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Evaluation of environmental filtration control of engineered nanoparticles using the Harvard Versatile Engineered Nanomaterial Generation System (VENGES)

机译:使用哈佛通用工程纳米材料(复兴)对工程纳米粒子环境过滤控制的评价

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摘要

Applying engineering controls to airborne engineered nanoparticles (ENPs) is critical to prevent environmental releases and worker exposure. This study evaluated the effectiveness of two air sampling and six air cleaning fabric filters at collecting ENPs using industrially relevant flame-made engineered nanoparticles generated using a versatile engineered nanomaterial generation system (VENGES), recently designed and constructed at Harvard University. VENGES has the ability to generate metal and metal oxide exposure atmospheres while controlling important particle properties such as primary particle size, aerosol size distribution, and agglomeration state. For this study, amorphous SiO2 ENPs with a 15.4 nm primary particle size were generated and diluted with HEPA-filtered air. The aerosol was passed through the filter samples at two different filtration face velocities (2.3 and 3.5 m/min). Particle concentrations as a function of particle size were measured upstream and downstream of the filters using a specially designed filter test system to evaluate filtration efficiency. Real time instruments (FMPS and APS) were used to measure particle concentration for diameters from 5 to 20,000 nm. Membrane-coated fabric filters were found to have enhanced nanoparticle collection efficiency by 20–46 % points compared to non-coated fabric and could provide collection efficiency above 95 %.
机译:将工程控制应用于空气传播的工程纳米颗粒(ENP)对于防止环境释放和工人暴露至关重要。本研究评估了在哈佛大学最近设计和构建的使用经过多功能的工程纳米材料(Venges),使用工业相关的防火工程纳米粒子来收集两个空气采样和六个空气清洁织物过滤器的有效性。复位具有产生金属和金属氧化物暴露气氛的能力,同时控制重要的颗粒性质,例如初级粒度,气溶胶尺寸分布和附聚态。对于该研究,产生具有15.4nm初级粒度的无定形SiO2 enps并用HEPA过滤的空气稀释。在两个不同的过滤面速度(2.3和3.5米/分钟)下通过过滤器样品通过过滤器样品。用专门设计的过滤测试系统测量滤光器的上游和下游作为粒度的颗粒浓度,以评估过滤效率。使用实时仪器(FMP和AP)测量从5至20,000nm的直径的颗粒浓度。发现膜涂覆的织物过滤器与非涂层织物相比,将纳米颗粒收集效率提高20-46%,可以提供高于95%的收集效率。

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