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Microwave cavity perturbation studies on H-form and Cu ion-exchanged SCR catalyst materials: correlation of ammonia storage and dielectric properties

机译:H型和Cu离子交换SCR催化剂材料的微波腔扰动研究:氨存储和介电性能的关系

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摘要

Ammonia-based selective catalytic reduction (SCR) has become the major control strategy for NOx emissions from light and heavy duty diesel engines. Before reducing NOx on the SCR active material, ammonia storage on the active sites of the catalyst is crucial. The in operando measurement of the dielectric properties of the catalyst material using microwave cavity perturbation is a promising indicator of ammonia loading. In this work, the influence of copper ion-exchange of the zeolite-based SCR material ZSM-5 on the NH3 storage and the dielectric properties is highlighted. The catalyst powder samples were monitored by microwave cavity perturbation as a function of the stored ammonia content at a frequency of approximately 1.2 GHz in a temperature range between 200 and 350 °C. Due to ion exchange, the NH3 storage behavior changes, what could be monitored in the sensitivity of the dielectric permittivity to NH3. The dependence of the complex dielectric permittivity on ammonia loading is decreased by ion exchange, hinting that mostly ammonia storage on Brønsted sites affects the dielectric permittivity. This finding adds new knowledge to the electrical conduction and polarization mechanisms occurring in these zeolite materials.
机译:基于氨的选择性催化还原(SCR)已成为轻型和重型柴油机NOx排放的主要控制策略。在还原SCR活性材料上的NOx之前,氨在催化剂活性部位的存储至关重要。使用微波腔扰动对催化剂材料的介电性能进行操作中的测量是氨负载的有希望的指标。在这项工作中,强调了沸石基SCR材料ZSM-5的铜离子交换对NH3存储和介电性能的影响。在200至350°C的温度范围内,在约1.2 GHz的频率下,通过微波腔扰动来监测催化剂粉末样品随所存储的氨含量的变化。由于离子交换,NH3的存储行为发生了变化,可以在介电常数对NH3的敏感性方面进行监测。离子交换降低了复介电常数对氨负载的依赖性,这表明大部分氨在布朗斯台德位上的存储会影响介电常数。这一发现为这些沸石材料中的电导和极化机理增添了新的知识。

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