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Intensification of delignification and subsequent hydrolysis for the fermentable sugar production from lignocellulosic biomass using ultrasonic irradiation

机译:使用超声辐射的木质纤维素生物量的可发酵糖生产的脱氨酸和随后的水解加强

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The present work deals with intensification of delignification and subsequent enzymatic hydrolysis of sustainable biomass such as groundnut shells, coconut coir and pistachio shells using ultrasound assisted approach so as to develop an economical approach for obtaining bioethanol. Process intensification, in the current context, is referred to as any improvements giving enhanced rates possibly with lower energy and chemical as well as enzyme requirement for delignification and hydrolysis respectively. Conventional processing for both delignification and enzymatic hydrolysis has also been investigated for establishing the degree of intensification. The obtained results for delignification of biomass established that for conventional alkaline treatment, the extent of delignification for the case of groundnut shells, coconut coir and pistachio shells were 41.8, 45.9 and 38% which increased to 71.1, 89.5 and 78.9% respectively giving almost 80-100% increase for the ultrasound assisted approach. Under optimized conditions, the conventional approach resulted in reducing sugar yields as 10.2, 12.1 and 8.1 g/L for groundnut shells, coconut coir and pistachio shells respectively whereas for the case of ultrasound-assisted enzymatic hydrolysis, the obtained yields were 21.3, 23.9 and 18.4 g/L in same order of biomass. The material samples were characterized by several characterization techniques for establishing the morphological changes obtained due to the use of ultrasound which were found to be favorable for enhanced delignification and hydrolysis for the ultrasound assisted approach. Overall, the results of this work establish the process intensification benefits due to the application of ultrasound for different sustainable biomass with mechanistic understanding based on the morphological analyses. (C) 2017 Elsevier B.V. All rights reserved.
机译:本工作涉及使用超声辅助方法的可持续生物量的脱氨酸和随后的酶促水解,如地生壳,椰子益官和开心壳,以开发一种获得生物乙醇的经济方法。在当前背景下,过程强化被称为分别具有较低能量和化学品的增强率的任何改进,以及分别用于去脱烃和水解的酶要求。还研究了用于建立增强程度的脱铜化和酶水解的常规加工。获得的生物量的去烃的结果确定,对于常规碱性治疗,对地生壳,椰子益官和开心壳的脱野的程度为41.8,45.9和38%,其分别增加到71.1,89.5和78.9%超声辅助方法的-100%增加。在优化条件下,常规方法分别导致糖产率降低为10.2,12.1和8.1g / L的基因壳,椰子益核酸和开心壳,而对于超声辅助酶水解的情况,所得产率为21.3,23.9和18.4克/升以相同的生物质顺序。材料样品的特征在于,通过几种表征技术,用于建立由于使用超声波而获得的形态变化,这被发现有利于提高超声辅助方法的脱铬化和水解。总体而言,这项工作的结果建立了由于超声波在不同可持续生物量的应用而基于形态学分析的机械理解,建立了过程强化益处。 (c)2017 Elsevier B.v.保留所有权利。

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