有限公司出版

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