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小型制造车间焊工、金属工人和旁观者的空气中金属暴露职业调查。

Occupational survey of airborne metal exposures to welders, metalworkers, and bystanders in small fabrication shops.

机构信息

a Cardno ChemRisk , San Francisco , California.

b Cardno ChemRisk , Pittsburgh , Pennsylvania.

出版信息

J Occup Environ Hyg. 2019 Jun;16(6):410-421. doi: 10.1080/15459624.2019.1603389. Epub 2019 May 14.

DOI:10.1080/15459624.2019.1603389
PMID:31084474
Abstract

The objective of this study was to characterize worker exposure to airborne metal and particulate matter in shops where multiple types of metalworking tasks were performed. The sampling strategy included full-shift and task-based personal samples on workers who performed flux-cored arc welding, personal samples on workers performing non-welding metalworking tasks, and area samples near welders, representing bystanders to welding. Size-fractionated particulate matter adjacent to welding activities was measured using real-time monitoring devices. Samples were analyzed for 21 individual metals, of which 8 were frequently detected. Exceedance fractions were calculated based on the distribution of results for each frequently detected metal. Exceedance fractions were <5% for all metals, except manganese (6% of the REL, 55% of the inhalable TLV-TWA and 91% of the respirable TLV-TWA) and iron oxide (10% of the REL and TLV-TWA) for Shop 1 bystander samples, manganese (68% for the inhalable TLV-TWA and 98% of the respirable TLV-TWA) for welder samples, and manganese (35% for the inhalable TLV-TWA and 80% of the respirable TLV-TWA) and iron oxide (12% for the PEL and 23% for the REL and TLV-TWA) for metalworker samples. Particulate matter concentrations measured at distances of 0.9-1.5 m and 2.1-2.7 m from the welder were within the same order of magnitude. The results of this study allow for comparison to health-based exposure limits for select individual components of welding fume with a low to medium degree of censorship.

摘要

本研究的目的是描述在进行多种金属加工任务的车间中,工人接触空气中金属和颗粒物的情况。采样策略包括对进行药芯焊丝电弧焊的工人进行全班和基于任务的个人采样、对进行非焊接金属加工任务的工人进行个人采样,以及在焊工附近进行区域采样,代表焊工的旁观者。使用实时监测设备测量焊接活动附近的分粒径颗粒物。对 21 种个别金属进行了采样分析,其中 8 种金属经常被检测到。根据每个经常检测到的金属的结果分布计算了超标分数。除 Shop1 旁观者样品中的锰(接触 TLV-TWA 的 6%、呼吸性 TLV-TWA 的 55%和可呼吸 TLV-TWA 的 91%)和氧化铁(接触 TLV-TWA 和 TLV-TWA 的 10%)外,所有金属的超标分数均<5%,对于 Shop1 旁观者样品中的锰(呼吸性 TLV-TWA 的 68%和可呼吸 TLV-TWA 的 98%)和焊工样品中的锰(接触 TLV-TWA 的 35%和呼吸性 TLV-TWA 的 80%)和氧化铁(PEL 的 12%和接触 TLV-TWA 和 TLV-TWA 的 23%)。距焊工 0.9-1.5 m 和 2.1-2.7 m 处测量的颗粒物浓度处于相同数量级。本研究的结果允许与健康为基础的焊接烟尘个别成分的暴露限值进行比较,这些成分的审查程度较低至中等。

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