Qi Chaolong, Kulkarni Pramod
Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, 1090 Tusculum Ave, MS: R7, Cincinnati, OH, 45226.
Aerosol Sci Technol. 2016;50(11):1145-1154. doi: 10.1080/02786826.2016.1221500. Epub 2016 Sep 2.
A low-flow miniature differential mobility analyzer (mDMA) has been developed for compact field-portable mobility spectrometers to classify the submicrometer aerosol. The mDMA was designed for an ultra-low aerosol flow rate of 0.05 L/min. At a sheath flow rate of 0.2 L/min, the mDMA's upper size limit was estimated to be about 921 nm. The mDMA has a classification zone of 2.54 cm long, an outer diameter of 2.54 cm, and an inner diameter of 1.778 cm. The design allows low-cost fabrication and easy assembly. Tandem DMA (TDMA) measurements were carried out to evaluate the performance of the mDMA. Its transfer function was described using Stolzenburg's model. The experimentally measured transfer function shows close agreement with the theory. The transmission efficiency was comparable to that of the Knutson-Whitby DMA for particles in the range of 10-1000 nm. The mobility resolution was comparable to that of the TSI 3085 nanoDMA at the same aerosol flow rate. The design features and performance of the mDMA make it suitable for compact field portable mobility size spectrometers for measurement of nanoparticles and submicrometer aerosol.
已开发出一种低流量微型差分迁移率分析仪(mDMA),用于紧凑型现场便携式迁移率光谱仪,以对亚微米气溶胶进行分类。该mDMA设计用于0.05 L/min的超低气溶胶流速。在鞘气流速为0.2 L/min时,mDMA的尺寸上限估计约为921 nm。mDMA的分类区长度为2.54 cm,外径为2.54 cm,内径为1.778 cm。该设计允许低成本制造且易于组装。进行了串联DMA(TDMA)测量以评估mDMA的性能。其传递函数使用斯托尔岑堡模型进行描述。实验测量的传递函数与理论显示出密切的一致性。对于10 - 1000 nm范围内的颗粒,传输效率与克努森 - 惠特比DMA相当。在相同气溶胶流速下,迁移率分辨率与TSI 3085纳米DMA相当。mDMA的设计特点和性能使其适用于紧凑型现场便携式迁移率粒径光谱仪,用于测量纳米颗粒和亚微米气溶胶。