Occupational Exposure to Diesel Particulate Matter in Western Australian Mining: A Retrospective Analysis and Challenges to Future Compliance.

3区 综合性期刊
Matthew Oosthuizen, Kerry Staples, Adelle Liebenberg, Kiam Padamsey, Marcus Cattani, Andy McCarthy, Jacques Oosthuizen
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Abstract

De-identified diesel particulate matter (DPM) exposure data (n = 24,459) was obtained from the Western Australian mining regulator to assess compliance with the current Workplace Exposure Standard (WES) of 0.1 mg/m3, measured as submicron elemental carbon, and a proposed limit of 0.01 mg/m3, assessed as respirable elemental carbon. R and R-Studio were used to generate summary statistics comparing compliance to the current and proposed limits, stratified by industry and occupational groups. To examine temporal trends, a zero-adjusted gamma model was used to assess whether expected sample means changed over the past ten years, using commodity and location as covariates. DPM exposures have declined significantly over the past decade, and modelling indicates compliance with the current WES. However, the proposed limit introduces both a lower limit and a different sampling method, which present challenges. The sector most affected by these changes is underground gold mining. Several occupational groups, such as ground/roof support, shotfirer, long hole drill and blast, and production and services, are at highest risk of non-compliance. Meeting future exposure limits will require enhanced control strategies, including, cleaner fuels, reduction or elimination of diesel-powered machinery in underground operations and appropriate and regulated use of respiratory protective equipment when assessing compliance.

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职业暴露于柴油颗粒物质在西澳大利亚矿业:回顾性分析和挑战,以未来的合规。
从西澳大利亚矿业监管机构获得了去识别柴油颗粒物(DPM)暴露数据(n = 24,459),以评估是否符合当前的工作场所暴露标准(WES) 0.1 mg/m3(以亚微米元素碳测量)和建议限值0.01 mg/m3(以可吸入元素碳评估)。R和R- studio被用来生成汇总统计数据,比较符合当前和拟议的限制,按行业和职业群体分层。为了检验时间趋势,使用零调整的伽马模型来评估在过去十年中期望样本均值是否发生变化,使用商品和位置作为协变量。DPM暴露量在过去十年中显著下降,模拟表明符合当前的WES。然而,建议的极限引入了下限和不同的采样方法,这带来了挑战。受这些变化影响最大的行业是地下金矿开采。一些职业群体,如地面/屋顶支持、喷射器、长孔钻孔和爆破以及生产和服务,存在最高的不合规风险。要达到未来的暴露限值,将需要加强控制战略,包括使用更清洁的燃料,减少或消除地下作业中的柴油动力机械,以及在评估遵守情况时适当和规范地使用呼吸防护设备。
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来源期刊
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期刊介绍: International Journal of Environmental Research and Public Health (IJERPH) (ISSN 1660-4601) is a peer-reviewed scientific journal that publishes original articles, critical reviews, research notes, and short communications in the interdisciplinary area of environmental health sciences and public health. It links several scientific disciplines including biology, biochemistry, biotechnology, cellular and molecular biology, chemistry, computer science, ecology, engineering, epidemiology, genetics, immunology, microbiology, oncology, pathology, pharmacology, and toxicology, in an integrated fashion, to address critical issues related to environmental quality and public health. Therefore, IJERPH focuses on the publication of scientific and technical information on the impacts of natural phenomena and anthropogenic factors on the quality of our environment, the interrelationships between environmental health and the quality of life, as well as the socio-cultural, political, economic, and legal considerations related to environmental stewardship and public health. The 2018 IJERPH Outstanding Reviewer Award has been launched! This award acknowledge those who have generously dedicated their time to review manuscripts submitted to IJERPH. See full details at http://www.mdpi.com/journal/ijerph/awards.
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