Qi Chaolong, Stanley Nick, Pui David Y H, Kuehn Thomas H
Department of Mechanical Engineering, University of Minnesota, Minneapolis, Minnesota 55455, USA.
Environ Sci Technol. 2008 Jun 1;42(11):4128-32. doi: 10.1021/es703216c.
An automotive cabin air filter's effectiveness for removing airborne particles was determined both in a laboratory wind tunnel and in vehicle on-road tests. The most penetrating particle size for the test filter was approximately 350 nm, where the filtration efficiency was 22.9 and 17.4% at medium and high fan speeds, respectively. The filtration efficiency increased for smaller particles and was 43.9% for 100 nm and 72.0% for 20 nm particles at a medium fan speed. We determined the reduction in passenger exposure to particles while driving in freeway traffic caused by a vehicle ventilation system with a cabin air filter installed. Both particle number and surface area concentration measurements were made inside the cabin and in the surrounding air. At medium fan speed, the number and surface area concentration-based exposure reductions were 65.6 +/- 6.0% and 60.6 +/- 9.4%, respectively. To distinguish the exposure reduction contribution from the filter alone and the remainder of the ventilation system, we also performed tests with and without the filter in place using the surface area monitors. The ventilation system operating in the recirculation mode with the cabin air filter installed provided the maximum protection, reducing the cabin particle concentration exponentially over time and usually taking only 3 min to reach 10 microm2/cm3 (a typical office air condition) under medium fan speed.
通过实验室风洞试验和车辆道路测试,确定了汽车座舱空气滤清器去除空气中颗粒物的有效性。测试滤清器的最易穿透粒径约为350纳米,在中、高风扇速度下,过滤效率分别为22.9%和17.4%。对于更小的颗粒,过滤效率会提高,在中速风扇速度下,100纳米颗粒的过滤效率为43.9%,20纳米颗粒的过滤效率为72.0%。我们确定了在安装了座舱空气滤清器的车辆通风系统作用下,驾驶在高速公路上时乘客接触颗粒物的减少情况。在车厢内部和周围空气中都进行了颗粒数量和表面积浓度测量。在中速风扇速度下,基于颗粒数量和表面积浓度的接触减少率分别为65.6±6.0%和60.6±9.4%。为了区分仅由滤清器以及通风系统其余部分所带来的接触减少贡献,我们还使用表面积监测器,分别在安装和未安装滤清器的情况下进行了测试。安装了座舱空气滤清器且以循环模式运行的通风系统提供了最大程度的保护,随着时间推移,车厢内颗粒浓度呈指数下降,并通常在中速风扇速度下只需3分钟就能达到10平方微米/立方厘米(典型办公室空调环境下的浓度)。