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Journal ArticleDOI

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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Catalytic Combustion Kinetics: Using a Direct Search Algorithm to Evaluate Kinetic Parameters from Light-Off Curves

TL;DR: In this paper, a method for evaluating the kinetic constrains in a rate expression for catalytic combustion applications using exptl. light-off curves is described, using a transient one-dimensional single channel monolith finite element reactor model to simulate reactor performance.

Design of chemical models for model-based control of exhaust gas emissions

TL;DR: The 4th International Symposium on Modeling of Exhaust-Gas After-Treatment (ISMET) as mentioned in this paper was organized to support the exchange of state-of-the-art modeling and simulation techniques and new approaches among researchers, scientists, and engineers from industry and academia.
Journal ArticleDOI

New Methodology for Transient Engine Rig Experiments for Efficient Parameter Tuning

TL;DR: In this article, an experimental set-up is presented that makes it possible to change the inlet properties of the diesel oxidation catalyst without changing engine load point which results in much faster transients.
Proceedings ArticleDOI

IMC based iterative learning control of DOC temperature during DPF regerneration

TL;DR: Simulation results through high-fidelity GT-Power model are compared with IMC alone method and show that IMC based ILC can have fast and non-overshoot tracking after several iterations.
Journal ArticleDOI

A non-iterative algorithm for a catalyst model

TL;DR: In this article, the non-steady energy and mass balances for a catalytically coated channel passed by a reacting gas flow yield a stiff nonlinear system of differential and algebraic equations, which is very timeconsuming to solve.
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