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检索条件"主题词=ethanol production."
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Optimization on Pretreatment and Enzymatic Hydrolysis of Sugarcane Trash for ethanol production
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Journal of Food Science and Engineering 2014年 第3期4卷 148-154页
作者: Teerapatr Srinorakutara Suthkamol Suttikul Ekarat Butivate Vishnu Panphan Nassapat Boonvitthya Department of Energy Technology Thailand Institute of Scientific and Technological Research (TISTR) Pathum Thani 12120Thailand Department of Agricultural Technology Thailand Institute of Scientific and Technological Research (TISTR) Pathum Thani12120 Thailand PTT Research and Technology. Institute PTT Public Company Limited Ayutthaya 13170 Thailand
The present study was conducted for the optimization of pretreatment and enzymatic hydrolysis of lignocellulosic biomass (sugarcane trash), which is a renewable resource for the production.of bioethanol. The pretrea... 详细信息
来源: 维普期刊数据库 维普期刊数据库 评论
Conversion of Sugarcane Shoots and Leaves into Reducing Sugars by Pretreatment and Enzymatic Hydrolysis
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Journal of Life Sciences 2011年 第4期5卷 247-254页
作者: Teerapatr Srinorakutara Suthkamol Suttikul Pompattra Srinorakutara Department of Energy Technology Thailand Institute of Scientific and Technological Research Pathum Thani 12120 Thailand Department of Food Technology Thailand Institute of Scientific and Technological Research Pathum Thani 12120 Thailand
Sugarcane shoots and leaves consist of 38% cellulose, 30.6% hemicellulose and 12.8% lignin on dry solid (DS) basis and have the potential to serve as low cost feedstocks for ethanol production. The pretreatment and ... 详细信息
来源: 维普期刊数据库 维普期刊数据库 评论
Simultaneous Saccharification and Fermentation of Alkali-Acid Pretreated Sugarcane Trash to ethanol
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Journal of Environmental Science and Engineering(B) 2015年 第9期4卷 476-481页
作者: Suthkamol Suttikul Vishnu Panphan Kitti Orasoon Department of Energy Technology Thailand Institute of Scientific and Technological Research (TISTR) Pathum Thani 12120Thailand
The Simultaneous Saccharification and Fermentation (SSF) of alkali-acid pretreated sugarcane trash to ethanol was optimized using commercial cellulase and Saccharomyces cerevisiae TISTR 5596 cells. Substrate concent... 详细信息
来源: 维普期刊数据库 维普期刊数据库 评论