Kim Youngmi, Mosier Nathan S, Ladisch Michael R
Laboratory of Renewable Resources Engineering, Dept. of Agricultural and Biological Engineering, Potter Engineering Center, Purdue University, West Lafayette, IN 47907-2022, USA.
Biotechnol Prog. 2009 Mar-Apr;25(2):340-8. doi: 10.1002/btpr.137.
Liquid hot (LHW) water pretreatment (LHW) of lignocellulosic material enhances enzymatic conversion of cellulose to glucose by solubilizing hemicellulose fraction of the biomass, while leaving the cellulose more reactive and accessible to cellulase enzymes. Within the range of pretreatment conditions tested in this study, the optimized LHW pretreatment conditions for a 15% (wt/vol) slurry of hybrid poplar were found to be 200(o)C, 10 min, which resulted in the highest fermentable sugar yield with minimal formation of sugar decomposition products during the pretreatment. The LHW pretreatment solubilized 62% of hemicellulose as soluble oligomers. Hot-washing of the pretreated poplar slurry increased the efficiency of hydrolysis by doubling the yield of glucose for a given enzyme dose. The 15% (wt/vol) slurry of hybrid poplar, pretreated at the optimal conditions and hot-washed, resulted in 54% glucose yield by 15 FPU cellulase per gram glucan after 120 h. The hydrolysate contained 56 g/L glucose and 12 g/L xylose. The effect of cellulase loading on the enzymatic digestibility of the pretreated poplar is also reported. Total monomeric sugar yield (glucose and xylose) reached 67% after 72 h of hydrolysis when 40 FPU cellulase per gram glucan were used. An overall mass balance of the poplar-to-ethanol process was established based on the experimentally determined composition and hydrolysis efficiencies of the liquid hot water pretreated poplar.
木质纤维素材料的液态热水(LHW)预处理通过溶解生物质的半纤维素部分,提高了纤维素向葡萄糖的酶促转化,同时使纤维素更具反应性且更易被纤维素酶作用。在本研究测试的预处理条件范围内,对于15%(重量/体积)的杂交杨树浆,优化的LHW预处理条件为200℃、10分钟,这在预处理过程中产生了最高的可发酵糖产量,且糖分解产物的形成最少。LHW预处理使62%的半纤维素溶解为可溶性低聚物。对预处理后的杨树浆进行热洗,在给定酶剂量下使葡萄糖产量翻倍,从而提高了水解效率。在最佳条件下进行预处理并热洗后的15%(重量/体积)杂交杨树浆,在120小时后每克葡聚糖用15 FPU纤维素酶可产生54%的葡萄糖产量。水解产物含有56 g/L葡萄糖和12 g/L木糖。还报道了纤维素酶负载量对预处理杨树酶解消化率的影响。当每克葡聚糖使用40 FPU纤维素酶时,水解72小时后总单体糖产量(葡萄糖和木糖)达到67%。基于实验测定的液态热水预处理杨树的组成和水解效率,建立了杨树到乙醇过程的整体质量平衡。