Zhang Hongdan, Wu Shubin
State Key Laboratory of Pulp and Paper Engineering, South China University of Technology , Guangzhou, Guangdong 510640, People's Republic of China.
J Agric Food Chem. 2014 Dec 3;62(48):11681-7. doi: 10.1021/jf503386b. Epub 2014 Nov 21.
Acetic acid ethanol-based organosolv pretreatment of sugar cane bagasse was performed to enhance enzymatic hydrolysis. The effect of different parameters (including temperature, reaction time, solvent concentration, and acid catalyst dose) on pretreatment prehydrolyzate and subsequent enzymatic digestibility was determined. During the pretreatment process, 11.83 g of xylose based on 100 g of raw material could be obtained. After the ethanol-based pretreatment, the enzymatic hydrolysis was enhanced and the highest glucose yield of 40.99 g based on 100 g of raw material could be obtained, representing 93.8% of glucose in sugar cane bagasse. The maximum total sugar yields occurred at 190 °C, 45 min, 60:40 ethanol/water, and 5% dosage of acetic acid, reaching 58.36 g (including 17.69 g of xylose and 40.67 g of glucose) based on 100 g of raw material, representing 85.4% of total sugars in raw material. Furthermore, characterization of the pretreated sugar cane bagasse using X-ray diffraction and scanning electron microscopy analyses were also developed. The results suggested that ethanol-based organosolv pretreatment could enhance enzymatic digestibilities because of the delignification and removal of xylan.
采用基于乙酸乙醇的有机溶剂预处理甘蔗渣以提高酶解效率。测定了不同参数(包括温度、反应时间、溶剂浓度和酸催化剂用量)对预处理预水解物及后续酶解率的影响。在预处理过程中,基于100克原料可获得11.83克木糖。基于乙醇的预处理后,酶解得到增强,基于100克原料可获得最高40.99克的葡萄糖产量,占甘蔗渣中葡萄糖的93.8%。最大总糖产量出现在190℃、45分钟、乙醇/水比例为60:40以及乙酸用量为5%时,基于100克原料达到58.36克(包括17.69克木糖和40.67克葡萄糖),占原料中总糖的85.4%。此外,还采用X射线衍射和扫描电子显微镜分析对预处理后的甘蔗渣进行了表征。结果表明,基于乙醇的有机溶剂预处理由于脱木质素和木聚糖的去除而提高了酶解率。