Catalytic performance of zinc-supported copper and nickel catalysts in the glycerol hydrogenolysis

来源 :能源化学 | 被引量 : 0次 | 上传用户:kongque168
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
Gas-phase catalytic conversion of glycerol to value added chemicals was investigated over zinc-supported copper and nickel catalysts.The addition of aluminum in the support was also investigated in glycerol conversion and the results indicate an increase in the acidity and adsorption capacity for both copper and nickel catalysts.HRTEM and XRD analysis revealed NiZn alloy formation in the Ni/ZnO catalyst.The XRD patterns of the prepared ZnAl mixed oxide catalysts show the presence of Gahanite phase (ZnAl2O4).In addition,H2 chemisorption and TPR results suggest a strong metal-support interactions (SMSI) effect between Ni and ZnO particles.Bare supports ZnO and ZnAl (Zn/Al=0.5) were investigated in the glycerol conversion and they did not present activity.Copper supported on ZnO and ZnAl mixed oxide (Zn/Al=0.5) was active towards hydroxyacetone formation.Nickel was active in the hydrogenolysis of glycerol both for C-C and C-O bonds cleavage of glycerol producing CH4.Strong metal-support interactions (SMSI) between Ni and ZnO has a remarkable suppression effect on the methanation activity during the glycerol conversion.
其他文献
Over the past decades,two-dimensional (2D) nanomaterials possessing planar layered architecture and unique electronic structures have been being quickly developed,due to their wide potential application in the fields of chemistry,physics,and materials sci
A facile one-pot synthesis of solid polymer electrolytes (SPEs),composed of carbonate terminated poly(ethylene glycol) (CH3O-PEG-IC),poly(ethylene glycol)-block-polystyrene (PEG-b-PS) block copolymer nanoparticles containing a conductive PEG corona,fumed
With wide application of electric vehicles and large-scale in energy storage systems,the requirement of secondary batteries with higher power density and better safety gets urgent.Owing to the merits of high theoretical capacity,relatively low cost and su
Single-atom catalysts (SACs) supported on two-dimensional (2D) materials are highly attractive for maximizing their catalytic activity.However,graphene based SACs are primarily bonded with nitrogen and carbon sites,resulting in poor performance for the ox
Two dimensional halide perovskites are emerging as attractive electroluminescent materials for developing high-performance light-emitting devices owing to their unique structures and/or superior optoelectronic properties.This review begins with an introdu
Flower-like hierarchical three-dimensional NiFe layered double hydroxides hollow microspheres (3D NiFe-LDH HMS), as one kind of novel non-noble metal electrocatalysts, have been fabricated in a template-free route for water oxidation. Both of the concentr
An all-vanadium redox flow battery with Ⅴ(Ⅳ) as the sole parent active species is developed by accessing the VO2+/V3+ redox couple.These batteries,referred to as V4RBs,possess a higher theoretical volumetric capacity than traditional VRBs.Copper ions were
Silicon (Si) has been considered as one of the most promising anode material for the next generation lithium-ion batteries (LIBs) with high energy densities,due to its high theoretical capacity,abundant availability and environmental friendliness.However,
With high theoretical energy density and the natural abundance of S,lithium-sulfur (Li-S) batteries are considered to be the promising next generation high-energy rechargeable energy storage devices.However,issues including electronical insulation of S,th
Low dimensional perovskites have recently attracted much attention due to their vertical growth of crystalline orientation,excellent film morphology,and long-term humidity,light,and heat stability.However,low dimensional perovskites suffer from low power