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Gasification of coal-derived chars in synthesis gas mixtures under intraparticle mass-transfer-controlled conditions

机译:在粒子内传质控制条件下合成气混合物中煤衍生焦炭的气化

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摘要

A model 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.ududThe model presented is applied under conditions where intraparticle mass transfer is rate-controlling. 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 model 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.ududThe 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 critically reviewed.
机译:已经建立了一个模型来描述气体混合物中煤衍生的焦炭的准稳态气化,其中反应物二氧化碳和蒸汽以及气化产物一氧化碳和氢气都存在。因此,这些条件反映了大多数实际气化系统中发现的情况。 ud ud所提出的模型适用于粒子内传质是速率控制的条件。颗粒内的热传递被忽略。鉴于气化反应不等式,从含尘气体模型的连续极限推导了质量通量方程。这些通量方程式与强非线性Langmuir-Hinshelwood动力学相结合,用于气化反应。该模型考虑了焦炭颗粒燃烧过程中扩散和对流渗透率参数的局部变化以及反应表面积的变化。 ud ud各种相关传质参数,气化温度和压力的影响,并讨论了焦炭粒径对气化行为的影响。在当前模型与现有模型之间进行比较,并对各种建模方法进行了严格审查。

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