Bulletin of Electrical Engineering and Informatics
Vol 15, No 4: August 2026

Dimensionless description of non-isothermal fixed-bed catalytic reactors

Gulzukhra Turymbetova (Auezov South Kazakhstan University)
Zhanat Umarova (Auezov South Kazakhstan University)
Meruyert Yurtseven (Tashenev University)
Gamidulla Tileuov (Auezov South Kazakhstan University)
Gaziza Yelbergenova (Auezov South Kazakhstan University)
Ainur Bekzhigitova (Auezov South Kazakhstan University)
Gulayna Beisenova (Auezov South Kazakhstan University)
Mohamed Othman (Universiti Putra Malaysia)



Article Info

Publish Date
01 Aug 2026

Abstract

This paper presents a dimensionless reaction–diffusion–energy model for a non-isothermal fixed-bed reactor. The model integrates chemical kinetics, mass transfer, heat transfer, and wall heat exchange within a unified framework. It is formulated in terms of dimensionless parameters, including the Damköhler, Peclet, Lewis, and Biot numbers, enabling the analysis of coupled transport and reaction processes within a consistent parametric space. To evaluate the stability of operating regimes, an integral energyefficiency index ne is introduced, quantifying the balance between heat generation and heat removal. Numerical results show that increasing the Damkohler number enhances conversion but also intensifies temperature gradients. Higher temperature sensitivity leads to stronger thermal feedback and the formation of pronounced temperature maxima. An optimal operating region (Da=2) is identified, where ne reaches a maximum (0.74–0.76), indicating that maximum conversion does not coincide with maximum energy efficiency. Model validation against data from an industrial phosphine oxidation reactor shows deviations within 5–7%, confirming its predictive capability. The proposed approach can be used for reactor design, optimization, and thermal regime analysis, providing a computationally efficient alternative to more complex models while preserving physical fidelity.

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Journal Info

Abbrev

EEI

Publisher

Subject

Electrical & Electronics Engineering

Description

Bulletin of Electrical Engineering and Informatics (Buletin Teknik Elektro dan Informatika) ISSN: 2089-3191, e-ISSN: 2302-9285 is open to submission from scholars and experts in the wide areas of electrical, electronics, instrumentation, control, telecommunication and computer engineering from the ...