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Title
Preparation of the PdAg/CDs composite and its catalytic performance in the hydrogenolysis of glucose
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作者
陈德权王安包桂蓉高鹏罗嘉吉学武邓文瑶刘力
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Author
CHEN De-quan;WANG An;BAO Gui-rong;GAO Peng;LUO Jia;JI Xue-wu;DENG Wen-yao;LIU Li
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单位
昆明理工大学 冶金与能源工程学院省部共建复杂有色金属资源清洁利用国家重点实验室中国科学院西双版纳热带植物园
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Organization
Faculty of Metallurgy and Energy Engineering, Kunming University of Science and Technology
State Key Laboratory of Complex Non-ferrous Metal Resource Utilization
Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences
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摘要
以碳点(carbon dots, CDs)为还原剂和载体,采用简便的光照还原法制备出了PdAg/CDs复合催化剂。XRD、TEM、FT-IR和XPS等技术对催化剂的表征分析,结果表明该催化剂平均粒径为10.45 nm,Pd和Ag主要以零价态的合金形式负载在碳点表面。将PdAg/CDs复合催化剂用于水中葡萄糖的氢解,催化评价结果表明,在初始H2压力为4 MPa、葡萄糖100 mg、催化剂25 mg、反应温度140 ℃的条件下反应3 h,该催化剂显示出较好的氢解活性,葡萄糖的转化率为68.85%,氢解产物丙酮醇的收率达到8.36%。
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Abstract
With carbon dots (CDs) as the reducing agent and support, a PdAg/CDs composite catalyst was prepared by simple light reduction method. The results of XRD, TEM, FT-IR and XPS characterization indicate that the PdAg/CDs composite has an average particle size of about 10.45 nm, where Pd and Ag exist on the surface of CDs mainly in the alloy form of zero valence. The catalytic performance of the PdAg/CDs composite was evaluated in the hydrogenolysis of glucose in water. The results illustrate that the PdAg/CDs composite catalyst is highly active in the glucose hydrogenolysis; after reaction for 3 h under 140 °C, 4 MPa of initial H2 pressure, 100 mg of glucose and 25 mg of catalyst, the conversion of glucose is 68.85% and the yield of acetol reaches 8.36%.
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关键词
PdAg/CDs复合催化剂葡萄糖氢解碳点
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KeyWords
PdAg/CDs catalyst;glucose;hydrogenolysis;carbon dots
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基金项目(Foundation)
国家自然科学基金(51966008)项目资助
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DOI
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引用格式
陈德权, 王安, 包桂蓉, 高鹏, 罗嘉, 吉学武, 邓文瑶, 刘力. PdAg/CDs复合催化剂的制备及其葡萄糖氢解性能研究[J]. 燃料化学学报(中英文), 2023, 51(9): 1273-1281.
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Citation
CHEN De-quan, WANG An, BAO Gui-rong, GAO Peng, LUO Jia, JI Xue-wu, DENG Wen-yao, LIU Li. Preparation of the PdAg/CDs composite and its catalytic performance in the hydrogenolysis of glucose[J]. Journal of Fuel Chemistry and Technology, 2023, 51(9): 1273-1281.
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