Department of Biochemistry & Molecular Biology, Michigan State University, 603 Wilson Road, East Lansing, MI 48824, USA.
State Key Laboratory of Biobased Material and Green Papermaking, Qilu University of Technology, Shandong Academy of Sciences, Jinan 250353, China.
Bioresour Technol. 2018 Oct;266:194-202. doi: 10.1016/j.biortech.2018.06.065. Epub 2018 Jun 21.
To improve sugar recovery and ethanol production from wheat straw, a sequential two-stage pretreatment process combining alkaline pre-extraction and acid catalyzed steam treatment was investigated. The results showed that alkaline pre-extraction using 8% (w/w) sodium hydroxide at 80 °C for 90 min followed by steam pretreatment with 3% (w/w) sulfur dioxide at 151 °C for 16 min was sufficient to prepare a substrate that could be efficiently hydrolyzed at high solid loadings. Moreover, alkaline pre-extraction reduced the process severity of steam pretreatment and decreased the generation of inhibitory compounds. During enzymatic hydrolysis, increasing solid loading decreased the yield of monomeric sugars. Enzymatic hydrolysis at 25% (w/v) solid loading, the yields of approximately 80% of glucose and 65% of xylose could be reached with an enzyme dosage of 25 mg protein/g glucan. Following fermentation of hydrolysate with sugar concentration of approximately 120 g/L, an ethanol concentration of 54.5 g/L was achieved.
为了提高从麦草中回收糖和生产乙醇的效率,研究了一种结合碱性预提取和酸催化蒸汽处理的两步顺序预处理工艺。结果表明,在 80°C 下用 8%(w/w)氢氧化钠进行碱性预提取 90 分钟,然后用 3%(w/w)二氧化硫在 151°C 下进行蒸汽预处理 16 分钟,足以制备可在高固体负荷下高效水解的底物。此外,碱性预提取降低了蒸汽预处理的过程苛刻度,并减少了抑制性化合物的生成。在酶水解过程中,增加固体负荷会降低单糖的产率。在 25%(w/v)固体负荷下进行酶解,当酶用量为 25mg 蛋白/g 葡聚糖时,葡萄糖和木糖的产率分别约为 80%和 65%。在糖浓度约为 120g/L 的水解液发酵后,可得到 54.5g/L 的乙醇浓度。