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Evaluation of a wearable monitor for measuring real-time diesel particulate matter concentrations in several underground mines

机译:评估用于测量多个地下矿井中实时柴油颗粒物浓度的可穿戴监控器

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摘要

The standard method for determining diesel particulate matter (DPM) exposures in underground metalonmetal mines provides the average exposure concentration for an entire working shift, and it can take weeks to obtain results. This approach is problematic because, although it reports that an overexposure has occurred, it fails to provide critical information about cause or prevention. Conversely, real-time measurement would provide miners with timely information to identify the major factors contributing to overexposures and would allow engineering controls to be deployed immediately. Due to these potential benefits, the National Institute for Occupational Safety and Health (NIOSH) developed a wearable instrument that measures real-time elemental carbon (EC) concentrations (EC is a DPM surrogate) via laser extinction. This instrument was later constructed into a commercial version (Airtec). This article evaluates the Airtec's performance in several underground metalonmetal mines by comparing it to the standard method for determining DPM exposures (NIOSH method 5040). The instrument was found to meet the NIOSH accuracy criteria and to show no statistical difference from NIOSH method 5040 results. In addition, the instrument's measurements were found to be unaffected by dust and humidity.
机译:确定地下金属/非金属矿山中柴油机颗粒物(DPM)暴露量的标准方法提供了整个工作班次的平均暴露浓度,可能需要数周才能得出结果。这种方法存在问题,因为尽管它报告说发生了过度暴露,但是它无法提供有关原因或预防的关键信息。相反,实时测量将为矿工提供及时的信息,以识别导致过度暴露的主要因素,并允许立即部署工程控制。由于这些潜在的好处,美国国家职业安全与健康研究所(NIOSH)开发了一种可穿戴式仪器,该仪器可通过激光消光来测量实时元素碳(EC)浓度(EC是DPM替代品)。该仪器后来被构造成商业版本(Airtec)。本文通过与确定DPM暴露的标准方法(NIOSH方法5040)进行比较,评估了Airtec在多个地下金属/非金属矿山中的性能。发现该仪器符合NIOSH精度标准,与NIOSH方法5040结果无统计学差异。另外,发现仪器的测量不受灰尘和湿度的影响。

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