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Reduction of nitric oxide in diesel exhaust with the addition of methylamine

机译:添加甲胺减少柴油机尾气中的一氧化氮

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摘要

A chemical gas-phase process capable to reduce the nitric oxide in diesel engine exhaust was studied. In this process, monomethylamine (CH{sub}3NH{sub}2) was added to the exhaust gas in a molar ratio to NO varying between 1:1 and 4:1. Experimentswere conducted in electrically heated quartz reactors in a temperature range of 200℃ to 600℃. Diesel exhaust gas and simulated exhaust gas were used in this experiment. The results showed thorough mixing ofmethylamine into the exhaust effectively breaks NO down into nitrogen and water, enabling more than 80 percent NO reduction in a reactor temperature range of 400℃ to 540℃ and at a molar ratio of 1. On the other hand, imperfect mixing between methylamine and exhaust gases results in excess ammonia and reduced NO decomposition. Consequently, it is suggested that the mixing is a very important factor in this technique. The results also show that the coexisting gases such as carbon monoxide, carbon dioxide, hydrocarbons, and water vapor in the dieselexhaust have no effect on NO reduction by methylamine. However, the presence of oxygen in excess of 10 percent in the exhaust is needed for an 80 percent NOx reduction. Furthermore, the mechanisms of the methylamine process were discussed.
机译:研究了一种能够减少柴油机尾气中一氧化氮的化学气相工艺。在此过程中,将一甲胺(CH{sub}3NH{sub}2)以摩尔比与NO的摩尔比添加到废气中,摩尔比在1:1至4:1之间变化。实验在200°C至600°C的温度范围内在电加热的石英反应器中进行。本实验采用柴油机尾气和模拟尾气。结果表明,将甲胺彻底混合到废气中可有效地将一氧化氮分解成氮气和水,在400°C至540°C的反应器温度范围内,以1的摩尔比,一氧化氮可减少80%以上。另一方面,甲胺和废气之间的不完全混合会导致氨过量并减少 NO 分解。因此,建议混合是该技术中非常重要的因素。结果还表明,柴油尾气中共存的一氧化碳、二氧化碳、碳氢化合物和水蒸气等气体对甲胺还原NO没有影响。然而,废气中氧气含量超过10%是减少80%氮氧化物的必要条件。此外,还讨论了甲胺过程的机理。

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