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Pt-Ni@C催化剂催化纤维素水相制乙醇

卢霄 王晨光 李宙文 赵莉 张学伟 赵广迈 金开欣 李万澎 王海永 张大雷

燃料化学学报(中英文)2025,Vol.53Issue(6):863-871,9.
燃料化学学报(中英文)2025,Vol.53Issue(6):863-871,9.DOI:10.1016/S1872-5813(24)60524-4

Pt-Ni@C催化剂催化纤维素水相制乙醇

Production of ethanol from cellulose in aqueous phase with Pt-Ni@C catalysts

卢霄 1王晨光 1李宙文 2赵莉 2张学伟 2赵广迈 1金开欣 1李万澎 1王海永 3张大雷4

作者信息

  • 1. 沈阳航空航天大学,辽宁沈阳 110136||中国科学院广州能源研究所,广东 广州 510650
  • 2. 广东中烟工业有限责任公司,广东 广州 510640
  • 3. 中国科学院广州能源研究所,广东 广州 510650
  • 4. 辽宁省能源研究所,辽宁营口 115003
  • 折叠

摘要

Abstract

A series of Pt-Ni@C catalysts with different Pt/Ni@C mass ratios were prepared using deposition precipitation method.The effect of the loading amounts of Pt on the synthesis of ethanol by cellulose hydrogenation reduction was studied.The structure-performance relationship of the catalyst was clarified.The results showed that the Pt/Ni@C catalyst achieved the complete conversion of high concentration of cellulose under H2 environment at 200℃,5.5 MPa.When the concentration of cellulose reached 50 g/L,the ethanol concentration in the solution was 13.3 g/L with yield of 31%.The valence state of the Pt species,the ordering degree of carbon and the microstructure of the catalyst were characterized by means of XRD,XPS,Raman and TEM.The Ni atoms wrapped by the carbon layer of the catalyst showed an electron-rich state through electron migration with the surface carbon layer.The electron-negative surface of Pt-Ni@C effectively break the C-O and C-C bonds of the intermediates.Compared with traditional carbon-based catalysts,the amount of surface active sites increased by loading small amount of Pt.The Pt promoted the activation of hydrogen,and the synergistic of electron-rich surface and the trace phosphoric acid led to excellent activity of the Pt-Ni@C.

关键词

乙醇/碳基金属催化剂/水相体系/纤维素

Key words

ethanol/carbon based metal catalyst/aqueous phase/cellulose

分类

化学

引用本文复制引用

卢霄,王晨光,李宙文,赵莉,张学伟,赵广迈,金开欣,李万澎,王海永,张大雷..Pt-Ni@C催化剂催化纤维素水相制乙醇[J].燃料化学学报(中英文),2025,53(6):863-871,9.

基金项目

The project was supported by the National Key Research and Development Program of China(2022YFB4201804). 国家重点研发计划(2022YFB4201804)资助 (2022YFB4201804)

燃料化学学报(中英文)

OA北大核心

2097-213X

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