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基于响应面法的小麦秸秆木质素高效提取与分析

Efficient Extraction and Analysis of Wheat Straw Lignin by Response Surface Methodology.

作者信息

Wang Yongke, Sun Xiao-Feng, Chen Jiayi, Hu Sihai, Sun Ran

机构信息

School of Chemistry and Chemical Engineering, Northwestern Polytechnical University, Xi'an 710072, China.

Research & Development Institute of Northwestern Polytechnical University in Shenzhen, Shenzhen 518063, China.

出版信息

Polymers (Basel). 2024 Oct 19;16(20):2935. doi: 10.3390/polym16202935.

Abstract

To enhance the high-value utilization of straw waste and achieve efficient lignin extraction, wheat straw was selected as the feedstock for investigating the effects of reaction temperature, reaction time, solid-liquid ratio, and formic acid concentration on lignin yield using a formic acid/acetic acid solvent system. A single-factor experimental design was initially employed, followed by optimization using the response surface methodology. Additionally, a kinetic model was developed to describe lignin extraction kinetics in the formic acid/acetic acid system. The structural characteristics and thermal stability of the extracted lignin were analyzed via FTIR, UV spectroscopy, and TGA. The findings indicate that increasing reaction temperature, reaction time, solid-liquid ratio, and formic acid content all significantly enhanced lignin extraction yield from wheat straw, with the primary influencing factors being reaction temperature > solid-liquid ratio > reaction time > formic acid content. The optimal extraction conditions were identified at a reaction temperature of 90 °C, a reaction time of 3.5 h, a solid-liquid ratio of 1:16.5, and a formic acid content of 86.2 wt.%, yielding a lignin content of 79.83%. The analytical results demonstrated that the extracted lignin preserved the structural integrity of the original lignin and exhibited good thermal stability.

摘要

为提高秸秆废弃物的高值化利用并实现木质素的高效提取,选用小麦秸秆作为原料,采用甲酸/乙酸溶剂体系研究反应温度、反应时间、固液比和甲酸浓度对木质素产率的影响。首先采用单因素实验设计,随后利用响应面法进行优化。此外,还建立了动力学模型来描述甲酸/乙酸体系中木质素的提取动力学。通过傅里叶变换红外光谱(FTIR)、紫外光谱和热重分析(TGA)对提取的木质素的结构特征和热稳定性进行了分析。结果表明,提高反应温度、反应时间、固液比和甲酸含量均显著提高了小麦秸秆中木质素的提取产率,主要影响因素为反应温度>固液比>反应时间>甲酸含量。确定最佳提取条件为反应温度90℃、反应时间3.5 h、固液比1:16.5、甲酸含量86.2 wt.%,木质素含量为79.83%。分析结果表明,提取的木质素保留了原始木质素的结构完整性,并具有良好的热稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3374/11511024/f72c3d7b9e43/polymers-16-02935-g001.jpg

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