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Modeling Wood Gasification in a Counter-current Fixed-Bed Reactor

机译:在逆流固定床反应器中模拟木材气化

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摘要

A one-dimensional,unsteady mathematical model is presented of fixed-bed counter-current wood gasifiers,which couples heat and mass transport with wood drying and devolatilization,char gasification,and combustion of both char and gas-phase species.The model is used to simulate the structure of the reaction fronts and the gasification behavior of a laboratory-scale plant as the reactor throughput and the air-to-wood (or char) weight ratio are varied.It is observed that a wide zone,acting essentially as a countercurrent heat exchanger,separates combustion/gasification from devolatilization/ drying.Moreover,the former zone presents interesting dynamic patterns driven by the highly variable solid/gas heat transfer rates.For a constant air-to-wood weight ratio,the gasification process is improved by increasing the reactor throughput as a result of higher temperatures,in spite of the simultaneous reduction in the amount of char generated from wood devolatilization.In fact,an increase in the air-to-wood (or char) ratio always lowers the efficiency of the gasification process.Finally,good agreement is obtained between predictions and experiments for the axial temperature profiles and the composition of the producer gas.
机译:提出了一种固定床逆流木材气化炉的一维非定常数学模型,该模型将热量和物料的输送与木材的干燥和脱挥发分,炭化气化以及炭和气相物质的燃烧结合在一起。模拟反应前沿的结构和实验室规模工厂的气化行为,因为反应器的通过量和空燃比(或木炭)的重量比均发生变化。逆流换热器,将燃烧/气化与脱挥发分/干燥分离。此外,前一个区域表现出有趣的动态模式,该变化是由固/气传热速率高度可变所驱动的。尽管同时减少了木材挥发过程中产生的焦炭量,但由于高温导致反应器产量增加。木材与木材(或木炭)的比例始终会降低气化过程的效率。最后,在预测和实验之间,轴向温度曲线和生产气体的组成之间取得了很好的一致性。

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