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43篇 您的检索式:作者名="Niaei"
    题名 作者 年代 出处 被引量
1LaZn_xFe_(1-x)O_3钙钛矿型纳米催化剂的制备、表征及其甲苯燃烧性能(英文)显示文摘Nanostructured LaFeO3 and substituted LaZnxFe1-xO3(x = 0.01,0.05,0.1,0.2,and 0.3) perovskites were synthesized by the sol-gel auto-combustion method and used in the catalytic combustion of toluene.Their structures and surface properties were investigated by X-ray diffraction,Fourier transmission infrared spectroscopy,BET surface area,and scanning electron microscopy.Characterization data revealed that the total insertion of zinc into LaFeO3 takes place when x ≤ 0.1.However,ZnO segregation occurs to some extent,especially at x > 0.1.The performance of these perovskites was evaluated by toluene combustion.The catalytic activity of the catalysts increased substantially with an increase in zinc substitution.These results can be attributed to the cooperative effect between LaZnxFe1-xO3 and the zinc oxide phases.The relative concentration of these phases determines their oxygen activation ability and reactivity.Seyed Ali HOSSEINI Mohammad Taghi SADEGHI Abdolali ALEMI Aligholi NIAEI Dariush SALARI Leila KAFI-AHMADI 2010催化学报2010,31,7:7
2Ultrasound-assistant preparation of Cu-SAPO-34 nanocatalyst for selective catalytic reduction of NO by NH_3显示文摘The influence of the various preparation methods of Cu-SAPO-34 nanocatalysts on the selective catalytic reduction of NO with NH3 under excess oxygen was studied. Cu-SAPO-34 nanocatalysts were prepared by using four techniques: conventional impregnation(IM),ultrasound-enhanced impregnation(UIM), conventional deposition precipitation(DP) using Na OH and homogeneous deposition precipitation(HDP) using urea. These catalysts were characterized in detail by various techniques such as N2-sorption, XRD, TEM, H2-TPR,NH3-TPD and XPS to understand the catalyst structure, the nature and the dispersed state of the copper species, and the acid sites for NH3 adsorption. All of the nanocatalysts showed high activities for NO removal. However, the activities were different and followed the sequence of Cu-SAPO-34(UIM) > Cu-SAPO-34(HDP) > Cu-SAPO-34(IM) > Cu-SAPO-34(DP).Based on the obtained results, it was concluded that the NO conversion on Cu-SAPO-34 nanocatalysts was mainly related to the high reducibility of the isolated Cu2+ions and Cu O species, the number of the acid sites and the dispersion of Cu O species on SAPO-34.Parvaneh Nakhostin Panahi Ali Niaei Darush Salari Seyed Mahdi Mousavi Gérard Delahay 2015Journal of Environmental Sciences2015,27,9:7
3Photocatalyticdegradation of the herbicide erioglaucine in the presence ofnanosized titanium dioxide : Comparision and modeling ofreaction kinetics 显示文摘Daneshvar N Salari D Niaei A 2006Journal of Environmental Science andHealth Part b-Pesticides Food Contaminants andAgricultural Wastes2006,41,8:1
4Effect of organophosphorous cornpounds as coke inhibitors on coking rate in the pyrolysis of naphtha显示文摘Niaei A Salari D Towfighi J 2008Petroleum Science and Technology2008,26,1618:1
5Peroxi-coagulation degradation of CT Basic Yellow 2 based on carbon-PTFE and carbon nanotube- PTFE electrodes as cathode显示文摘Zarei M D Salari A Niaei 2009Electrochim Acta2009,54,:1
6The combined simulation of heat transfer and pyrolysis reactions in industrial furnace 显示文摘NIAEI A TOWFIGHI J 2004Applied Thermal Engineering2004,,24:1
7Design and optimization of Bi-metallic Ag-ZSM5 catalysts for catalytic oxidation of volatile organic compounds显示文摘Izadkhah B Nabavi S R Niaei A 2012Joumal of Industrial and Engineering Chemistry2012,18,:1
8NO reduc- tion over nanostrueture M-Cu/ZSM-5 ( M: Cr, Mn, Co and Fe)bimetallic catalysts and optimization of catalyst preparation by RSM 显示文摘Nakhostin Panahi P Salari D Niaei A 2013Journal of Industrial and Engi- neering Chemistry2013,19,6:1
9Application of response surface methodology for optimization of peroxi-coagulation of textile dye solution using carbon nanotube-PTFE cathode显示文摘ZAREI M NIAEI A SALARI D 2010J Hazard Mater2010,173,13:1
10Effect of organophosphorous compounds as coke inhibitors on coking rate in the pyrolysis of naphtha显示文摘NIAEI A SALARI D TOWFIGHI J 2008Petroleum Science and Technology2008,26,18:1
11The Photooxidative destruction of basic yellow 2 using UV/S2O8^2- process in a rectangular continuous photoreactor 显示文摘Salari D Niaei A Aber S 2009Journal of Hazardous Material s2009,166,1:1
12Characterization and activity of alkaline earth metals loaded CeO 2 –MO x (M = Mn, Fe) mixed oxides in catalytic reduction of NO显示文摘Seyed Mahdi Mousavi Aligholi Niaei María José Illán Gómez Dariush Salari Parvaneh Nakhostin Panahi Vicente Abaladejo-Fuentes 2014Materials Chemistry and Physics2014,,3:1
13Application of response surface methodology for optimization of peroxi-coagulation of textile dye solution using carbon nanotube-PTFE cathode 显示文摘ZAREI M NIAEI A SALARI D 2010Journal of Hazardous Materials2010,173,13:1
14Muhiobjective optimization of an industrial LPG thermal cracker using a first principles model 显示文摘Nabavi S R Rangaiah G P Niaei A 2009Industrial & Engineering Chemistry Research2009,48,21:1
15Investigation of coke deposition & coke inhibition by organosulfur com- pounds in the pyrolysis of naphtha in the jet stirred re- actor system显示文摘D Salari A Niaei J Towfighi 2006Iranian Journal of Chemical Engineer- ing2006,3,1:1
16NO reduction over nanostruc- ture M-Cu/ZSM-5(M:Cr,Mn,Co and Fe) bimetallic catalysts and optimization of catalyst preparation by RSM 显示文摘Panahi P N Salari D Niaei A 2013Journal of Industri- al and Engineering Chemistry2013,19,6:1
17Coke formation reduction in the steam cracking of naphtha on industrial alloy steels using sulfur- based inhibitors 显示文摘Darioush Salari Aligholi Niaei Mohammad Reza Shoja 2010International Journal of Chemi- cal Reactor Engineering2010,8,:1
18The com- bined simulation of heat transfer and pyrolysis reactions in industrial cracking furnaces 显示文摘Niaei A Towfighi J Sadrameli S M 2004Applied Thermal En- gineering2004,24,:1
19Coke inhibition during naphtha pyrolysis 显示文摘D Salari A Niaei J Towfighi 2009Iranian Journal of Chemical Engineering2009,6,1:1
20The combined simulation of heat transfer and pyrolysis reactions in industrial cracking furnaces显示文摘Niaei A Towfighi J Sadrameli S M 2004Applied Thermal Engineering2004,24,1415:1
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