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首页> 外文期刊>Applied occupational and environmental hygiene >Evaluation of occupational exposure to toxic metals released in the process of aluminum welding.
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Evaluation of occupational exposure to toxic metals released in the process of aluminum welding.

机译:铝焊接过程中职业接触有毒金属的评估。

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摘要

The objective of this study was to evaluate occupational exposure to welding fumes and its elements on aluminum welders in Polish industry. The study included 52 MIG/Al fume samples and 18 TIG/Al samples in 3 plants. Air samples were collected in the breathing zone of welders (total and respirable dust). Dust concentration was determined gravimetrically, and the elements in the collected dust were determined by AAS. Mean time-weighted average (TWA) concentrations of the welding dusts/fumes and their components in the breathing zone obtained for different welding processes were, in mg/m3: MIG/Al fumes mean 6.0 (0.8-17.8), Al 2.1 (0.1-7.7), Mg 0.2 (< 0.1-0.9), Mn 0.014 (0.002-0.049), Cu 0.011 (0.002-0.092), Zn 0.016 (0.002-0.14), Pb 0.009 (0.005-0.025), Cr 0.003 (0.002-0.007), and TIG/Al fumes 0.7 (0.3-1.4), Al 0.17 (0.07-0.50). A correlation has been found between the concentration of the main components and the fume/dust concentrations in MIG/Al and TIG/Al fumes. Mean percentages of the individual components in MIG/Al fumes/dusts were Al: 30 (9-56) percent; Mg: 3 (1-5.6) percent; Mn: 0.2 (0.1-0.3) percent; Cu: 0.2 (< 0.1-1.8) percent; Zn: 0.2 (< 0.1-0.8) percent; Pb: 0.2 (< 0.1-1) percent; Cr: < 0.1 percent. The proportion of the respirable fraction in the fumes and their constituents varied between 10 percent and 100 percent. The results showed that MIG/Al fumes concentration was 1.2 times higher than the American Conference of Governmental Industrial Hygienists (ACGIH) threshold limit value (TLV), and the index of the combined exposure to the determined agents was 2.3 (0.4-8.0), mostly because of high Al2O3 contribution. The background concentrations of the components (ca. 5-10 times lower than those in the breathing zone of the welders) did not exceed the Polish MAC value. The elemental composition of total and respirable fume/dust may differ considerably depending on welding methods, the nature of welding-related operations, and work environment conditions.
机译:这项研究的目的是评估波兰工业中铝焊工对焊接烟雾及其元素的职业暴露。该研究包括3家工厂的52个MIG / Al烟气样品和18个TIG / Al烟气样品。在焊工的呼吸区域中收集了空气样本(全部和可吸入的灰尘)。用重量法测定粉尘浓度,并通过原子吸收光谱法测定收集的粉尘中的元素。不同焊接工艺获得的呼吸区域中的焊接粉尘/烟气及其成分的平均时间加权平均浓度(TWA)为mg / m3:MIG / Al烟气的平均值为6.0(0.8-17.8),Al为2.1(0.1 -7.7),Mg 0.2(<0.1-0.9),Mn 0.014(0.002-0.049),Cu 0.011(0.002-0.092),Zn 0.016(0.002-0.14),Pb 0.009(0.005-0.025),Cr 0.003(0.002- 0.007),TIG / Al烟气0.7(0.3-1.4),Al 0.17(0.07-0.50)。已发现MIG / Al和TIG / Al烟气中主要成分的浓度与烟气/粉尘浓度之间存在相关性。 MIG / Al烟尘/粉尘中各个成分的平均百分比为Al:30(9-56)%;镁:3(1-5.6)%; Mn:0.2(0.1-0.3)%; Cu:0.2%(<0.1-1.8%);锌:0.2(<0.1-0.8)%;铅:0.2(<0.1-1)%;铬:<0.1%。烟雾及其成分中可吸入部分的比例在10%至100%之间变化。结果表明,MIG / Al烟气浓度比美国政府工业卫生学家会议(ACGIH)阈限值(TLV)高1.2倍,确定成分的综合暴露指数为2.3(0.4-8.0),主要是由于Al2O3的高贡献。成分的背景浓度(比焊工呼吸区域的浓度低约5-10倍)未超过波兰MAC值。根据焊接方法,与焊接有关的操作的性质以及工作环境条件,总的和可吸入的烟雾/粉尘的元素组成可能会有很大差异。

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