Carbon dioxide reforming of methane over mesoporous nickel aluminate/y-alumina composites

来源 :能源化学 | 被引量 : 0次 | 上传用户:flyingship23
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
A series of xNiAl2O4/γ-Al2O3 composites with various Ni contents have been prepared via one-step partial hydrolysis of metal nitrate salts in the absence of surfactants and used for carbon dioxide reforming of methane.The characterization results demonstrated that the NiAl2O4/y-Al2O3 materials possessed mesoporous structures of uniform pore sizes;and the Ni2+ ions were completely reacted with alumina to NiAl2O4 spinel in the matrices using N2 sorption,XRD,TEM,and XPS.The NiAl2O4/γ-Al2O3 materials exhibited excellent catalytic properties and superior long-term stability for carbon dioxide reforming of methane.The effects of Ni content on the intrinsic activities and the amounts of coke disposition of the xNiAl2O4/γ-Al2O3 catalysts were discussed in detail for the carbon dioxide reforming of methane.The results revealed that the Ni particle sizes did not affect the intrinsic activity of metallic Ni,but smaller Ni particles could reduce the rate of coke deposition.
其他文献
Small molecule ladder-type heteroarenes IHBT-2F is designed and synthesized with strong electrondonating and molecular packing properties,where the central unit,fused thienobenzene-thienothiphene (IHBT),is attached with the strong electron-deficient 2-(5,
Platinum (Pt) supported on Zinc (Zn) modified silicalite-1 (S-1) zeolite (denoted as Pt-Zn/S-1) was prepared by using a wetness-impregnation method and applied in the n-hexane aromatization reaction for the first time.Both Lewis and Bronsted acid sites we
High performance supercapacitors coupled with mechanical flexibility are needed to drive flexible and wearable electronics that have anesthetic appeal and multi-functionality.Two dimensional (2D) materials have attracted attention owing to their unique ph
Here we demonstrate the fabrication,electrochemical performance and application of an asymmetric supercapacitor (AS) device constructed with β-Ni(OH)2/MWCNTs as positive electrode and KOH activated honeycomb-like porous carbon (K-PC) derived from banana f
Catalytic conversion of glucose,the most abundant carbohydrate,to chemicals of petroleum origin has great desirability in terms of sustainability and industrial implementation.In this work,we attempted to exploit the vanadium-based catalysts with high ret
The large irreversible capacities of graphene oxide-based anodes hinder commercial applications of GO materials although the high specific capacity of it has been universally accepted.In this paper,GO was treated under alkaline condition and the composite
Last decade witnessed tremendous research and development in the area of photo-electrolytic hydrogen generation using chemically stable nanostructured photo-cathode/anode materials.Due to intimately coupled charge separation and photo-catalytic processes,
It is crucial to develop flexible and wearable electronic devices that have attracted tremendous interest due to their merits on compactness,flexibility and high capacitive properties.Herein we report the continuously ordered macroscopic poly(ionic liquid
Lithium-sulfur batteries are promising next-generation energy storage devices beyond conventional lithium ion batteries.However,it suffers from rapid capacity fading and poor cyclic stability.Here we report a facile in situ sulfur deposition and chemical
Polybenzimidazole containing ether bond (OPBI) was reinforced with silicon carbide whisker (mSiC) modified by 3-aminopropyltriethoxysilane (KH550),and then doped with phosphoric acid (PA) to obtain OPBI/mSiC/PA membranes.These OPBI/mSiC/PA membranes have