McCollom Theresa I Szabo, Stebounova Larissa V, Park Jae Hong, Grassian Vicki H, Gonzalez-Pech Natalia I, Peters Thomas M
Department of Occupational and Environmental Health, The University of Iowa, Iowa City, IA.
School of Health Sciences, Purdue University, West Lafayette, IN.
J Aerosol Sci. 2019 Aug;134:72-79. doi: 10.1016/j.jaerosci.2019.04.019.
A high-flow (10 L/min) nanoparticle respiratory deposition (NRD) sampler was designed and evaluated to achieve reduced limits of quantification (LOQs) for metal nanoparticles. The high-flow NRD consists of an inlet, impactor stage, diffusion stage, and a final filter. An impactor stage with 12 nozzles was designed from theory to achieve a cut-off diameter of 300 nm at 50% particle collection efficiency (d). Various depths of 37-mm-diameter polyurethane foam cylinders were tested for the diffusion stage to obtain a collection efficiency curve similar to the deposition of nanoparticles in the human respiratory tract, known as the nanoparticulate matter (NPM) criterion. The objective for the final filter was a collection efficiency of near 100% with minimal pressure drop. The collection efficiencies by size and pressure drops were measured for all NRD sampler components. The final design of the impactor stage nozzle achieved a d of 305 nm. The collection efficiency for the diffusion stage with a depth of 7 cm when adjusted for presence of the impactor was the closest to the NPM curve with a R value of 0.96 and d of 43 nm. Chemical analysis of the metal content for foam affirmed that the high-flow NRD sampler required less sampling time to meet metal LOQs than the 2.5 L/min NRD sampler. The final filter with a modified support pad had a collection efficiency near 100%. The overall pressure drop of the sampler of 8.5 kPa (34 in. HO) could not be handled by commercial personal sampling pumps. Hence the high-flow NRD sampler can be used as an area sampler or without the final filter for collection of nanoparticles.
设计并评估了一种高流量(10 L/分钟)的纳米颗粒呼吸沉积(NRD)采样器,以实现降低金属纳米颗粒的定量下限(LOQ)。高流量NRD采样器由一个入口、冲击器阶段、扩散阶段和一个最终过滤器组成。从理论上设计了一个带有12个喷嘴的冲击器阶段,以在50%颗粒收集效率(d)下实现300纳米的截止直径。对扩散阶段测试了不同深度的37毫米直径聚氨酯泡沫圆柱体,以获得一条与纳米颗粒在人体呼吸道沉积相似的收集效率曲线,即所谓的纳米颗粒物(NPM)标准。最终过滤器的目标是实现接近100%的收集效率且压力降最小。测量了所有NRD采样器组件的尺寸收集效率和压力降。冲击器阶段喷嘴的最终设计实现了305纳米的d值。在考虑冲击器存在的情况下进行调整后,深度为7厘米的扩散阶段的收集效率最接近NPM曲线,R值为0.96,d值为43纳米。对泡沫的金属含量进行化学分析证实,与2.5 L/分钟的NRD采样器相比,高流量NRD采样器达到金属LOQ所需的采样时间更短。带有改进支撑垫的最终过滤器的收集效率接近100%。该采样器8.5 kPa(34英寸水柱)的总压力降无法由商用个人采样泵承受。因此,高流量NRD采样器可作为区域采样器使用,或者不使用最终过滤器来收集纳米颗粒。