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Multifluid modeling of the desulfurization process within a bubbling fluidized bed coal gasifier

机译:鼓泡流化床煤气化炉内脱硫过程的多流体建模

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摘要

The desulfurization process to a two-dimensional (2-D) and three-dimensional (3-D) Eulerian-Eulerian computational fluid dynamic (CFD) model of a coal bubbling fluidized gasifier is introduced. The desulfurization process is important for the reduction of harmful SOx emissions; therefore, the development of a CFD model capable of predicting chemical reactions involving desulfurization is key to the optimization of reactor designs and operating conditions. To model the process, one gaseous phase and five particulate phases are included. Devolatilization, heterogeneous, and homogeneous chemical reactions as well as calcination and desulfurization reactions are incorporated. A calcination-only model and a calcination plus desulfurization model are simulated in 2-D and 3-D and the concentrations of SO2 leaving the reactors are compared. The simulated results are assessed against available published experimental data. The influence of the fluidized bed on the desulfurization is also considered.
机译:介绍了鼓泡流化气化炉的二维(2-D)和三维(3-D)欧拉-欧拉计算流体动力学(CFD)模型的脱硫过程。脱硫过程对于减少有害的SOx排放很重要;因此,开发能够预测涉及脱硫的化学反应的CFD模型对于优化反应器设计和运行条件至关重要。为了模拟该过程,包括一个气相和五个颗粒相。掺入了脱挥发分,非均相和均相化学反应以及煅烧和脱硫反应。在2-D和3-D中模拟了仅煅烧模型和煅烧加脱硫模型,并对离开反应器的SO2浓度进行了比较。根据可用的已发布实验数据评估了模拟结果。还考虑了流化床对脱硫的影响。

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