globalchange  > 影响、适应和脆弱性
DOI: 10.1016/j.jcou.2015.12.004
Scopus记录号: 2-s2.0-84955603939
论文题名:
Tailoring the properties of electrolyzed Ni/mesostructured silica nanoparticles (MSN) via different Ni-loading methods for CO2 reforming of CH4
作者: Sidik S.M.; Triwahyono S.; Jalil A.A.; Aziz M.A.A.; Fatah N.A.A.; Teh L.P.
刊名: Journal of CO2 Utilization
ISSN: 22129820
出版年: 2016
卷: 13
起始页码: 71
结束页码: 80
语种: 英语
英文关键词: Basicity ; Hydrogen production ; Mesostructured silica nanoparticles ; Nickel-loading method ; Particles size
Scopus关键词: Alkalinity ; Catalyst activity ; Catalysts ; Deposition ; Electrolytes ; Electron spin resonance spectroscopy ; Hydrogen production ; Nanoparticles ; Nickel ; Silica ; Surface defects ; Alkaline electrolytes ; Carbon deposition ; Mesostructured silica ; Metal-support interactions ; Nickel loading ; Particles sizes ; Preparation method ; Silica nanoparticles ; Carbon dioxide
英文摘要: A series of Ni/mesostructured silica nanoparticles (NiM) catalysts from an electrolyzed Ni precursor were prepared by in-situ (NiM-IS), impregnation (NiM-IM), and physical mixing (NiM-PM) methods for CO2 reforming of CH4. N2 physisorption indicated that all preparation methods decreased the surface area and pore volume of the mesostructured silica nanoparticles (MSN) which may be attributed to the blockage of the pores by the deposition of NiO particles onto the MSN support. The XRD and H2-TPR analyses indicated that the in-situ method dispersed smaller Ni0 crystallites and exhibited a stronger metal-support interaction compared to the other methods. IR results indicated that the presence of an alkaline electrolyte during the introduction of Ni promoted sequential desilication-substitution of MSN, forming Si-O-Ni. CO2 adsorbed IR and ESR spectroscopies showed that NiM-IS possessed a higher basicity and more defect structures compared to NiM-IM and NiM-PM, owing to the abundant silanol groups and the formation of metal-deficient Ni2O3. At 800 °C, the CH4 and CO2 conversions occur in the order of NiM-IM (CH4 = 45.6 %, CO2 = 52.4%)
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/52930
Appears in Collections:影响、适应和脆弱性

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Recommended Citation:
Sidik S.M.,Triwahyono S.,Jalil A.A.,et al. Tailoring the properties of electrolyzed Ni/mesostructured silica nanoparticles (MSN) via different Ni-loading methods for CO2 reforming of CH4[J]. Journal of CO2 Utilization,2016-01-01,13
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