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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Numerical simulation of flue gas desulfurization characteristics in CFB with bypass ducts
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Numerical simulation of flue gas desulfurization characteristics in CFB with bypass ducts

机译:带旁路管道的循环流化床烟气脱硫特性的数值模拟

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摘要

A new process of flue gas desulfurization in circulating fluidized bed with flue gas bypass ducts is presented, k-ε Model, Discrete Phase Model and Finite-Rate Chemistry Model are proposed to simulate the desulfurization process characteristics in circulating fluidized bed reactor. The proposed model is validated by the comparison of experimental data and simulation results. The results show that the desulfurization reactor with bypass ducts is superior to the reactor without bypass ducts. The reactor with bypass ducts has higher desulfurization efficiencies and lower flow resistances than the reactor without bypass ducts, and it is more suitable for flue gas flow variation. Desulfurization reaction rate is controlled by absorption reaction on sorbent particles surface. When water content and Ca/S ratio increase, desulfurization efficiency of the reactor with bypass ducts increases. When SO2 concentration increases, desulfurization efficiency decreases.
机译:提出了一种具有烟气旁路管道的循环流化床烟气脱硫新工艺,提出了k-ε模型,离散相模型和有限速率化学模型,以模拟循环流化床反应器中的脱硫过程特性。通过比较实验数据和仿真结果验证了所提模型的有效性。结果表明,具有旁路管道的脱硫反应器优于无旁路管道的反应器。具有旁路管道的反应器比没有旁路管道的反应器具有更高的脱硫效率和更低的流阻,并且它更适合于烟气流量的变化。脱硫反应速率通过吸附剂颗粒表面上的吸收反应来控制。当水含量和Ca / S比增加时,带有旁路管道的反应器的脱硫效率会增加。当SO 2浓度增加时,脱硫效率降低。

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