School of Chemistry and Chemical Engineering, Henan University of Science and Technology, Luoyang, Henan, China.
Prep Biochem Biotechnol. 2024 Oct;54(9):1182-1185. doi: 10.1080/10826068.2024.2333467. Epub 2024 Mar 23.
In the [Bmim]Cl reaction medium, five different acidic ionic liquids were used as catalysts to study the effects of reaction time, reaction temperature, system water content, catalyst dosage, microwave power, and other factors on cellulose hydrolysis under microwave irradiation. The results showed that in the [Bmim]Cl reaction system, using N-methylpyrrolidone methylsulfonic acid salt as a catalyst, controlling the microwave reaction time at 10 min, reaction temperature at 130 °C, catalyst dosage at 1 g/g (cellulose), water addition at 0.756 μL/g ([Bmim]Cl), and microwave power at 480 W, resulted in the best cellulose hydrolysis effect with a glucose yield of 74.49%. Compared to conventional heating, the glucose yield increased by 24% and the hydrolysis time was reduced by 77%. Microwave irradiation significantly enhances the cellulose hydrolysis process in an ionic liquid medium.
在[Bmim]Cl 反应介质中,使用五种不同的酸性离子液体作为催化剂,研究了反应时间、反应温度、体系含水量、催化剂用量、微波功率等因素对微波辐射下纤维素水解的影响。结果表明,在[Bmim]Cl 反应体系中,采用 N-甲基吡咯烷酮甲基磺酸盐水溶液作为催化剂,控制微波反应时间为 10min,反应温度为 130°C,催化剂用量为 1g/g(纤维素),水加入量为 0.756μL/g([Bmim]Cl),微波功率为 480W,可获得最佳的纤维素水解效果,葡萄糖得率为 74.49%。与传统加热相比,葡萄糖收率提高了 24%,水解时间缩短了 77%。微波辐射显著增强了离子液体介质中纤维素的水解过程。