Department of Biological and Agricultural Engineering, Kansas State University, Manhattan, KS 66506, USA.
Bioprocess Biosyst Eng. 2011 May;34(4):485-92. doi: 10.1007/s00449-010-0492-9. Epub 2010 Dec 12.
Photoperiod sensitive (PS) sorghum, with high soluble sugar content, high mass yield and high drought tolerance in dryland environments, has great potential for bioethanol production. The effect of diluted sulfuric acid pretreatment on enzymatic hydrolysis was investigated. Hydrolysis efficiency increased from 78.9 to 94.4% as the acid concentration increased from 0.5 to 1.5%. However, the highest total glucose yield (80.3%) occurred at the 1.0% acid condition because of the significant cellulose degradation at the 1.5% concentration. Synchrotron wide-angle X-ray diffraction was used to study changes of the degree of crystallinity. With comparison of cellulosic crystallinity and adjusted cellulosic crystallinity, the crystalline cellulose decreased after low acidic concentration (0.5%) applied, but did not change significantly, as the acid concentration increased. Scanning electron microscopy was also employed to understand how the morphological structure of PS sorghum changed after pretreatment. Under current processing conditions, the total ethanol yield is 74.5% (about 0.2 g ethanol from 1 g PS sorghum). A detail mass balance was also provided.
光周期敏感(PS)高粱具有可溶性糖含量高、旱地环境下生物量产量高、耐旱性强等特点,在生物乙醇生产方面具有巨大潜力。本文研究了稀硫酸预处理对酶水解的影响。随着酸浓度从 0.5%增加到 1.5%,水解效率从 78.9%增加到 94.4%。然而,由于 1.5%浓度下纤维素降解显著,最高总葡萄糖得率(80.3%)出现在 1.0%酸条件下。同步辐射广角 X 射线衍射用于研究结晶度的变化。通过比较纤维素结晶度和调整后的纤维素结晶度,发现低酸性浓度(0.5%)处理后结晶纤维素减少,但随着酸浓度的增加,变化不明显。扫描电子显微镜也用于了解 PS 高粱的形态结构在预处理后如何变化。在当前的处理条件下,总乙醇得率为 74.5%(约 0.2 g 乙醇来自 1 g PS 高粱)。还提供了详细的质量平衡。