首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Size Distribution and Estimated Respiratory Deposition of Total Chromium, Hexavalent Chromium, Manganese, and Nickel in Gas Metal Arc Welding Fume Aerosols
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Size Distribution and Estimated Respiratory Deposition of Total Chromium, Hexavalent Chromium, Manganese, and Nickel in Gas Metal Arc Welding Fume Aerosols

机译:气体金属电弧焊烟气雾剂中总铬,六价铬,锰和镍的尺寸分布和估计的呼吸沉积

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A laboratory study was conducted to determine the mass of total Cr, Cr(VI), Mn, and Ni in 15 size fractions for mild and stainless steel gas-metal arc welding (GMAW) fumes. Samples were collected using a nano multi orifice uniform deposition impactor (MOUDI) with polyvinyl chloride filters on each stage. The filters were analyzed by inductively coupled plasma mass spectrometry (ICP-MS) and ion chromatography. Limits of detection (LODs) and quantitation (LOQs) were experimentally calculated and percent recoveries were measured from spiked metals in solution and dry, certified welding-fume reference material. The fraction of Cr(VI) in total Cr was estimated by calculating the ratio of Cr(VI) to total Cr mass for each particle size range. Expected, regional deposition of each metal was estimated according to respiratory-deposition models. The weight percent (standard deviation) of Mn in mild steel fumes was 9.2% (6.8%). For stainless steel fumes, the weight percentages were 8.4% (5.4%) for total Cr, 12.2% (6.5%) for Mn, 2.1% (1.5%) for Ni and 0.5% (0.4%) for Cr(VI). All metals presented a fraction between 0.04 and 0.6 mu m. Total Cr and Ni presented an additional fraction <0.03 mu m. On average 6% of the Cr was found in the Cr(VI) valence state. There was no statistical difference between the smallest and largest mean Cr(VI) to total Cr mass ratio (p-value = 0.19), hence our analysis does not show that particle size affects the contribution of Cr(VI) to total Cr. The predicted total respiratory deposition for the metal particles was similar to 25%. The sites of principal deposition were the head airways (7-10%) and the alveolar region (11-14%). Estimated Cr (VI) deposition was highest in the alveolar region (14%).
机译:进行了一项实验室研究,确定了15种尺寸的软钢和不锈钢气焊金属烟(GMAW)烟气中总Cr,Cr(VI),Mn和Ni的质量。在每个阶段使用带有聚氯乙烯过滤器的纳米多孔均匀沉积撞击器(MOUDI)收集样品。过滤器通过电感耦合等离子体质谱法(ICP-MS)和离子色谱法进行分析。通过实验计算出检测限(LOD)和定量(LOQ),并从溶液中的尖峰金属和经认证的干烟气标准焊接材料中测量了回收率。通过计算每个粒度范围的Cr(VI)与总Cr质量之比,可以估算Cr(VI)在总Cr中的比例。预期地,根据呼吸沉积模型估计了每种金属的区域沉积。低碳钢烟中Mn的重量百分比(标准偏差)为9.2%(6.8%)。对于不锈钢烟雾来说,总铬的重量百分比为8.4%(5.4%),锰为12.2%(6.5%),镍为2.1%(1.5%),铬(VI)为0.5%(0.4%)。所有金属的含量都在0.04至0.6微米之间。铬和镍的总含量小于0.03微米。在Cr(VI)价态中平均发现6%的Cr。最小和最大平均Cr(VI)与总Cr质量之比之间没有统计学差异(p值= 0.19),因此我们的分析未显示颗粒大小会影响Cr(VI)对总Cr的贡献。金属颗粒的预计总呼吸沉积类似于25%。主要沉积部位是头部气道(7-10%)和肺泡区域(11-14%)。估计的Cr(VI)沉积在牙槽区域最高(14%)。

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