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Continuous Measurement of Soot and Soluble Organic Fraction Emission from Advanced Powertrain

机译:从先进的动力总成中连续测量烟灰和可溶性有机分数排放

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Particulate matter (PM) emission from vehicles is one of the biggest issues in terms of environmental protection and influence to human body. Thus, a variety of measurement technologies have been developed so far. Currently, a gravimetric method is most commonly used in the automotive industry, partially because it is specified in the regulations. This method uses a combination of a dilution tunnel and a filter that collects the PM from the diluted sample gas with subsequent weighing by a micro balance. However, since this technique is a batch measurement, it is impossible to determine at what point of the emissions test the Soot, SOF(Soluble Organic Fraction), and the total PM are emitted. Thus, the demand for real-time PM measurement under transient test conditions has increased. A fast response flame ionization detector (fast-FID) has been previously shown to detect hydrocarbon-free soot particles utilizing an area accumulation technique of the spike signals that are observed when the fast-FID is fed with soot particles. In this paper, the new technique to measure the Soot and SOF separately and continuously using the differential FID method is explained.
机译:颗粒物质(PM)车辆排放是环境保护和对人体影响最大的问题之一。因此,到目前为止已经开发了各种测量技术。目前,在汽车行业中最常用的重量方法部分是因为它在法规中规定了。该方法使用稀释隧道的组合和从稀释的样品气体中收集PM的过滤器,随后通过微平衡重量。然而,由于该技术是批量测量,因此不可能确定排放的哪个点测试烟灰,SOF(可溶性有机级分),并且排放总PM。因此,在瞬态测试条件下对实时PM测量的需求增加了。先前已经示出了快速响应火焰电离检测器(FAST-FID)以利用当快速填充烟灰颗粒时观察到的尖峰信号的区域累积技术来检测无烃烟灰颗粒。在本文中,解释了使用差分FID法分别和连续测量烟灰和SOF的新技术。

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