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Modeling And Simulation Of Combined Pyrolysis And Reduction Zone For A Downdraft Biomass Gasifier

机译:向下气流生物质气化炉热解还原区组合的建模与仿真

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摘要

This paper simulates the behavior of a global fixed bed biomass gasification reactor. The pyrolysis zone and reduction zone models are combined to simulate the global process of biomass gasification. The vol-atiles and gases released from the pyrolysis zone were assumed to crack into equivalent amounts of CO, CH_4 and H_2O. It is considered that the volatiles and gases leave the pyrolysis zone instantaneously and enter the reduction zone as initial gas concentrations. The numerical method applied is a Runge-Kutta fourth order method for solution of the pyrolysis zone model and finite differences for the reduction zone model to solve numerically the coupled ordinary differential equations. Simulations are performed for the varying pyrolysis temperature with a heating rate of 25 K/min and constant temperature of 1400 K as the initial reduction zone temperature at the same time. The simulation results for the temperature and concentrations of the gaseous species are in good agreement with published experimental data.
机译:本文模拟了整体固定床生物质气化反应器的行为。结合热解区和还原区模型来模拟生物质气化的整体过程。假定从热解区释放的挥发物和气体裂化成等量的CO,CH_4和H_2O。据认为,挥发物和气体立即离开热解区并以初始气体浓度进入还原区。所采用的数值方法是用于求解热解区模型的Runge-Kutta四阶方法,以及用于还原区模型的有限差分,以数值方式求解耦合的常微分方程。同时以25 K / min的加热速率和1400 K的恒定温度作为初始还原区温度,对变化的热解温度进行模拟。气态物质的温度和浓度的模拟结果与已发布的实验数据非常吻合。

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