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Assessment of the biological effects of welding fumes emitted from metal inert gas welding processes of aluminium and zinc-plated materials in humans

机译:评估铝和镀锌材料的金属惰性气体保护焊接过程中释放的烟气对人体的生物学效应

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摘要

The aim of this study was to investigate biological effects and potential health risks due to two different metal-inert-gas (MIG) welding fumes (MIG welding of aluminium and MIG soldering of zinc coated steel) in healthy humans. In a threefold cross-over design study 12 male subjects were exposed to three different exposure scenarios. Exposures were performed under controlled conditions in the Aachener Workplace Simulation Laboratory (AWSL). On three different days the subjects were either exposed to filtered ambient air, to welding fumes from MIG welding of aluminium, or to fumes from MIG soldering of zinc coated materials. Exposure was performed for 6h and the average fume concentration was 2.5 mg m~(-3). Before, directly after, 1 day after, and 7 days after exposure spirometric and impulse oscillometric measurements were performed, exhaled breath condensate (EBC) was collected and blood samples were taken and analyzed for inflammatory markers. During MIG welding of aluminium high ozone concentrations (up to 250μgm~(-3)) were observed, whereas ozone was negligible for MIG soldering. For MIG soldering, concentrations of high-sensitivity CRP (hsCRP) and factor Ⅷ were significantly increased but remained mostly within the normal range. The concentration of neutrophils increased in tendency. For MIG welding of aluminium, the lung function showed significant decreases in Peak Expiratory Flow (PEF) and Mean Expiratory Flow at 75% vital capacity (MEF 75) 7 days after exposure. The concentration of ristocetin cofactor was increased. The observed increase of hsCRP during MIG-soldering can be understood as an indicator for asymptomatic systemic inflammation probably due to zinc (zinc concentration 1.5 mg m~(-3)). The change in lung function observed after MIG welding of aluminium may be attributed to ozone inhalation, although the late response (7 days after exposure) is surprising.
机译:这项研究的目的是研究健康人类中两种不同的金属惰性气体(MIG)焊接烟雾(铝的MIG焊接和镀锌钢的MIG焊接)引起的生物效应和潜在的健康风险。在一项三重交叉设计研究中,将12名男性受试者暴露于三种不同的暴露场景中。暴露是在Aachener工作场所模拟实验室(AWSL)的受控条件下进行的。在三天的不同时间内,受试者要么暴露于过滤的环境空气中,要么暴露于铝的MIG焊接产生的烟气中,要么暴露于镀锌材料的MIG焊接产生的烟气中。暴露6h,平均烟气浓度为2.5 mg m〜(-3)。在暴露之前,之后,之后1天和7天进行肺活量和脉冲示波法测量,收集呼出气冷凝物(EBC)并采集血样并分析炎症标志物。在铝的MIG焊接过程中,观察到较高的臭氧浓度(高达250μgm〜(-3)),而MIG焊接中的臭氧可以忽略不计。对于MIG焊接,高灵敏度CRP(hsCRP)和Ⅷ因子的浓度显着增加,但大部分保持在正常范围内。中性粒细胞浓度呈上升趋势。对于铝的MIG焊接,暴露后7天肺活量在75%肺活量(MEF 75)时,峰值呼气流量(PEF)和平均呼气流量显着下降。瑞斯托霉素辅助因子的浓度增加。在MIG焊接过程中观察到的hsCRP升高可以被认为是无症状全身炎症的指标,可能是由于锌(锌浓度1.5 mg m〜(-3))引起的。 MIG焊接铝后观察到的肺功能变化可能归因于臭氧的吸入,尽管迟到的反应(暴露后7天)令人惊讶。

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    Institute for Occupational and Social Medicine, RWTH Aachen University, Pauwelsstr, 30, D-52074 Aachen, Germany;

    Institute for Occupational and Social Medicine, RWTH Aachen University, Pauwelsstr, 30, D-52074 Aachen, Germany;

    Institute for Occupational and Social Medicine, RWTH Aachen University, Pauwelsstr, 30, D-52074 Aachen, Germany;

    Institute for Occupational and Social Medicine, RWTH Aachen University, Pauwelsstr, 30, D-52074 Aachen, Germany;

    ISF - Welding and Joining Institute, RWTH Aachen University, Pontstrasse 49, D-52062 Aachen, Germany;

    ISF - Welding and Joining Institute, RWTH Aachen University, Pontstrasse 49, D-52062 Aachen, Germany;

    Institute for Occupational and Social Medicine, RWTH Aachen University, Pauwelsstr, 30, D-52074 Aachen, Germany;

    Institute for Occupational and Social Medicine, RWTH Aachen University, Pauwelsstr, 30, D-52074 Aachen, Germany;

    Institute for Occupational and Social Medicine, RWTH Aachen University, Pauwelsstr, 30, D-52074 Aachen, Germany;

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  • 正文语种 eng
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  • 关键词

    Welding; Zinc; Aluminium; Ozone; Inflammation; hsCRP;

    机译:焊接;锌;铝;臭氧;炎;高敏C反应蛋白;

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