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Toward standardized test methods to determine the effectiveness of filtration media against airborne nanoparticles

机译:建立标准化的测试方法,以确定过滤介质对气载纳米颗粒的有效性

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摘要

The filtration of airborne nanoparticles is an important control technique as the environmental, health, and safety impacts of nanomaterials grow. A review of the literature shows that significant progress has been made on airborne nanoparticle filtration in the academic field in the recent years. We summarize the filtration mechanisms of fibrous and membrane filters; the air flow resistance and filter media figure of merit are discussed. Our review focuses on the air filtration test methods and instrumentation necessary to implement them; recent experimental studies are summarized accordingly. Two methods using monodisperse and polydisperse challenging aerosols, respectively, are discussed in detail. Our survey shows that the commercial instruments are already available for generating a large amount of nanoparticles, sizing, and quantifying them accurately. The commercial self-contained filter test systems provide the possibility of measurement for particles down to 15 nm. Current international standards dealing with efficiency test for filters and filter media focus on measurement of the minimum efficiency at the most penetrating particle size. The available knowledge and instruments provide a solid base for development of test methods to determine the effectiveness of filtration media against airborne nanoparticles down to singledigit nanometer range.
机译:随着纳米材料对环境,健康和安全影响的增长,空气中纳米颗粒的过滤是一项重要的控制技术。文献综述表明,近年来在空气传播纳米颗粒过滤方面在学术领域已取得重大进展。我们总结了纤维和膜过滤器的过滤机理。讨论了空气流动阻力和过滤介质的品质因数。我们的审查重点是实施空气过滤测试方法和必要的仪器;相应地总结了最近的实验研究。详细讨论了分别使用单分散和多分散挑战性气溶胶的两种方法。我们的调查显示,商用仪器已经可以用于生成大量的纳米粒子,对其进行尺寸调整和精确量化。商业自备过滤器测试系统提供了测量15纳米以下颗粒的可能性。当前有关过滤器和过滤器效率测试的国际标准着重于在最大穿透粒度下测量最小效率。可用的知识和仪器为开发测试方法提供了坚实的基础,这些测试方法可确定过滤介质对低至一位数纳米范围的气载纳米颗粒的有效性。

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