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Kinetic Study of Carbon Monoxide and Propylene Oxidation on Platinum Catalysts

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This article is published in Industrial & Engineering Chemistry Product Research and Development.The article was published on 1973-12-01. It has received 485 citations till now. The article focuses on the topics: Platinum & Carbon monoxide.

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Crystallite size effects during the catalytic oxidation of propylene on Ptγ-Al2O3

TL;DR: In this article, the reaction kinetics and crystallite size effects during the catalytic oxidation of propylene on Pt γ-Al 2 O 3 were investigated in a reactor-chemisorption apparatus.
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Diffusion limitation effects in the washcoat of a catalytic monolith reactor

TL;DR: In this paper, the authors present numerical simulations of diffusion/reaction in the washcoat of a catalytic monolith reactor with a 1-mm square monolith channel, as revealed by scanning electron microscopy.
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Platinum-rhodium synergism in three-way automotive catalysts

TL;DR: In this paper, the interaction between Pt and Rh in three-way automotive catalysts was investigated by conducting laboratory reactor experiments with both a Pt Rh bimetallic catalyst (prepared by stepwise metal impregnation) and a physical mixture of Pt and rh monometallic catalysts while holding the absolute amount of each of the noble metals constant.
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Shape‐directed platinum nanoparticle synthesis: nanoscale design of novel catalysts

TL;DR: An overview of the recent findings reported since 2009, focusing on methods for shape control as well as the effects of exposed surface facets on select catalytic reactions is provided in this article.
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Mechanistic importance of intermediate N2O + CO reaction in overall NO + CO reaction system. I: Kinetic analysis

TL;DR: In this paper, the steady-state kinetics of the NO + CO reaction based on elementary surface processes were analyzed and it was shown that the rate of the N2O+CO reaction as an intermediate reaction can be two to three orders of magnitude faster than the isolated NO+ CO reaction.
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