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Nitrogen oxides reduction by carbon monoxide over semi-coke supported catalysts in a simulated rotary reactor: reaction performance under dry conditions

机译:在模拟旋转反应器中,用半焦负载型催化剂在一氧化碳上还原氮氧化物:干燥条件下的反应性能

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摘要

A novel rotary reactor was proposed for nitrogen oxides (NOx) reduction by carbon monoxide (CO) in order to avoid the oxygen inhibition effect. NOx adsorption and reduction were separated into two different zones in the proposed rotary reactor. NOx in the flue gas was adsorbed onto the catalyst surface in the adsorption zone and then reduced by the reducing gas in the reduction zone. The performance of the proposed reaction process was investigated in a simulated rotary reactor. The catalysts used were lab synthesized, Fe and Co co-impregnated over activated semi-coke. The results showed an excellent NOx removal efficiency at 200 and 250 degrees C. However, the NOx reduction efficiencies were always much lower than the removal efficiency. Most of the removed NOx was simply passed from the flue gas to the reducing gas. It is very important to feed a great excess of CO in the reduction zone, since CO tended to be firstly consumed by residual oxygen in the reduction zone and then be involved in the NO + CO reaction. In an in situ DRIFT study on the dynamic NOx adsorption-reduction process, it was found that poor reduction and desorption behavior of the stored nitrates was the bottleneck of the NOx adsorption-reduction process.
机译:提出了一种新颖的旋转反应器,用于通过一氧化碳(CO)还原氮氧化物(NOx),以避免氧气抑制作用。在提出的旋转反应器中,NOx的吸附和还原被分为两个不同的区域。烟道气中的NOx在吸附区被吸附到催化剂表面,然后在还原区被还原气还原。建议的反应过程的性能在模拟旋转反应器中进行了研究。使用的催化剂是实验室合成的,Fe和Co共浸渍在活化的半焦炭上。结果显示在200和250℃下优异的NO x去除效率。然而,NO x的还原效率总是远低于去除效率。大部分去除的NOx只是简单地从烟道气传递到还原气。在还原区中加入大量过量的CO非常重要,因为CO往往先被还原区中的残留氧气消耗,然后再参与NO + CO反应。在对动态NOx吸附还原过程的原位DRIFT研究中,发现所存储硝酸盐的还原和解吸性能差是NOx吸附还原过程的瓶颈。

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