Effect of surface structure on the catalytic behavior of Ni:Cu/Al and Ni:Cu:K/Al catalysts for methane decomposition

被引:0
作者
S.Tajammul Hussain [1 ]
Sheraz Gul [1 ]
Muhammed Mazhar [2 ]
Dalaver H.Anjum [3 ]
Faical Larachi [4 ]
机构
[1] National Centre for Physics,Quaid-i-Azam University
[2] Department of Chemistry,Quaid-i-Azam University
[3] Department of Structural Biology,University of Pittsburgh School of Medicine
[4] Department of Chemical Engineering,University of Laval
关键词
bimetallic catalysts; methane decomposition; carbon fibers; hydrogen; higher hydrocarbons;
D O I
暂无
中图分类号
O643.3 [催化];
学科分类号
081705 ;
摘要
Methane decomposition using nickel,copper,and aluminum(Ni:Cu/Al)and nickel,copper,potassium,and alu- minum(Ni:Cu:K/Al)modified nano catalysts has been investigated for carbon fibers,hydrogen and hydrocarbon production. X-ray photoelectron spectroscopy(XPS),static secondary ion mass spectrometry(SSIMS),thermal gravimetric analysis(TGA), Fourier transform infrared(FT-IR),secondary electron microscopy/X-ray energy dispersive(SEM-EDX),and temperature pro- grammed desorption(TPD)were used to depict the chemistry of the catalytic results.These techniques revealed the changes in surface morphology and structure of Ni,Cu,Al,and K,and formation of bimetallic and trimetallic surface cationic sites with different cationic species,which resulted in the production of graphitic form of pure carbon on Ni:Cu/Al catalyst.The addition of K has a marked effect on the product selectivity and reactivity of the catalyst system.K addition restricts the formation of carbon on the surface and increases the production of hydrogen and C,Chydrocarbons during the catalytic reaction whereas no hydrocarbons are produced on the sample without K.This study completely maps the modified surface structure and its re- lationship with the catalytic behavior of both systems.The process provides a flexible route for the production of carbon fibers and hydrogen on Ni:Cu/Al catalyst and hydrogen along with hydrocarbons on Ni:Cu:K/Al catalyst.The produced carbon fibers are imaged using a transmission electron microscope(TEM)for diameter size and wall structure determination.Hydrogen produced is COfree,which can be used directly in the fuel cell system.The effect of the addition of Cu and its transformation and interaction with Ni and K is responsible for the production of CO/COfree hydrogen,thus producing an environmental friendly clean energy.
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页码:374 / 382
页数:9
相关论文
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[1]  
Cavani F,Trifiro F,Vaccari A. Catal. Today . 1991