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Experimental evaluation of personal protection devices against graphite nanoaerosols: fibrous filter media, masks, protective clothing, and gloves.

机译:对石墨纳米气溶胶的个人防护设备的实验评估:纤维过滤介质,口罩,防护服和手套。

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摘要

In this study, different conventional personal protection devices (fibrous filters, cartridges for respirators, protective clothing, and gloves) well qualified for micron particles were tested with graphite nanoparticles ranging from 10 to 100 nm (electrical mobility diameter). For this purpose, two specific test benches were designed: one for filter-based devices which are tested under a controlled air flow and other for gloves and protective clothing based on the through diffusion method. tested filter media the behavior predicted by the theoretical Brownian capture: penetration decreases when particle diameter decreases. No thermal rebound was detected until 10 nm for graphite nanoparticles. Protective clothes were tested by two methods and same trends were obtained. Nonwoven fabrics (air-tight materials) are much more efficient against nanoparticles than cotton and paper. Gloves tested by "through diffusion technique," in static condition seem to efficiently protect against graphite nanoparticles in spite of their important porosity.
机译:在这项研究中,使用10至100 nm(电迁移直径)范围内的石墨纳米颗粒测试了适合用于微米颗粒的各种常规个人防护设备(纤维过滤器,呼吸器滤筒,防护服和手套)。为此,设计了两个特定的测试台:一个用于基于过滤器的设备,这些设备在受控的气流下进行测试,另一个用于通过穿透法的手套和防护服。经过测试的过滤介质的行为由理论上的布朗捕获原理预测:当粒径减小时渗透率降低。直到石墨纳米粒子的10 nm都没有检测到热回弹。通过两种方法对防护服进行了测试,得出了相同的趋势。无纺布(气密材料)对纳米粒子的作用比棉和纸要有效得多。在静态条件下,通过“通过扩散技术”测试的手套尽管具有重要的孔隙率,但似乎仍能有效地防止石墨纳米颗粒的侵害。

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