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首页> 外文期刊>Journal of Aerosol Science >A high flow rate, very low pressure drop impactor for inertial separation of ultrafine from accumulation mode particles
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A high flow rate, very low pressure drop impactor for inertial separation of ultrafine from accumulation mode particles

机译:高流量,极低的压降撞击器,用于惯性分离超细颗粒和堆积模式颗粒

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This paper presents the development and evaluation of a high-volume, multiple rectangular (slit) geometry jet impactor. Operating with a preselective inlet that removes particles larger than 2.5 #mu#m in aerodynamic size, the impactor has been designed to separate ultrafine (< 0.15 #mu#m) from the accumulation mode range (0.15 < d_p < 2.5 #mu#m). Particles are accelerated by passing through 10 parallel slits nozzles, each 12.5 cm long by 0.0125 cm wide. The average jet velocity i each rectangular jet is appromately 8500 cm s~(-1). Following acceleration, particles larger than approximately 0.15 #mu#m impact on quartz fiber strips, each 12.5 X 0.5 cm~2, while the aerosol fraction smaller than 0.15 #mu#m penetrates through the outlet of the impactor. The impactor operates at a flow rate 5501 min~(-1) and at a very low pressure drip of 0.020 kPa. The performance of the multi-slit impactor was validated in laboratory and the field tests. Laboratory experiments conducted with the 50% cutpoint of the impactor at 0.15 #mu#m. Field test comparisons between the high-volume multi-slit impactor and the Microorifice Uniform Deposit Impactor (MOUDI) showed that the accumulation and ultrafine mode concentrations of particulate nitrate, sulfate, elemental and organic carbon are in very good agreement (within 10% or less). This impactor has been developed primarily as a separator of ultrafine from accumulation mode particles for use in human exposure studies to concentrated ambient ultrafine aerosols. High-volume collection of size-fractionated particulate matter accomplished by this impactor further enables investigators in the field of environmental health to conduct toxicological studies using ambient accumulation and ultrafine mode particles in vitro as well as by means of intratracheal instillation.
机译:本文介绍了一种大容量,多矩形(狭缝)几何形状喷射冲击器的开发和评估。撞击器采用预选进气口,可去除空气动力学尺寸大于2.5#μm的颗粒,撞击器的设计可将超细颗粒(<0.15#μm)从累积模式范围(0.15

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