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首页> 外文期刊>Journal of Hazardous Materials >Modeling and simulation of ammonia removal from purge gases of ammonia plants using a catalytic Pd-Ag membrane reactor
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Modeling and simulation of ammonia removal from purge gases of ammonia plants using a catalytic Pd-Ag membrane reactor

机译:使用催化Pd-Ag膜反应器从氨厂吹扫气中去除氨的建模和模拟

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In this work, the removal of ammonia from synthesis purge gas of an ammonia plant has been investigated. Since the ammonia decomposition is thermodynamically limited, a membrane reactor is used for complete decomposition. A double pipe catalytic membrane reactor is used to remove ammonia from purge gas. The purge gas is flowing in the reaction side and is converted to hydrogen and nitrogen over nickel-alumina catalyst. The hydrogen is transferred through the Pd-Ag membrane of tube side to the shell side. A mathematical model including conservation of mass in the tube and shell side of reactor is proposed. The proposed model was solved numerically and the effects of different parameters on the rector performance were investigated. The effects of pressure, temperature, flow rate (sweep ratio), membrane thickness and reactor diameter have been investigated in the present study. Increasing ammonia conversion was observed by raising the temperature, sweep ratio and reducing membrane thickness. When the pressure increases, the decomposition is gone toward completion but, at low pressure the ammonia conversion in the outset of reactor is higher than other pressures, but complete destruction of the ammonia cannot be achieved. The proposed model can be used for design of an industrial catalytic membrane reactor for removal of ammonia from ammonia plant and reducing NO_x emissions.
机译:在这项工作中,已经研究了从氨厂的合成吹扫气中去除氨的方法。由于氨分解受热力学限制,因此使用膜反应器进行完全分解。使用双管催化膜反应器从吹扫气中除去氨。吹扫气体在反应侧流动,并在镍-氧化铝催化剂上转化为氢气和氮气。氢通过管侧的Pd-Ag膜转移到壳侧。提出了一种数学模型,该模型包括反应器管壳侧的质量守恒。对提出的模型进行了数值求解,并研究了不同参数对整流器性能的影响。在本研究中已经研究了压力,温度,流速(扫描比),膜厚度和反应器直径的影响。通过升高温度,吹扫比和减小膜厚度观察到氨转化率增加。当压力增加时,分解接近完成,但是在低压下,反应器开始时的氨转化率高于其他压力,但无法完全破坏氨。提出的模型可用于工业催化膜反应器的设计,以从氨厂中去除氨气并减少NO_x排放。

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