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Elsevier, Chemical Engineering Journal, 1-3(95), p. 251

DOI: 10.1016/s1385-8947(03)00082-2

Elsevier, Chemical Engineering Journal, 2-3(91), p. 133-142

DOI: 10.1016/s1385-8947(02)00146-8

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New time-dependent Monte Carlo algorithm designed to model three-phase batch reactor processes: applications on 2,4-dinitro-toluene hydrogenation on Pd/C catalysts

Journal article published in 2003 by Giampaolo Barone ORCID, Dario Duca
This paper is available in a repository.
This paper is available in a repository.

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Abstract

The hydrogenation of 2,4-dinitro-toluene on a Pd/C catalyst was employed as a test reaction to simulate, by the time-dependent Monte Carlo method, processes occurring in a three-phase batch reactor working at isobar and isotherm conditions. A new time-dependent Monte Carlo algorithm, including an original subroutine useful to reduce the time of the simulations, was developed and implemented in Fortran language. The paper describes the flowchart of the code together with the main technical details and the involved physical and chemical models.Computational characteristics, such as the simulated time to reach surface steady state conditions and the effects of the catalyst morphology are presented. Correlations between simulated and experimental data are summarized and current mechanistic hypotheses criticized.