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Simulation and Optimization of Coal Gasification in a Moving-bed Reactor to Produce Synthesis Gas Suitable for Methanol Production Unit

机译:运动床反应器中煤气化的仿真与优化,以生产适用于甲醇生产单元的合成气

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This paper presents process simulation and optimization of coal gasification process in a moving-bed reactor using Pittsburgh No. 8 coal as feed. The system of differential equations for the mass and energy balances was solved using 4th-order Runge-Kutta method and optimized by non-dominated sorting genetic algorithm-II (NSGA-II) method. The simulation was used to predict solid and gas temperature profile and gas composition along the reactor. The simulation results were compared successfully with experimental data relevant to Westfield plant in Scotland. In addition, the effect of operating parameters such as coal-to-oxygen molar ratio, steam-to-oxygen molar ratio, inlet gas temperature, reactor pressure, and oxygen mole fraction in inlet air on amount of synthesis gas (syngas) production, hydrogen to carbon monoxide molar ratio (HCMR) in produced syngas, and coal conversion was investigated. Finally, the reactor performance was optimized to produce the highest syngas production with a HCMR of two using NSGA-II method.
机译:本文介绍了使用匹兹堡第8号煤作为饲料的移动床反应器中煤气化过程的过程仿真和优化。使用4阶径 - 库特拉方法解决了质量和能量余量的微分方程系统,并通过非主导的分类遗传算法-II(NSGA-II)方法进行了优化。模拟用于预测沿反应器的固体和气体温度曲线和气体组成。将模拟结果与苏格兰威斯菲尔德植物相关的实验数据成功进行了比较。此外,煤 - 氧摩尔比的操作参数,蒸汽 - 氧摩尔比,入口气体温度,反应器压力和入口空气中的氧气摩尔分数,诸如合成气(合成气)的量,研究了生产合成气中的氢气与一氧化碳摩尔比(HCMR)和煤转化。最后,优化了反应器性能,以使用NSGA-II方法产生最高的合成气量。

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