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利用响应面法优化龙舌兰麻蔗渣中木质纤维素化合物的微波辅助乙醇溶剂萃取

Optimization of the Microwave-Assisted Ethanosolv Extraction of Lignocellulosic Compounds from the Bagasse of Agave angustifolia Haw Using the Response Methodology.

机构信息

Centro de Desarrollo de Productos Bióticos-Instituto Politécnico Nacional , Carretera Yautepec-Jojutla Km. 6, Calle CEPROBI No. 8 , Col. San Isidro Yautepec , Morelos , México C.P. 62731.

Centro Interdisciplinario de Investigadores y Estudios sobre Medio Ambiente y Desarrollo-Instituto Politécnico Nacional , Calle 30 de Junio de 1520 s/n, Barrio la Laguna Ticoman C.P. 07340 Del Gustavo A. Madero, Ciudad de México , México.

出版信息

J Agric Food Chem. 2018 Apr 4;66(13):3533-3540. doi: 10.1021/acs.jafc.7b04627. Epub 2018 Mar 23.

Abstract

The main objective of this work was to optimize the process of fractionation of the bagasse of Agave angustifolia Haw, applying organosolv assisted with microwaves. The DCC was used to evaluate the effect of independent variables such as ethanol concentration (40, 50, and 60%) and reaction time (1, 1.5, and 2 h) on yield, cellulose and lignin percentages. Lignocellulosic fractions (F1 and F2) were obtained by means of organosolv assisted with microwave in an open system (atmospheric pressure) and a closed system (controlled pressure). The lignocellulosic fractions were microstructurally characterized. The highest extraction yields (70.39%) were reached in the open system at 50% ethanol for 1.5 h. The highest percentages of LK (5.05%) were obtained in the closed system at 60% ethanol for 2 h. The SEM photomicrograph showed that the microstructure of F1 was retained even after treatment with 60% ethanol for 2 h, and the exposure of the fibrillar part was observed obtaining the disposition of pectin.

摘要

这项工作的主要目的是通过使用微波辅助的有机溶剂法对龙舌兰麻的蔗渣进行分段,以优化其分离过程。DCC 用于评估独立变量(如乙醇浓度(40%、50%和 60%)和反应时间(1 小时、1.5 小时和 2 小时))对产率、纤维素和木质素百分比的影响。通过在开放式系统(常压)和封闭式系统(控制压力)中使用微波辅助的有机溶剂法获得木质纤维素级分(F1 和 F2)。对木质纤维素级分进行微观结构表征。在开放式系统中,50%乙醇反应 1.5 小时,提取率最高(70.39%)。在封闭式系统中,60%乙醇反应 2 小时,LK 百分比最高(5.05%)。SEM 显微照片显示,即使在 60%乙醇处理 2 小时后,F1 的微观结构仍得以保留,并且观察到纤维部分的暴露,从而获得了果胶的排列。

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