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A simulated rotary reactor for NOx reduction by carbon monoxide over Fe/ZSM-5 catalysts

机译:在Fe / ZSM-5催化剂上用一氧化碳还原NOx的模拟旋转反应器

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Carbon monoxide could be used to reduce NOx to N-2 over zeolite catalysts. But the NOx reduction efficiency is highly inhibited by oxygen present in the flue gas. In this research, a rotary reactor was proposed for the treatment of NOx in oxygen-rich flue gases. In the proposed rotary reactor, an adsorption zone and a reduction zone were configured in such a way that the flue gas stream, containing NOx and oxygen, and the reducing gas stream, containing CO, are introduced into the reactor separately. Loaded catalysts were rotated between the two zones to adsorb NOx from the flue gas in the adsorption zone and then reduce the adsorbed NOx by CO in the reduction zone. The performance of the rotary reactor was investigated in a fixed bed reactor loaded with Fe/ZSM-5 catalysts synthesized in the lab, and the dynamic adsorption reduction process was simulated by switching the inlet gas stream. The results showed that the simulated rotary reactor could well remove and reduce NOx from oxygen containing flue gases. NOx removal efficiencies were very stable in the investigated temperature range, i.e., 250-400 degrees C. Higher CO concentration could significantly enhance both NOx removal and reduction efficiencies. The amount of CO slipping into the adsorption zone was very low even though CO is in great excess. In order to explore the reaction mechanism, in situ DRIFT study was performed. It was found that CO could occupy the active Fe sites, promoting NOx desorption and the subsequence NOx removal in the adsorption stage. But the active intermediates for NOx reduction is not effectively formed during CO purging, resulting in a lower NOx reduction efficiency. (C) 2016 Elsevier B.V. All rights reserved.
机译:一氧化碳可用于将沸石上的NOx还原为N-2。但是,烟道气中存在的氧气会极大地抑制NOx的还原效率。在这项研究中,提出了一种旋转反应器来处理富氧烟道气中的NOx。在所提出的旋转反应器中,以如下方式构造吸附区和还原区:将包含NO x和氧的烟气流和包含CO的还原气流分别引入反应器中。负载的催化剂在两个区域之间旋转,以从吸附区域中的烟道气中吸收NOx,然后在还原区域中通过CO还原吸附的NOx。在实验室中合成的装有Fe / ZSM-5催化剂的固定床反应器中研究了旋转反应器的性能,并通过切换入口气流模拟了动态吸附还原过程。结果表明,模拟旋转反应器可以很好地去除和还原含氧烟道气中的NOx。在研究的温度范围内(即250-400摄氏度),NOx去除效率非常稳定。较高的CO浓度可以显着提高NOx去除率和还原效率。即使大量过量的CO,滑入吸附区的CO的量也非常低。为了探索反应机理,进行了原位DRIFT研究。研究发现,CO可以占据Fe的活性位,在吸附阶段促进NOx的解吸和后续的NOx去除。但是在CO净化期间不能有效地形成用于还原NO x的活性中间体,导致较低的NO x还原效率。 (C)2016 Elsevier B.V.保留所有权利。

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