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Conductometric Soot Sensors: Internally Caused Thermophoresis as an Important Undesired Side Effect

机译:电导率烟尘传感器:内部引起的热泳是一种重要的不良副作用

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摘要

Particulate matter sensors are of interest for application in the exhaust of any combustion processes, especially for automotive aftertreatment systems. Conductometric soot sensors have been serialized recently. They comprise planar interdigital electrodes (IDE) on an insulating substrate. Between the IDEs, a voltage is applied. Soot deposition is accelerated by the resulting electric field due to electrophoresis. With increasing soot deposition, the conductance between the IDE increases. The timely derivative of the conductance can serve as a sensor signal, being a function of the deposition rate. An increasing voltage between the IDE would be useful for detecting low particle exhausts. In the present study, the influence of the applied voltage and the sensor temperature on the soot deposition is investigated. It turned out that the maximum voltage is limited, since the soot film is heated by the resulting current. An internally caused thermophoresis that reduces the rate of soot deposition on the substrate follows. It reduces both the linearity of the response and the sensitivity. These findings may be helpful for the further development of conductometric soot sensors for automotive exhausts, probably also to determine real driving emissions of particulate matter.
机译:颗粒物传感器对于任何燃烧过程的排气中的应用都非常重要,特别是对于汽车后处理系统。电导率烟尘传感器最近已序列化。它们包括在绝缘基板上的平面叉指式电极(IDE)。在IDE之间,施加电压。由于电泳,所产生的电场会加速烟灰沉积。随着碳烟沉积的增加,IDE之间的电导增加。电导率的及时导数可以用作传感器信号,取决于沉积速率。 IDE之间增加的电压对于检测低微粒排放将很有用。在本研究中,研究了施加电压和传感器温度对烟灰沉积的影响。事实证明,最大电压受到限制,因为烟灰膜被所产生的电流加热。随后是内部引起的热泳,该热泳减少了烟灰在基板上的沉积速率。它降低了响应的线性度和灵敏度。这些发现可能有助于进一步开发用于汽车尾气的电导烟尘传感器,也可能有助于确定颗粒物的实际驱动排放。

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