Energy Research Institute Co., Ltd of Henan Academy of Sciences, Key Biomass Energy Laboratory of Henan Province, Zhengzhou, 450008 Henan, China.
Carbohydr Res. 2012 Oct 1;359:1-6. doi: 10.1016/j.carres.2012.07.006. Epub 2012 Jul 20.
This study aimed to optimize the conditions for furfural production from rice husk via a two-stage process: acid hydrolysis followed by dehydration using an orthogonal test design and response surface methodology, respectively. Orthogonal test design was utilized in the hydrolysis step; optimum conditions were as follows: 2.5% sulfuric acid (mass fraction), 110°C reaction temperature, sulfuric acid to rice husk (L/S) ratio of 8 (g/mL), and a reaction time of 3h. According to the Box-Behnken design, the temperature, amount of catalyst, extractant volume, and reaction time were chosen as four important factors with three levels for the dehydration step. Conditions were further optimized by response surface analysis. The results showed that the optimal conditions were 177°C, 120 mL extractant volume, 2.1g of catalyst, and a reaction time of 4.8h. Under the optimal conditions, the furfural yield reached 8.9%, which is consistent with the estimated value, 8.97%.
本研究旨在通过两步法(酸水解和脱水)从稻壳中优化生产糠醛的条件,分别采用正交试验设计和响应面法。在水解步骤中采用正交试验设计;最佳条件如下:硫酸质量分数为 2.5%,反应温度 110°C,硫酸与稻壳的比例为 8(g/mL),反应时间为 3h。根据 Box-Behnken 设计,选择温度、催化剂用量、萃取剂体积和反应时间作为脱水步骤的四个重要因素,每个因素有三个水平。通过响应面分析进一步优化条件。结果表明,最佳条件为 177°C、萃取剂体积 120mL、催化剂 2.1g、反应时间 4.8h。在最佳条件下,糠醛收率达到 8.9%,与预测值 8.97%一致。