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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Optimization of ethyl lactate-based organosolv process for lignin recovery from the solid waste of a wheat straw biorefinery
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Optimization of ethyl lactate-based organosolv process for lignin recovery from the solid waste of a wheat straw biorefinery

机译:从小麦秸秆生物填料的固体废物中恢复木质素的乳酸乙酯基有机溶液方法的优化

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摘要

BACKGROUND The organosolv process promotes biomass delignification at relatively high temperatures using a wide variety of organic solvent solutions. Nevertheless, previous studies on organosolv processes have not dealt with the use of ethyl lactate as organic solvent. Thus the aim of the present contribution was to determine and to validate if the use of ethyl lactate has a positive influence on lignin recovery for organosolv processes whose feedstock is the solid waste from a wheat straw-based biorefinery. The effect of operating conditions (temperature and time) on lignin recovery was also studied. RESULTS A mixed design of experiments was proposed as the strategy to maximize lignin recovery. The mathematical model derived from a multiple linear regression applied to the mixed design results indicates that 190 degrees C and a non-aqueous solution containing ethyl lactate and ethanol (81.2% w/w ethyl lactate) could provide a maximum lignin recovery of 75.9% w/w. This theoretical maximum was validated. Thus the proposed model adequately describes the behavior of lignin recovery. Moreover, Fourier transform infrared (FTIR) characterization of the resultant lignin suggested that its structure is a function of the organic solvent solution used during the organosolv process. CONCLUSION The evidence from this study indicates that lignin recovery from the solid waste of a wheat straw-based biorefinery in an organosolv process depends on temperature and ethyl lactate presence in the reaction medium. These findings enhance the understanding of organosolv processes and could be applied if eventual lignin valorization is desired. (c) 2019 Society of Chemical Industry
机译:背景技术有机溶胶方法使用各种有机溶剂溶液在相对高的温度下促进生物质脱蛋白。然而,以前关于有机溶胶过程的研究没有处理使用乳酸乙酯作为有机溶剂。因此,目前贡献的目的是确定和验证使用乳酸乙酯的使用对木质素恢复的阳性影响有机溶胶的恢复,其原料是来自小麦秸秆的生物颗粒的固体废物。还研究了操作条件(温度和时间)对木质素回收的影响。结果提出了一种实验的混合设计作为最大化木质素恢复的策略。从应用于混合设计结果的多元线性回归衍生的数学模型表明190℃和含有乙酸乙酯和乙醇的非水溶液(81.2%w / w乳酸乙酯)可以提供75.9%的最大木质素回收率/ w。这种理论最大值得到了验证。因此,所提出的模型充分描述了木质素恢复的行为。此外,所得木质素的傅里叶变换红外(FTIR)表征表征其结构是其结构是有机溶胶方法期间使用的有机溶剂溶液的函数。结论本研究中的证据表明,在有机溶胶过程中,从小麦秸秆基生物件的固体废物中的木质素恢复取决于反应介质中的温度和乳酸乙酯。这些发现增强了对有机溶症过程的理解,并且如果需要最终的木质素载玻片,可以应用。 (c)2019年化学工业协会

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