节点文献

自水解预处理对稻草化学成分及酶解性能的影响

Effects of Auto-hydrolysis of Rice Straw on Its Chemical Composition and Enzymatic Hydrolysis

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 荆磊金永灿张厚民韩强Hasan JameelRichard Phillips

【Author】 JING Lei1,JIN Yong-can1,CHANG Hou-min1,2,HAN Qiang1,Hasan Jameel2,Richard Phillips2(1.Jiangsu Provincial Key Laboratory of Pulp and Paper Science and Technology,Nanjing Forestry University,Nanjing 210037,China;2.Department of Wood and Paper Science,North Carolina State University,Raleigh,NC 27695,U.S.)

【机构】 南京林业大学江苏省制浆造纸科学与工程重点实验室美国北卡罗莱那州立大学木材与造纸科学系

【摘要】 研究了自水解处理对稻草秸秆主要化学成分及酶解糖化效率的影响。结果显示:在100~160℃下对稻草进行自水解预处理,酸溶木质素的脱除程度随着自水解温度的升高而增大,而Klason木质素含量几乎没有变化,几乎全部SiO2仍然保留在预处理后草片中;稻草高聚糖的降解程度随着自水解温度的升高而增加,但由于自水解液酸性较弱,大量高聚糖仍保留在草片中;自水解预处理有利于促进稻草的酶解糖化,随着自水解预处理温度的升高和酶用量的增大,酶解液中各种聚糖得率均有不同程度的提高,但自水解温度的影响显得更为重要;经160℃自水解预处理的稻草在40 FPU/g混合酶用量下,葡聚糖和木聚糖的总转化率约为68%和45%,总糖转化率近60%。

【Abstract】 The effects of auto-hydrolysis on chemical compositions and enzymatic saccharification of rice straw were investigated in this paper.The results revealed that with the increase of auto-hydrolysis temperature in the range of 100~160℃,the dissolution of acid soluble lignin went up and more polysaccharides were degraded under a higher auto-hydrolysis temperature;However,little Klason lignin was removed and almost all SiO2 and cellulose was kept in the pretreated rice straw.Auto-hydrolysis was beneficial to the enzymatic saccharification of rice straw.A higher recovery of reduced sugar in enzymatic hydrolysate would be obtained when rice straw was auto-hydrolyzed at a higher temperature and a higher enzyme loading.Auto-hydrolysis temperature took an important role in sugar recovery improvement.Glucan and xylan recovery reached up to 68% and 45%,respectively,and the total sugar recovery closed to 60% was obtained when rice straw auto-hydrolyzed at 160℃ and enzymatic hydrolysis under the load of 40 FPU/g.

【关键词】 自水解酶解稻草聚糖
【Key words】 auto-hydrolysisenzymatic hydrolysisrice strawpolymeric sugar
【基金】 南京林业大学引进高层次人才和高层次留学回国人员科研基金资助项目
  • 【文献出处】 纤维素科学与技术 ,Journal of Cellulose Science and Technology , 编辑部邮箱 ,2010年02期
  • 【分类号】TQ352.1
  • 【被引频次】29
  • 【下载频次】375
节点文献中: 

本文链接的文献网络图示:

本文的引文网络