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Evolution of Welding-Fume Aerosols with Time and Distance from the Source

机译:焊烟气溶胶随时间和距离的演变

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摘要

Gas metal arc welding fumes were generated from mild-steel plates and measured near the arc (30 cm), representing first-hand exposure of the welder, and farther away from the source (200 cm), representing second-hand exposure of adjacent workers. Measurements were taken during 1-min welding runs and at subsequent 5-min intervals after the welding process was stopped. Number size distributions were measured in real time. Particle mass distributions were measured using a micro-orifice uniform deposition impactor, and total mass concentrations were measured with polytetrafluorothylene filters. Membrane filters were used for collecting morphology samples for electron microscopy. Average mass concentrations measured near the arc were 45 mg/m3 and 9 mg/m3 at the farther distance. The discrepancy in concentrations at the two distances was attributed to the presence of spatter particles, which were observed only in the morphology samples near the source. As fumes aged over time, mass concentrations at the farther distance decreased by 31% (6.2 mg/m3) after 5 min and an additional 13% (5.4 mg/m3) after 10 min. Particle number and mass distributions during active welding were similar at both distances, indicating similar exposure patterns for welders and adjacent workers. Exceptions were recorded for particles smaller than 50 nm and larger than 3 μm, where concentrations were higher near the arc, indicating higher exposures of welders. These results were confirmed by microscopy analysis. As residence time increased, number concentrations decreased dramatically. In terms of particle number concentrations, second-hand exposures to welding fumes during active welding may be as high as first-hand exposures.
机译:气体金属电弧焊烟气是从低碳钢板上产生的,在电弧附近(30厘米)测量,代表焊工的第一手暴露,离火源较远(200厘米),代表相邻工人的第二次暴露。 。在1分钟的焊接过程中以及焊接过程停止后的5分钟间隔内进行测量。数量大小分布是实时测量的。使用微孔均匀沉积撞击器测量颗粒质量分布,并使用聚四氟乙烯过滤器测量总质量浓度。膜滤器用于收集电子显微镜的形态样品。在电弧附近测得的平均质量浓度为45 mg / m 3 ,在较远的距离处为9 mg / m 3 。两个距离上浓度的差异归因于飞溅粒子的存在,仅在源附近的形态样本中才观察到飞溅粒子。随着烟雾随着时间的流逝老化,更远距离处的质量浓度在5分钟后下降31%(6.2 mg / m 3 ),再增加13%(5.4 mg / m 3 )10分钟后。主动焊接过程中的颗粒数量和质量分布在两个距离上都相似,这表明焊工和相邻工人的暴露方式相似。记录小于50 nm且大于3μm的颗粒的例外情况,其中电弧附近的浓度更高,表明焊工的暴露量更高。这些结果通过显微镜分析得到证实。随着停留时间的增加,数量浓度急剧下降。就颗粒数浓度而言,主动焊接过程中二手烟对焊接烟雾的暴露可能与第一手暴露一样高。

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