摘要
利用固定床式反应器研究了热压醇-水混合溶剂中处理木质纤维素制备还原糖的工艺条件及动力学.通过对不同反应温度、反应压力、不同溶剂等因素进行考察,发现在温度250℃、压力17 MPa、乙醇-水混合体积比1∶1时,还原糖的收率可达67.53%.以木质纤维素水解过程进行分段集总,提出了三集总动力学,拟合出了17 MPa下,乙醇加入前后,木质纤维素降解的表观活化能分别为119.497和56.784 kJ/mol.结果表明,乙醇-水作为溶剂时更有利于木质纤维素的降解,提高还原糖收率.
The process and kinetics of lignocellulose hydrolysis in hot-compressed alcohol-water mixtures for reducing sugar production in a fixed-bed reactor were investigated.It was found that the yield of reducing sugar could reach 67.53% at a temperature of 250 ℃,a pressure of 17 MPa and a volume ratio of ethanol/water 1∶1.By employing a 3-lump kinetic model,the apparent activation energies of lignocellulose hydrolyses without and with ethanol addition were estimated to be 119.497 and 56.784 kJ/mol,respectively,at the pressure of 17 MPa.The results showed that ethanol-water mixtures as solvent were beneficial to the hydrolysis of lignocellulose and improvement of reducing sugar production.
出处
《武汉工程大学学报》
CAS
2012年第2期14-18,共5页
Journal of Wuhan Institute of Technology
基金
国家自然科学基金资助项目(20976140)
湖北省自然科学基金项目(2008CDA024)
关键词
木质纤维素
固定床式反应器
还原糖
集总动力学
水解
表观活化能
lignocellulose; fixed-bed reactor; reducing sugar; lumped kinetics; hydrolysis; apparent activation energy