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首页> 外文期刊>The Annals of occupational hygiene. >Effects of breathing frequency and flow rate on the total inward leakage of an elastomeric half-mask donned on an advanced manikin headform
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Effects of breathing frequency and flow rate on the total inward leakage of an elastomeric half-mask donned on an advanced manikin headform

机译:呼吸频率和流速对戴在高级人体模型头模上的弹性半面罩总向内泄漏的影响

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摘要

Objectives:The objective of this study was to investigate the effects of breathing frequency and flow rate on the total inward leakage (TIL) of an elastomeric half-mask donned on an advanced manikin headform and challenged with combustion aerosols.Methods:An elastomeric half-mask respirator equipped with P100 filters was donned on an advanced manikin headform covered with life-like soft skin and challenged with aerosols originated by burning three materials: wood, paper, and plastic (polyethylene). TIL was determined as the ratio of aerosol concentrations inside (Cin) and outside (Cout) of the respirator (Cin/Cout) measured with a nanoparticle spectrometer operating in the particle size range of 20-200nm. The testing was performed under three cyclic breathing flows [mean inspiratory flow (MIF) of 30, 55, and 85 l/min] and five breathing frequencies (10, 15, 20, 25, and 30 breaths/min). A completely randomized factorial study design was chosen with four replicates for each combination of breathing flow rate and frequency.Results:Particle size, MIF, and combustion material had significant (P 0.001) effects on TIL regardless of breathing frequency. Increasing breathing flow decreased TIL. Testing with plastic aerosol produced higher mean TIL values than wood and paper aerosols. The effect of the breathing frequency was complex. When analyzed using all combustion aerosols and MIFs (pooled data), breathing frequency did not significantly (P = 0.08) affect TIL. However, once the data were stratified according to combustion aerosol and MIF, the effect of breathing frequency became significant (P 0.05) for all MIFs challenged with wood and paper combustion aerosols, and for MIF = 30 l/min only when challenged with plastic combustion aerosol.Conclusions:The effect of breathing frequency on TIL is less significant than the effects of combustion aerosol and breathing flow rate for the tested elastomeric half-mask respirator. The greatest TIL occurred when challenged with plastic aerosol at 30 l/min and at a breathing frequency of 30 breaths/min.
机译:目的:本研究的目的是研究呼吸频率和流速对戴在高级人体模型头模上并受到燃烧气溶胶挑战的弹性半面罩的总内向泄漏(TIL)的影响。装备有P100过滤器的面罩呼吸器戴在先进的人体模型头饰上,该头巾覆盖着逼真的柔软皮肤,并通过燃烧三种材料(木材,纸张和塑料(聚乙烯))产生的气溶胶受到挑战。将TIL确定为使用在20-200nm粒径范围内运行的纳米粒子光谱仪测量的呼吸器内部(Cin)和外部(Cout)的气溶胶浓度之比(Cin / Cout)。该测试是在三种循环呼吸流量[平均吸气流量(MIF)为30、55和85 l / min]和五种呼吸频率(10、15、20、25和30呼吸/ min)下进行的。为呼吸流速和频率的每种组合选择了一个完全随机的因子研究设计,一式四份。结果:无论呼吸频率如何,颗粒大小,MIF和燃烧材料对TIL的影响均显着(P <0.001)。呼吸流量增加可降低TIL。使用塑料气雾剂进行测试所产生的平均TIL值高于木材和纸质气雾剂。呼吸频率的影响是复杂的。当使用所有燃烧气溶胶和MIF(汇总数据)进行分析时,呼吸频率对TIL的影响不显着(P = 0.08)。但是,一旦根据燃烧气溶胶和MIF对数据进行分层,则对于所有受到木材和纸质燃烧气溶胶挑战的MIF,呼吸频率的影响就变得显着(P <0.05),只有在受到塑料挑战时,MIF = 30 l / min结论:呼吸频率对TIL的影响不如被测试的弹性半面罩呼吸器对燃烧气溶胶和呼吸流速的影响显着。当以30 l / min的速度和30次呼吸/分钟的呼吸频率用塑料气雾剂挑战时,最大的TIL发生。

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