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Developing an AC Low Voltage Electrostatic Filter For Motorcycle Exhaust System in Reducing Ultrafine Particle Emission

机译:开发用于摩托车排气系统的交流低压静电过滤器,以减少超细颗粒物的排放

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Particulate matters with the diameter less than 0.1 μm, as known as ultrafine particles, are derived by the natural and anthropogenic sources. The ultrafine particle concentration in the ambient air has been increasing sharply due to the combustion processes, such as motor vehicles, cooking, smoking, biomass burning, and many others. Ultrafine particles have been identified as a toxic agent for human health and linked to many diseases. In this study, we developed a new technology of an ultrafine particle filtration system using an AC low voltage 12 Volt for motorcycles. For this purpose, three electrostatic filters: F1, F2, and F3 that were made of aluminum plates were tested under two different frequencies: low-frequency LF - 60 Hz and high-frequency HF - 1300 Hz. The purpose of this study was to obtain an efficient filter for motor particle emissions. There were three standard motorcycles used as the ultrafine particle sources. The concentration of ultrafine particles was measured using a TSI P-Trak Ultrafine Particle Counter Model 8525 in five sampling times. The efficiency of the filter determined as the ratio of the ultrafine particle concentrations emitted by the motorcycle samples before and after being equipped with filters. The highest efficiency, 35%, was found in the lowest gap 0.9 mm, with an LF frequency. Meanwhile, the lowest filter efficiency, 7%, was found in the frequency of HF, with the highest gap 3.6 mm. As a conclusion, the filter efficiency depended on the voltage frequency and the filter gap.
机译:直径小于0.1μm的颗粒物,称为超细颗粒,是由天然和人为来源产生的。由于诸如汽车,烹饪,吸烟,生物质燃烧等许多燃烧过程,环境空气中的超细颗粒物浓度急剧增加。超细颗粒已被确认为对人类健康有毒的物质,并与许多疾病有关。在这项研究中,我们开发了一种使用交流低压12伏特摩托车的超细颗粒过滤系统的新技术。为此,在两个不同的频率下测试了由铝板制成的三个静电过滤器:F1,F2和F3:低频LF-60 Hz和高频HF-1300 Hz。这项研究的目的是获得一种用于电机颗粒排放的高效过滤器。有三种标准的摩托车用作超细颗粒源。使用TSI P-Trak 8525型超细颗粒计数器计数器测量5次采样中的超细颗粒浓度。过滤器的效率取决于摩托车样品在安装过滤器之前和之后排放的超细颗粒浓度的比率。在LF频率为0.9 mm的最小间隙中,发现效率最高,为35%。同时,在HF频率中发现最低的滤波器效率为7%,最大间隙为3.6 mm。总之,滤波器效率取决于电压频率和滤波器间隙。

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