Department of Thermal Science and Energy Engineering, University of Science and Technology of China, Hefei 230026, PR China.
Department of Thermal Science and Energy Engineering, University of Science and Technology of China, Hefei 230026, PR China.
Bioresour Technol. 2016 Nov;219:753-756. doi: 10.1016/j.biortech.2016.08.025. Epub 2016 Aug 10.
A two-stage pretreatment process is proposed in this research in order to improve sugar recovery from corn stover. In the proposed process, corn stover is hydrolyzed by dilute hydrochloric acid to recover xylose, which is followed by a Fenton reagent oxidation to remove lignin. 0.7wt% dilute hydrochloric acid is applied in the first stage pretreatment at 120°C for 40min, resulting in 81.0% xylose removal. Fenton reagent oxidation (1g/L FeSO4·7H2O and 30g/L H2O2) is performed at room temperature (about 20°C) for 12 has a second stage which resulted in 32.9% lignin removal. The glucose yield in the subsequent enzymatic hydrolysis was 71.3% with a very low cellulase dosage (3FPU/g). This two-stage pretreatment is effective due to the hydrolysis of hemicelluloses in the first stage and the removal of lignin in the second stage, resulting in a very high sugar recovery with a low enzyme loading.
本研究提出了一种两段式预处理工艺,以提高从玉米秸秆中回收糖的效率。在提出的工艺中,玉米秸秆先用稀盐酸水解以回收木糖,然后用芬顿试剂氧化去除木质素。在第一阶段预处理中,采用 0.7wt%的稀盐酸在 120°C 下反应 40min,可实现 81.0%的木糖去除率。然后在室温(约 20°C)下进行芬顿试剂氧化(1g/L FeSO4·7H2O 和 30g/L H2O2)12h,可实现 32.9%的木质素去除率。随后在低纤维素酶用量(3FPU/g)下进行酶解,葡萄糖得率可达 71.3%。由于第一阶段对半纤维素的水解和第二阶段木质素的去除,该两段式预处理工艺非常有效,可在低酶用量下实现高糖回收率。