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Evaluation of emissions and exposures at workplaces using desktop 3-dimensional printers

机译:使用台式3维打印机评估工作场所的排放和暴露

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摘要

There is a paucity of data on additive manufacturing process emissions and personal exposures in real-world workplaces. Hence, we evaluated atmospheres in four workplaces utilizing desktop "3-dimensional" (3-d) printers [fused filament fabrication (FFF) and sheer] for production, prototyping, or research. Airborne particle diameter and number concentration and total volatile organic compound concentrations were measured using real-time instruments. Airborne particles and volatile organic compounds were collected using time-integrated sampling techniques for off-line analysis. Personal exposures for metals and volatile organic compounds were measured in the breathing zone of operators. All 3-d printers that were monitored released ultrafine and fine particles and organic vapors into workplace air. Particle number-based emission rates (#/min) ranged from 9.4 x 109to4.4 x 1011(n = 9samples)forFFF3-dprintersandfroml.9to3.8 x 109(n = 2 samples) for a sheer 3-d printer. The large variability in emission rate values reflected variability from the printers as well as differences in printer design, operating conditions, and feedstock materials among printers. A custom-built ventilated enclosure evaluated at one facility was capable of reducing particle number and total organic chemical concentrations by 99.7% and 53.2%, respectively. Carbonyl compounds were detected in room air; however, none were specifically attributed to the 3-d printing process. Personal exposure to metals (aluminum, iron) and 12 different organic chemicals were all below applicable NIOSH Recommended Exposure Limit values, but results are not reflective of all possible exposure scenarios. More research is needed to understand 3-d printer emissions, exposures, and efficacy of engineering controls in occupational settings.
机译:在现实世界的工作场所中,关于增材制造过程排放和个人暴露的数据很少。因此,我们使用台式“ 3D”(3-D)打印机[熔融长丝制造(FFF)和透明]进行生产,原型制作或研究,评估了四个工作场所的气氛。使用实时仪器测量空气中的粒径和数量浓度以及挥发性有机化合物的总浓度。使用时间积分采样技术收集空气中的颗粒和挥发性有机化合物,以进行离线分析。在操作员的呼吸区中测量金属和挥发性有机化合物的个人暴露量。所有受监控的3-d打印机都会将超细微粒和有机蒸气释放到工作场所的空气中。对于FFF3-dprinters,基于粒子数的发射速率(#/ min)为9.4 x 109至4.4 x 1011(n = 9个样本),而对于纯粹的3-d打印机,则为1.9至3.8 x 109(n = 2个样本)。排放率值的较大差异反映了打印机的差异以及打印机之间的打印机设计,操作条件和原料的差异。在一个工厂进行评估的定制通风罩能够将颗粒数和总有机化学物浓度分别降低99.7%和53.2%。在室内空气中检测到羰基化合物;但是,没有人专门将其归因于3-d打印过程。个人对金属(铝,铁)和12种不同有机化学品的暴露均低于适用的NIOSH建议的暴露极限值,但结果并未反映所有可能的暴露情况。需要更多的研究来了解3D打印机的排放量,曝光量以及职业环境中工程控制的功效。

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  • 来源
    《Chemical health & safety》 |2019年第2期|19-30|共12页
  • 作者单位

    National Institute for Occupational Safety and Health, Morgantown, WV, USA;

    National Institute for Occupational Safety and Health, Morgantown, WV, USA;

    North-west University, Occupational Hygiene and Health Research Initiative, Private Bag X6001, Potchefst-room, 2520, South Africa;

    National Institute for Occupational Safety and Health, Cincinnati, OH, USA;

    National Institute for Occupational Safety and Health, Morgantown, WV, USA;

    National Institute for Occupational Safety and Health, Morgantown, WV, USA;

    National Institute for Occupational Safety and Health, Morgantown, WV, USA;

    National Institute for Occupational Safety and Health, Cincinnati, OH, USA;

    National Institute for Occupational Safety and Health, Morgantown, WV, USA;

    National Institute for Occupational Safety and Health, Morgantown, WV, USA;

    National Institute for Occupational Safety and Health, Morgantown, WV, USA;

    National Institute for Occupational Safety and Health, Morgantown, WV, USA;

    National Insti tute for Occupational Safety and Health, Morgantown, WV, USA;

    North-West University, Technology Transfer and Inno-vation Support Office, Private Bag X6001, Potchefstroom, 2520, South Africa;

    North-West University, Occupational Hygiene;

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