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在使用二氧化硅和非二氧化硅磨料的喷砂作业中接触结晶二氧化硅。

Exposure to crystalline silica in abrasive blasting operations where silica and non-silica abrasives are used.

作者信息

Radnoff Diane L, Kutz Michelle K

机构信息

Occupational Health and Safety Policy, OHS Policy and Program Development, Safe, Fair and Healthy Workplaces, Alberta Human Services, 8th floor, 10808-99 Avenue, Edmonton, Alberta T5K 0G5, Canada;

出版信息

Ann Occup Hyg. 2014 Jan;58(1):19-27. doi: 10.1093/annhyg/met065. Epub 2013 Dec 18.

Abstract

Exposure to respirable crystalline silica is a hazard common to many industries in Alberta but particularly so in abrasive blasting. Alberta occupational health and safety legislation requires the consideration of silica substitutes when conducting abrasive blasting, where reasonably practicable. In this study, exposure to crystalline silica during abrasive blasting was evaluated when both silica and non-silica products were used. The crystalline silica content of non-silica abrasives was also measured. The facilities evaluated were preparing metal products for the application of coatings, so the substrate should not have had a significant contribution to worker exposure to crystalline silica. The occupational sampling results indicate that two-thirds of the workers assessed were potentially over-exposed to respirable crystalline silica. About one-third of the measurements over the exposure limit were at the work sites using silica substitutes at the time of the assessment. The use of the silica substitute, by itself, did not appear to have a large effect on the mean airborne exposure levels. There are a number of factors that may contribute to over-exposures, including the isolation of the blasting area, housekeeping, and inappropriate use of respiratory protective equipment. However, the non-silica abrasives themselves also contain silica. Bulk analysis results for non-silica abrasives commercially available in Alberta indicate that many contain crystalline silica above the legislated disclosure limit of 0.1% weight of silica per weight of product (w/w) and this information may not be accurately disclosed on the material safety data sheet for the product. The employer may still have to evaluate the potential for exposure to crystalline silica at their work site, even when silica substitutes are used. Limited tests on recycled non-silica abrasive indicated that the silica content had increased. Further study is required to evaluate the impact of product recycling on crystalline silica content for non-silica abrasives. Measurement of blaster exposure was challenging in this study as the blasters evaluated conducted this task intermittently throughout the work shift, frequently removing their blasting helmets. In spite of the challenges in accurately measuring blaster exposure, the measurements were still, for the most part, over the 8-h OEL. Further work is required to develop more effective sampling strategies to evaluate blaster exposure over the full work shift when task-based monitoring is not practical.

摘要

接触可吸入结晶二氧化硅是艾伯塔省许多行业常见的危害,在喷砂作业中尤为突出。艾伯塔省职业健康与安全法规要求在进行喷砂作业时,在合理可行的情况下考虑使用二氧化硅替代品。在本研究中,对使用二氧化硅产品和非二氧化硅产品进行喷砂作业时的结晶二氧化硅接触情况进行了评估。还测量了非二氧化硅磨料的结晶二氧化硅含量。所评估的设施是为涂覆金属产品做准备,因此基材对工人接触结晶二氧化硅的影响应该不大。职业采样结果表明,三分之二接受评估的工人可能过度接触可吸入结晶二氧化硅。超过接触限值的测量结果中,约三分之一是在评估时使用二氧化硅替代品的工作场所取得的。使用二氧化硅替代品本身似乎对空气中的平均接触水平影响不大。有许多因素可能导致过度接触,包括喷砂区域的隔离、内务管理以及呼吸防护设备的不当使用。然而,非二氧化硅磨料本身也含有二氧化硅。对艾伯塔省市场上销售的非二氧化硅磨料进行的批量分析结果表明,许多产品所含结晶二氧化硅超过了每重量产品0.1%重量二氧化硅(w/w)的法定披露限值,而且该信息可能未在产品的材料安全数据表中准确披露。即使使用了二氧化硅替代品,雇主仍可能需要评估其工作场所接触结晶二氧化硅的可能性。对回收的非二氧化硅磨料进行的有限测试表明二氧化硅含量有所增加。需要进一步研究以评估产品回收对非二氧化硅磨料结晶二氧化硅含量的影响。在本研究中,测量喷砂工人的接触情况具有挑战性,因为接受评估的喷砂工人在整个工作班次中间歇性地执行这项任务,并且经常摘下喷砂头盔。尽管准确测量喷砂工人的接触情况存在挑战,但大多数测量结果仍超过了8小时职业接触限值。当基于任务的监测不可行时,需要进一步开展工作以制定更有效的采样策略来评估整个工作班次的喷砂工人接触情况。

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