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Performance of high flow rate samplers for respirable particle collection.

机译:高流速采样器可吸入颗粒物的性能。

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The American Conference of Governmental Industrial hygienists (ACGIH) lowered the threshold limit value (TLV) for respirable crystalline silica (RCS) exposure from 0.05 to 0.025 mg m(-3) in 2006. For a working environment with an airborne dust concentration near this lowered TLV, the sample collected with current standard respirable aerosol samplers might not provide enough RCS for quantitative analysis. Adopting high flow rate sampling devices for respirable dust containing silica may provide a sufficient amount of RCS to be above the limit of quantification even for samples collected for less than full shift. The performances of three high flow rate respirable samplers (CIP10-R, GK2.69, and FSP10) have been evaluated in this study. Eleven different sizes of monodisperse aerosols of ammonium fluorescein were generated with a vibrating orifice aerosol generator in a calm air chamber in order to determine the sampling efficiency of each sampler. Aluminum oxide particles generated by a fluidized bed aerosol generator were used to test (i) the uniformity of a modified calm air chamber, (ii) the effect of loading on the sampling efficiency, and (iii) the performance of dust collection compared to lower flow rate cyclones in common use in the USA (10-mm nylon and Higgins-Dewell cyclones). The coefficient of variation for eight simultaneous samples in the modified calm air chamber ranged from 1.9 to 6.1% for triplicate measures of three different aerosols. The 50% cutoff size ((50)d(ae)) of the high flow rate samplers operated at the flow rates recommended by manufacturers were determined as 4.7, 4.1, and 4.8 microm for CIP10-R, GK2.69, and FSP10, respectively. The mass concentration ratio of the high flow rate samplers to the low flow rate cyclones decreased with decreasing mass median aerodynamic diameter (MMAD) and high flow rate samplers collected more dust than low flow rate samplers by a range of 2-11 times based on gravimetric analysis. Dust loading inside the high flow rate samplers does not appear to affect the particle separation in either FSP10 or GK2.69. The high flow rate samplers overestimated compared to the International Standards Organization/Comite Europeen de Normalisation/ACGIH respirable convention [up to 40% at large MMAD (27.5 microm)] and could provide overestimated exposure data with the current flow rates. However, both cyclones appeared to be able to provide relatively unbiased assessments of RCS when their flow rates were adjusted.
机译:美国政府工业卫生学家会议(ACGIH)在2006年将可吸入结晶二氧化硅(RCS)的暴露极限限值(0.05)从0.05降低至0.025 mg m(-3)。对于空气中尘埃浓度接近此水平的工作环境如果降低了TLV,则使用当前的标准可呼吸气溶胶采样器采集的样品可能无法提供足够的RCS用于定量分析。对于包含二氧化硅的可吸入粉尘,采用高流速采样设备可以提供足够的RCS,使其高于定量极限,即使对于收集的样品而言,其迁移率也不足。这项研究评估了三种高流速可吸入采样器(CIP10-R,GK2.69和FSP10)的性能。为了确定每个采样器的采样效率,用振动孔口气溶胶发生器在平静的空气室内生成了11种不同尺寸的荧光素铵单分散气溶胶。流化床气溶胶发生器产生的氧化铝颗粒用于测试(i)改良的平静空气室的均匀性,(ii)负载对采样效率的影响以及(iii)灰尘收集的性能美国普遍使用的流量旋风分离器(10毫米尼龙和希金斯-德威尔旋风分离器)。对于三种不同的气雾剂的三次测量,修改后的稳定气室中八个同时采样的变异系数在1.9%至6.1%之间。对于CIP10-R,GK2.69和FSP10,按制造商建议的流速运行的高流速采样器的50%截止尺寸((50)d(ae))为4.7、4.1和4.8微米,分别。随着质量中位数空气动力学直径(MMAD)的减小,高流量采样器与低流量旋风分离器的质量浓度比降低,基于重力法,高流量采样器比低流量采样器收集的灰尘多2-11倍分析。在FSP10或GK2.69中,高流速采样器内的灰尘装载似乎不会影响颗粒分离。与国际标准组织/欧洲标准化委员会/ ACGIH可吸入式公约相比,高流速采样器被高估了(在大型MMAD(27.5微米)情况下高达40%),并且在当前流速下可能会提供高估的暴露数据。但是,当调节其流速时,两个旋风器似乎都能提供相对公正的RCS评估。

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