The alteration of the performance of field-aged Pd-based TWCs towards CO and C3H6 oxidation
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Iljeong Heo | I. Nam | J. Choung | Gwon-Koo Yeo | Pyung Soon Kim | Y. Song | Chi-bum In
[1] J. Niemantsverdriet. Spectroscopy in Catalysis: An Introduction , 2010 .
[2] S. Oh,et al. Enhancement effect of water on oxidation reactions over commercial three-way catalyst , 2008 .
[3] D. Weng,et al. Thermal ageing of Pt on low-surface-area CeO2-ZrO2-La2O3 mixed oxides : Effect on the OSC performance , 2008 .
[4] A. M. Efstathiou,et al. The effect of Fe on the catalytic behavior of model Pd-Rh/CeO2-Al2O3 three-way catalyst , 2007 .
[5] Jun Wang,et al. Influence of Pd Morphology and Support Surface Area on Redox Ability of Pd/Ce0.67Zr0.33O2 under CO−He Pulse and Transient CO−O2 Measurements , 2007 .
[6] M. Moreno,et al. Characterization of Pd-CeOx interaction on α-Al2O3 support , 2007 .
[7] Hyuk Jae Kwon,et al. Effects of catalyst aging on the activity and selectivity of commercial three-way catalysts , 2007 .
[8] A. M. Efstathiou,et al. Effects of Pd particle size on the rates of oxygen back-spillover and CO oxidation under dynamic oxygen storage and release measurements over Pd/CeO2 catalysts , 2007 .
[9] I. Nam,et al. Role of cerium in promoting the stability of CuHM catalyst against HCl to reduce NO with NH3 , 2006 .
[10] Takashi Minami,et al. Sintering inhibition mechanism of platinum supported on ceria-based oxide and Pt-oxide–support interaction , 2006 .
[11] D. Murzin,et al. An investigation of a new regeneration method of commercial aged three-way catalysts , 2006 .
[12] A. M. Efstathiou,et al. Role of P-containing species in phosphated CeO2 in the deterioration of its oxygen storage and release properties , 2006 .
[13] A. M. Efstathiou,et al. Reactivation of an aged commercial three-way catalyst by oxalic and citric acid washing. , 2006, Environmental science & technology.
[14] J. Fierro,et al. TWC deactivation by lead: A study of the Rh/CeO2 system , 2006 .
[15] J. Fierro,et al. Effect of mileage on the deactivation of vehicle-aged three-way catalysts , 2005 .
[16] C. Costa,et al. Dynamics of oxygen storage and release on commercial aged Pd-Rh three-way catalysts and their characterization by transient experiments , 2004 .
[17] A. M. Efstathiou,et al. Effects of the CePO4 on the oxygen storage and release properties of CeO2 and Ce0.8Zr0.2O2 solid solution , 2004 .
[18] C. Au,et al. Defective structure, oxygen mobility, oxygen storage capacity, and redox properties of RE-based (RE = Ce, Pr) solid solutions , 2004 .
[19] R. Keiski,et al. Effect of ageing atmosphere on the deactivation of Pd/Rh automotive exhaust gas catalysts: catalytic activity and XPS studies , 2004 .
[20] A. M. Efstathiou,et al. Effects of calcination temperature on the stability of CePO4 detected in vehicle-aged commercial three-way catalysts , 2004 .
[21] Sotiris E. Pratsinis,et al. Flame spray synthesis of Pd/Al2O3 catalysts and their behavior in enantioselective hydrogenation , 2004 .
[22] M. Fernández-García,et al. Role of the state of the metal component on the light-off performance of Pd-based three-way catalysts , 2004 .
[23] Luhua Xu,et al. The thermal stability and catalytic performance of Ce-Zr promoted Rh-Pd/γ-Al2O3 automotive catalysts , 2004 .
[24] Paolo Fornasiero,et al. Automotive catalytic converters: current status and some perspectives , 2003 .
[25] J. Vohs,et al. An Examination of Sulfur Poisoning on Pd/Ceria Catalysts , 2002 .
[26] N. Guilhaume,et al. Characterisation of ceria–zirconia solid solutions after hydrothermal ageing , 2001 .
[27] V. Perrichon,et al. Study of the Reducibility of Pt or Pd on Ceria–Zirconia Catalysts by XANES Measured at the Ce LIII Edge and Magnetic Susceptibility Measurements , 2001 .
[28] C. Yeh,et al. Temperature-Programmed Reduction Study on Calcination of Nano-Palladium , 2001 .
[29] J. Kašpar,et al. Effects of the nature of the reducing agent on the transient redox behavior of NM/Ce0.68Zr0.32O2 (NM = Pt, Pd, and Rh) , 2001 .
[30] R. Heck,et al. The effects of sulfur & ceria on the activity of automotive Pd/Rh catalysts , 2001 .
[31] M. Pijolat,et al. Thermal stability of Pd or Pt loaded Ce0.68Zr0.32O2 and Ce0.50Zr0.50O2 catalyst materials under oxidising conditions , 2001 .
[32] Geng Zhang,et al. Design of advanced automotive exhaust catalysts , 2000 .
[33] Raquel Ferret,et al. Thermal aging of Pd/Pt/Rh automotive catalysts under a cycled oxidizing–reducing environment , 2000 .
[34] Gbmm Guy Marin,et al. Competing reactions in three-way catalytic converters : modelling of the NOx conversion maximum in the light-off curves under net oxidising conditions , 2000 .
[35] J. Kašpar,et al. On the rate determining step in the reduction of CeO2–ZrO2 mixed oxides , 1999 .
[36] G. Graham,et al. Characterization of model automotive exhaust catalysts: Pd on ceria and ceria–zirconia supports , 1999 .
[37] G. Graham,et al. High-Temperature-Aging-Induced Encapsulation of Metal Particles by Support Materials: Comparative Results for Pt, Pd, and Rh on Cerium–Zirconium Mixed Oxides , 1999 .
[38] J. Botas,et al. Influence of water and hydrocarbon processed in feedstream on the three-way behaviour of platinum−alumina catalysts , 1997 .
[39] Grigorios C. Koltsakis,et al. CATALYTIC AUTOMOTIVE EXHAUST AFTERTREATMENT , 1997 .
[40] Zhicheng Hu,et al. Design of a novel Pd three-way catalyst: Integration of catalytic functions in three dimensions , 1996 .
[41] Dangrong R. Liu,et al. Electron microprobe characterization of phosphorus containing deposits on used automotive catalyst surfaces , 1993 .
[42] P. Schmitz,et al. An X-ray photoelectron spectroscopy investigation of palladium in automotive catalysts , 1992 .
[43] R. Dictor,et al. Influence of ceria on alumina-supported rhodium: Observations of rhodium morphology made using FTIR spectroscopy , 1989 .
[44] H. Shinjoh,et al. Periodic operation effects in propane and propylene oxidation over noble metal catalysts , 1989 .
[45] J. Moulijn,et al. Temperature-programmed reduction of NiOWO3/Al2O3 Hydrodesulphurization catalysts , 1989 .
[46] J. Z. Shyu,et al. Characterization of Pd/γ-alumina catalysts containing ceria , 1988 .
[47] H. C. Yao,et al. Ceria in automotive exhaust catalysts: I. Oxygen storage , 1984 .
[48] C. Yeh,et al. The sorption of hydrogen on palladium in a flow system , 1983 .