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Microwave-Based Oxidation State and Soot Loading Determination on Gasoline Particulate Filters with Three-Way Catalyst Coating for Homogenously Operated Gasoline Engines

机译:均质汽油机三向催化剂涂层汽油微粒滤清器的微波氧化态及烟尘含量测定

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摘要

Recently, a novel method emerged to determine the oxygen storage degree of three way catalysts (TWC) by a microwave-based method. Up to now, this method has been investigated only in lab-scale reactors or under steady state conditions. This work expands those initial studies. A TWC-coated gasoline particulate filter was investigated in a dynamic engine test bench simulating a typical European driving cycle (NEDC). It could be shown that both the oxygen storage degree and the soot loading can be monitored directly, but not simultaneously due to their competitive effects. Under normal driving conditions, no soot accumulation was observed, related to the low raw emissions and the catalytic coating of the filter. For the first time, the quality factor of the cavity resonator in addition to the resonance frequency was used, with the benefit of less cross sensitivity to inconstant temperature and water. Therefore, a temperature dependent calibration of the microwave signal was created and applied to monitor the oxidation state in transient driving cycles. The microwave measurement mirrors the oxidation state determined by lambda probes and can be highly beneficial in start-stop phases (where lambda-probes do not work) and to determine the oxygen storage capacity (OSC) without unnecessary emissions.
机译:近来,出现了一种新的方法,该方法通过基于微波的方法来确定三元催化剂(TWC)的储氧度。迄今为止,仅在实验室规模的反应器中或在稳态条件下研究了该方法。这项工作扩展了那些初步的研究。在模拟发动机的典型欧洲行驶周期(NEDC)的动态发动机试验台上研究了TWC涂层的汽油微粒过滤器。可以证明,由于它们的竞争作用,可以直接监测储氧度和烟灰负荷,但不能同时监测。在正常行驶条件下,未观察到烟灰积累,这与低原始排放量和过滤器的催化涂层有关。第一次,除了谐振频率外,还使用了腔谐振器的品质因数,其优点是对恒定温度和水的交叉敏感度更低。因此,创建了微波信号的温度相关校准,并将其应用于监视瞬态驱动循环中的氧化状态。微波测量反映了由lambda探针确定的氧化状态,在起止阶段(lambda探针不起作用)和确定氧气存储量(OSC)而不产生不必要的排放方面可能非常有用。

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