改善工人健康的快速修复:使用工程评估技术的结果。

E J Haas, A B Cecala
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引用次数: 13

摘要

个人可吸入粉尘取样和控制技术的评估一直在向采矿业提供暴露信息,但不一定以一种方式显示如何将技术整合起来,为工人提供组织支持和资源,以减少现场的粉尘来源。作为回应,美国国家职业安全与健康研究所(NIOSH)使用先前开发的helm - cam技术来设计和参与行为/工程合作干预,以启动和加强关于工作中暴露于可吸入二氧化硅粉尘的风险和潜在发生的矿山现场对话,并为减少更高的粉尘来源提供动力和解决方案。该研究涉及来自五个矿区的48名工人,他们同意在2015年4月至2016年9月期间参与研究。在这一系列的纵向干预中,使用helm - cam揭示了可呼吸性硅尘源的几个暴露趋势,在许多情况下,采用简单的快速修复策略来减少其来源。本文重点介绍了几个特定的已确定的粉尘来源,这些粉尘可以通过基本的工程修复、低成本资源和管理层的支持性沟通来减少,以提醒和吸引工人进行保护性工作实践。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Quick fixes to improve workers' health: Results using engineering assessment technology.

Quick fixes to improve workers' health: Results using engineering assessment technology.

Personal respirable dust sampling and the evaluation of control technologies have been providing exposure information to the mining industry but not necessarily in a way that shows how technology can be integrated to provide organizational support and resources for workers to mitigate dust sources on site. In response, the U.S. National Institute for Occupational Safety and Health (NIOSH) used previously developed Helmet-CAM technology to design and engage in a behavioral/engineering cooperative intervention to initiate and enhance mine site conversations about the risks and potential occurrences of respirable silica dust exposures on the job as well as provide impetus and solutions for mitigating higher sources of dust. The study involved 48 workers from five mine sites, who agreed to participate between April 2015 and September 2016. Using the Helmet-CAM in this series of longitudinal interventions revealed several exposure trends in respirable silica dust sources and, in many cases, simple quick-fix strategies to reduce their sources. This paper focuses on several specific identified sources of dust that were elevated but could be reduced through basic engineering fixes, low-cost resources, and supportive communication from management to remind and engage workers in protective work practices.

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