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Can I read Gasification of Coal-derived Chars in Synthesis Gas Mixtures Under Intraparticle Mass-transfer-controlled Conditions on EtoBox?

Gasification of Coal-derived Chars in Synthesis Gas Mixtures Under Intraparticle Mass-transfer-controlled Conditions by A. Bliek; J.C. Lont; W.P.M. van Swaaij is a Engineering article available to read on EtoBox.

What is Gasification of Coal-derived Chars in Synthesis Gas Mixtures Under Intraparticle Mass-transfer-controlled Conditions about?

mode1 has been formulated to describe the quasi-steady-state gasification of coal-derived chars in gas mixtures where both the reactants carbon dioxide and steam, and the gasification products carbon monoxide and hydrogen are present. As such, these conditions reflect the situation found in most practical gasification systems. The mode1 presented is applied under conditions where intraparticle mass transfer is ratecontrolling. Intraparticle heat transfer is neglected. In view of the non-equimolar gasification reactions, the mass flux equations are derived from the continuum limit of the dusty gas model. These flux equations are combined with strongly non-linear Langmuir-Hinshelwood kinetics for the gasification reactions. The mode1 accounts for local variations of the diffusive and convective permeability parameters, as well as variations in the reactive surface area, during burnoff of a char particle. The impact of the various relevant mass-transfer parameters, the gasification temperature and pressure, and the char particle size on the gasification behaviour is discussed. A comparison is made between the present model and existing models. and various modelling approaches are crit

Who reads Gasification of Coal-derived Chars in Synthesis Gas Mixtures Under Intraparticle Mass-transfer-controlled Conditions?

It is typically read by researchers, students, and practitioners in Engineering.

Author
A. Bliek; J.C. Lont; W.P.M. van Swaaij
Publisher
Elsevier Science; Elsevier ; Elsevier Ltd.; Elsevier BV (ISSN 0009-2509)
Published
1986
Language
EN
Field
Engineering (Physical Sciences)