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Determination of the Optimum Removal Efficiency of Fine Particulate Matter Using Activated Carbon Fiber (ACF)

机译:用活性炭纤维测定细颗粒物质的最佳去除效率(ACF)

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摘要

In Korea, concentrations of particulate matter (PM10) are significantly higher in urban railway tunnels (178.1 μg/m3) than in metropolitan areas (49 μg/m3). In railway tunnels in Korea, it was maintained at 3–4 times higher concentration than general atmosphere and platform. Dust generated by trains is scattered at high speed in these tunnels, making filtration difficu therefore, the development of filters that can be maintained in tunnels is required. In the present study, we examined PM adsorption in the laboratory scale using activated carbon fiber (ACF), which has high adsorption and capacity. The ACF depth, velocity of flow, and fine PM concentration in the tunnel were the experimental variables. We compared PM concentrations before and after the filter experiments, and calculated removal efficiency to determine the optimal conditions. Comprehensive examination of the experimental variables and differential pressure showed that the optimal conditions for an ACF specimen were a wind speed of 3.0 m/s and the ACF depth of 400 mm. The average removal efficiency of PM10 was 55.5%, and that of PM2.5 was 36.6%. The reproducibility tests showed that the ACF filter could be washed and reused and is suitable for various places because it is easily maintained.
机译:在韩国,城市铁路隧道(178.1μg/ m3)中颗粒物质(PM10)的浓度明显高于大都市区(49μg/ m3)。在韩国的铁路隧道中,它比普通气氛和平台更高的浓度高3-4倍。在这些隧道中,火车产生的灰尘在高速下散射,过滤难;因此,需要在隧道中维护的过滤器的开发。在本研究中,我们使用具有高吸附和容量的活性炭纤维(ACF)检查了实验室规模的PM吸附。隧道中的ACF深度,流速和微小PM浓度是实验变量。我们在过滤器实验之前和之后比较PM浓度,并计算出效率以确定最佳条件。对实验变量和差压的综合检查表明,ACF样本的最佳条件为3.0米/秒的风速,ACF深度为400毫米。 PM10的平均除去效率为55.5%,PM2.5的均为36.6%。再现性测试表明,可以洗涤和重复洗涤ACF过滤器,适用于各个地方,因为它很容易保持。

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