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Performance evaluation of full facepiece respirators with cartridges

机译:带滤芯的全面罩呼吸器的性能评估

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摘要

[[abstract]]Full facepiece respirators (FFRs) with charcoal cartridges are very common wearable devices for industrial or military purposes preventing respiratory tract, face, eyes, and mouth from hazards exposure. However, related research for performance evaluation was rare. We aimed to use a self-developed testing system investigating (1) filtration efficiency (FE) of aerosols in charcoal cartridges; (2) breakthrough time of cyclohexane in charcoal cartridges; (3) fit factors (FFs) and (4) protection factors (PFs) of FRRs. The results showed that FE of charcoal cartridges against 0.3 µm of sodium chloride (NaCl) and dioctyl phthalate (DOP) particles under 85 L min–1 were 99.93% and 99.89%, respectively, which did not meet the standard 99.97% regulated for filters such as P100 and HEPA. As for 42.5 L min–1 condition (dual canisters), the FE against NaCl (99.97%) did meet the requirement set for HEPA (99.97%); however, that against DOP (99.95%) failed to meet the standard. In addition, the breakthrough time of 3000ppm cyclohexane was 31 min under 32 L min–1, which was longer than the 30 min standard described in CNS6636 Z2023 and JIS8152. As to the results of fit test among 21 subjects, only 1 failed to meet the requirement (fit factor = 500) and the average of fit factors was 8342 ± 5892. The mean value of protection factors was 112.3 ± 54.6 while 3 users had lower PFs than the assigned protection factor (APF = 50) regulated by Occupational Safety and Health Administration (OSHA). APFs obtained for particles less than 100 nm were smaller than the APF standard regulated by OSHA, indicating APF standards may be overestimated for such particle size. Therefore, users should be aware of potential risks caused by such substances in nano-sized scale (e.g., nanoparticles or viruses) when wearing FFRs.
机译:[[摘要]]带木炭筒的全面罩呼吸器(FFR)是非常常见的可穿戴设备,用于工业或军事用途,可防止呼吸道,面部,眼睛和嘴巴暴露于危险中。但是,有关绩效评估的相关研究很少。我们旨在使用一个自行开发的测试系统来研究(1)木炭盒中气雾剂的过滤效率(FE); (2)木炭筒中环己烷的穿透时间; (3)FRR的拟合因子(FF)和(4)保护因子(PF)。结果表明,在85 L min–1下,木炭滤芯对0.3 µm氯化钠(NaCl)和邻苯二甲酸二辛酯(DOP)颗粒的FE分别为99.93%和99.89%,不符合过滤器规定的99.97%标准例如P100和HEPA。对于42.5 L min-1条件(双罐),针对NaCl的FE达到了99.97%的HEPA要求(99.97%);但是,针对DOP的比例(99.95%)不符合标准。另外,在32 L min-1下,3000ppm环己烷的穿透时间为31分钟,比CNS6636 Z2023和JIS8152中描述的30分钟标准更长。对于21名受试者的适应性测试结果,只有1个不符合要求(适应性因子= 500),平均适应性因子为8342±5892。保护因子的平均值为112.3±54.6,而3个用户的满意度较低PFs超过了美国职业安全与健康管理局(OSHA)规定的保护系数(APF = 50)。对于小于100 nm的颗粒,获得的APF小于OSHA规定的APF标准,这表明APF标准可能被高估了。因此,用户在佩戴FFR时应注意由此类纳米级物质(例如纳米粒子或病毒)引起的潜在风险。

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    Lee, SA;

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