Zhao Sibo, Huang Xuezheng, Yan Zhenli, Chang Chun, Xu Guizhuan, Du Chaojun, Jiao Youzhou, Chen Zhiyong
School of Chemical Engineering, Zhengzhou University, Zhengzhou, China.
Nanyang Institute of Technology, Nanyang, China.
J Sci Food Agric. 2022 May;102(7):2826-2834. doi: 10.1002/jsfa.11623. Epub 2021 Nov 18.
Environmental concerns and the diminishing availability of unrenewable resources have spurred research into the use of agricultural waste as a feedstock for industrial applications. Efficient conversion of wheat straw into biobased chemicals is an important way to realize the potential value of renewable agricultural biomass. This study investigated one-pot conversion of wheat straw into two notable platform chemicals, levulinic acid (LA) and methyl levulinate (ML).
A mixed acid catalyst system, including 1% H SO and 0.015 mol L Al (SO ) , was an efficient catalyst for the conversion of wheat straw due to the combination of Brønsted acid and Lewis acid. A ratio of wheat straw to methanol of 5 g/50 mL was identified as the preferred solid/liquid ratio, and a methanol/H O medium with 25% water content aided the simultaneous production of LA and ML from wheat straw. Under optimum conditions, the maximum total yield of LA and ML reached 23.01% at 220 °C and 3 h. The kinetics of biobased chemical formation and the reaction pathways in methanol/water were investigated.
The presence of water in the methanol/H O medium affected the distribution of products and promoted hydrolysis reactions. The methanol/H O medium not only inhibited the side reactions but also promoted the degradation of wheat straw and increased the total yield of LA and ML. This study provides a feasible method for the conversion of wheat straw to prepare biobased chemicals. © 2021 Society of Chemical Industry.
环境问题以及不可再生资源可用性的减少,促使人们开展将农业废弃物用作工业应用原料的研究。将小麦秸秆高效转化为生物基化学品是实现可再生农业生物质潜在价值的重要途径。本研究考察了将小麦秸秆一锅法转化为两种重要的平台化学品——乙酰丙酸(LA)和乙酰丙酸甲酯(ML)。
包括1% H₂SO₄和0.015 mol/L Al₂(SO₄)₃的混合酸催化剂体系,由于布朗斯特酸和路易斯酸的结合,是小麦秸秆转化的高效催化剂。小麦秸秆与甲醇的比例为5 g/50 mL被确定为最佳固液比,含水量为25%的甲醇/H₂O介质有助于从小麦秸秆中同时生产LA和ML。在最佳条件下,在220℃和3小时时,LA和ML的最大总产率达到23.01%。研究了甲醇/水中生物基化学品形成的动力学和反应途径。
甲醇/H₂O介质中水分的存在影响产物分布并促进水解反应。甲醇/H₂O介质不仅抑制了副反应,还促进了小麦秸秆的降解并提高了LA和ML的总产率。本研究为小麦秸秆转化制备生物基化学品提供了一种可行的方法。© 2021化学工业协会。