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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Simultaneous removal of NOx and soot particulate from diesel exhaust by in situ catalytic generation and utilisation of N2O
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Simultaneous removal of NOx and soot particulate from diesel exhaust by in situ catalytic generation and utilisation of N2O

机译:通过原位催化生成和N2O的利用从柴油排气中同时除去NOx和烟灰颗粒

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摘要

One of the outstanding challenges in diesel exhaust catalysis is to integrate oxidation chemistry, soot filtration and NOx reduction in a single aftertreatment unit, while avoiding the need for fuel injection to regenerate the filter. Here we show that destruction of trapped soot can be initiated catalytically at 200 degrees C when its oxidation is coupled with non-selective NOx reduction (using NH3 as reductant), which acts as an in-situ source of N2O. In laboratory tests over an extended temperature range (up to 800 degrees C), using supported silver as a catalyst for both non-selective NOx-reduction and soot oxidation, the conversion of immobilised soot to CO2 can be resolved into four consecutive steps as the temperature rises: catalysed oxidation by N2O; non-catalysed oxidation by NO2; catalysed oxidation by O-2; non-catalysed oxidation by O-2. Initial engine tests indicate that the critical first step (C + N2O) can be replicated in a diesel exhaust.
机译:柴油排气催化的出色挑战之一是在单个后处理单元中整合氧化化学,烟灰过滤和NOx,同时避免需要燃料喷射来再生过滤器。 在这里,我们表明,当其氧化与非选择性NOx还原(作为还原剂使用NH 3)偶联时,可以在200摄氏度下催化地在200摄氏度下催化地引发被捕获的烟灰。 在延长温度范围(高达800℃)的实验室测试中,使用负载的银作为非选择性NOx还原和烟灰氧化的催化剂,将固定的烟灰转化为CO 2的连续四个步骤 温度升高:N2O催化氧化; NO2的非催化氧化; o-2催化氧化; O-2的非催化氧化。 初始发动机测试表明,关键第一步(C + N2O)可以在柴油排气中复制。

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