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典型文献
B-doped activated carbon as a support for a high-performance Zn-based catalyst in acetylene acetoxylation
文献摘要:
A series of boron-doped(B-doped)catalysts with dissimilar mass ratios of boric acid and activated carbon(AC)were prepared by an impregnation method for acetylene acetoxylation.The introduction of a number of boron atoms activates the stable π electrons in AC,which not only enhances the electron transfer between Zn and the reactants,but also improves the adsorption ability of CH3COOH.Improving the conversion rate of CH3COOH from 50%to 65%effectively.The inductively coupled plasma(ICP)analysis confirmed the content of zinc approximately 7.3 wt%for both Zn/AC and Zn/0.02 B-AC-900 catalysts.Furthermore,X-ray photoelectron spectroscopy(XPS)analysis demonstrated that the introduction of boron changed the electron cloud density of Zn,and the strength of the Zn-O(from CH3COOH)bond was increased.In addition,temperature-programmed desorption(TPD)analysis revealed that the Zn/0.02 B-AC-900 catalyst enhanced the adsorption of CH3COOH and reduced the adsorption of C2H2,thus the conversion rate of CH3COOH was increased.
文献关键词:
作者姓名:
Fulong Zhu;Mingyuan Zhu;Lihua Kang
作者机构:
School of Chemistry and Chemical Engineering of Shihezi University,Shihezi,Xinjiang,832003,China
引用格式:
[1]Fulong Zhu;Mingyuan Zhu;Lihua Kang-.B-doped activated carbon as a support for a high-performance Zn-based catalyst in acetylene acetoxylation)[J].绿色能源与环境(英文),2022(02):221-228
A类:
acetoxylation
B类:
doped,activated,carbon,support,high,performance,acetylene,series,boron,catalysts,dissimilar,mass,ratios,boric,acid,AC,were,prepared,by,impregnation,method,introduction,number,atoms,activates,stable,electrons,which,not,only,enhances,transfer,between,reactants,but,also,improves,adsorption,ability,CH3COOH,Improving,conversion,from,effectively,inductively,coupled,plasma,ICP,analysis,confirmed,content,zinc,approximately,wt,both,Furthermore,ray,photoelectron,spectroscopy,XPS,demonstrated,that,changed,cloud,density,strength,bond,was,increased,In,addition,temperature,programmed,desorption,TPD,revealed,enhanced,reduced,C2H2,thus
AB值:
0.561977
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