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Elemental properties of copper slag and measured airborne exposures at a copper slag processing facility

机译:铜渣的元素特性和在铜渣加工设施中测得的空气中暴露量

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摘要

In 1974, the National Institute for Occupational Safety and Health recommended a ban on the use of abrasives containing >1% silica, giving rise to abrasive substitutes like copper slag. We present results from a National Institute for Occupational Safety and Health industrial hygiene survey at a copper slag processing facility that consisted of the collection of bulk samples for metals and silica; and full-shift area and personal air samples for dust, metals, and respirable silica.Carcinogens, suspect carcinogens, and other toxic elements were detected in all bulk samples, and area and personal air samples. Area air samples identified several areas with elevated levels of inhalable and respirable dust, and respirable silica: quality control check area (236 mg/m3 inhalable; 10.3 mg/m3 respirable; 0.430 mg/m3 silica), inside the screen house (109 mg/m3 inhalable; 13.8 mg/m3 respirable; 0.686 mg/m3 silica), under the conveyor belt leading to the screen house (19.8 mg/m3 inhalable), and inside a conveyor access shack (11.4 mg/m3 inhalable; 1.74 mg/m3 respirable; 0.067 mg/m3 silica). Overall, personal dust samples were lower than area dust samples and did not exceed published occupational exposure limits. Silica samples collected from a plant hand and a laborer exceeded the American Conference of Governmental Industrial Hygienist Threshold Limit Value of 0.025 μg/m3. All workers involved in copper slag processing (n = 5) approached or exceeded the Occupational Safety and Health Administration permissible exposure limit of 10 μg/m3 for arsenic (range: 9.12–18.0 μg/m3).Personal total dust levels were moderately correlated with personal arsenic levels (Rs = 0.70) and personal respirable dust levels were strongly correlated with respirable silica levels (Rs = 0.89). We identified multiple areas with elevated levels of dust, respirable silica, and metals that may have implications for personal exposure at other facilities if preventive measures are not taken. To our knowledge, this is the first attempt to characterize exposures associated with copper slag processing. More in-depth air monitoring and health surveillance is needed to understand occupational exposures and health outcomes in this industry.
机译:1974年,美国国家职业安全与健康研究所建议禁止使用含硅量> 1%的磨料,从而产生了诸如铜渣之类的磨料替代品。我们提供了美国国家职业安全与健康研究所在铜渣加工设施进行的工业卫生调查的结果,该调查包括收集金属和二氧化硅的大批样品;以及灰尘,金属和可吸入二氧化硅的全班区域和个人空气样本。在所有散装样本以及区域和个人空气样本中都检测到了致癌物,可疑致癌物和其他有毒元素。区域空气样本确定了多个可吸入和可吸入粉尘以及可吸入二氧化硅含量较高的区域:质量控制检查区域(可吸入236 mg / m 3 ; 10.3 mg / m 3 可吸入;可过滤室内的0.430 mg / m 3 二氧化硅)(可吸入109 mg / m 3 ;可吸入13.8 mg / m 3 ); 0.686 mg / m 3 二氧化硅),在通向筛房的传送带下(可吸入,为19.8 mg / m 3 ),在传送带通道棚内(11.4 mg / m 3 可吸入; 1.74 mg / m 3 可吸入; 0.067 mg / m 3 二氧化硅)。总体而言,个人粉尘样本低于区域粉尘样本,且未超过公开的职业接触限值。从工厂和工人手中采集的二氧化硅样品超过了美国政府工业卫生学家阈值限值0.025μg/ m 3 。所有从事铜渣加工的工人(n = 5)均达到或超过了美国职业安全与健康管理局对砷的暴露极限10μg/ m 3 (范围:9.12-18.0μg/ m 3 )。个人总粉尘水平与个人砷水平(Rs = 0.70)适度相关,个人可吸入粉尘水平与可吸入二氧化硅水平(Rs = 0.89)高度相关。如果没有采取预防措施,我们确定了多个粉尘,可吸入二氧化硅和金属含量较高的区域,这些区域可能对其他设施的人员暴露有影响。据我们所知,这是表征与铜渣加工相关的暴露量的首次尝试。需要更深入的空气监测和健康监测,以了解该行业的职业暴露和健康状况。

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