POLYOLS

作品数:51被引量:125H指数:7
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相关领域:化学工程理学更多>>
相关作者:李勤梁坤张俊良朱长春吕国会更多>>
相关机构:黎明化工研究院江苏钟山化工有限公司中国科学院青岛科技大学更多>>
相关期刊:《Chinese Journal of Chemical Physics》《华东理工大学学报(自然科学版)》《Plasma Science and Technology》《Journal of Wuhan University of Technology(Materials Science)》更多>>
相关基金:国家自然科学基金国家重点基础研究发展计划广东省自然科学基金中国博士后科学基金更多>>
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  • 期刊=Journal of Energy Chemistryx
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Catalytic conversion of glucose to small polyols over a binary catalyst of vanadium modified beta zeolite and Ru/C被引量:1
《Journal of Energy Chemistry》2019年第7期88-95,共8页Joby Sebastian Mingyuan Zheng Xinsheng Li Jifeng Pang Chan Wang Tao Zhang 
supported by the National Natural Science Foundation of China (nos. 21306191; 21376239; 21690080; 21690081)
Catalytic conversion of glucose, the most abundant carbohydrate, to chemicals of petroleum origin has great desirability in terms of sustainability and industrial implementation. In this work, we attempted to exploit ...
关键词:VANADIUM GLUCOSE Retro-aldol condensation POLYOLS HYDROXYACETONE 
Self-reducing bifunctional Ni-W/SBA-15 catalyst for cellulose hydrogenolysis to low carbon polyols被引量:4
《Journal of Energy Chemistry》2016年第3期434-444,共11页Zhuqian Xiao Qiuwei Ge Chuang Xing Chengjun Jiang Sheng Fang Jianbing Ji Jianwei Mao 
supported by scientific research project of Zhejiang Provincial Education Department(Grant No.Y20112088,China);Science and technology project of Zhejiang Province(Grant No.2011R09028-10,China)
A series of self-reducing bifunctional Ni-W/SBA-15 catalysts were synthesized using biomass-based carbon source as the reducing agent without conventional further reduction step. The self-reducing catalysts were perfo...
关键词:Cellulose HYDROGENOLYSIS Low carbon polyols Self-reducing catalyst 
Catalytic transformation of cellulose and its derived carbohydrates into chemicals involving C–C bond cleavage被引量:2
《Journal of Energy Chemistry》2015年第5期595-607,共13页Weiping Deng Qinghong Zhang Ye Wang 
supported by the National Natural Science Foundation of China (21173172 and 21473141);the Research Fund for the Doctorial Program of Higher Education (No. 20130121130001);the Program for Innovative Research Team in University (No. IRT_14R31)
The catalytic transformation of cellulose, the major component of abundant and renewable lignocellulosic biomass, into building-block chemicals is a key to establishing sustainable chemical processes. Cellulose is a p...
关键词:Biomass Cellulose C-C bond activation Polyols Organic acids 
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