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Potential Occupational Risks Associated with Pulmonary Toxicity of Carbon Nanotubes

机译:与碳纳米管的肺毒性相关的潜在职业风险

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摘要

Given their remarkable properties, carbon nanotubes (CNTs) have made their way through various industrial and medicinal applications and the overall production of CNTs is expected to grow rapidly in the next few years, thus requiring an additional recruitment of workers. However, their unique applications and desirable properties are fraught with concerns regarding occupational exposure. The concern about worker exposure to CNTs arises from the results of recent animal studies. Short-term and sub-chronic exposure studies in rodents have shown consistent adverse health effects such as pulmonary inflammation, granulomas, fibrosis, genotoxicity and mesothelioma after inhalation or instillation of several types of CNTs. Furthermore, physicochemical properties of CNTs such as dispersion, functionalization and particle size can significantly affect their pulmonary toxicity. Risk estimates from animal studies necessitate implementation of protective measures to limit worker exposure to CNTs. Information on workplace exposure is very limited, however, studies have reported that CNTs can be aerosolized and attain respirable airborne levels during synthesis and processing activities in the workplace. Quantitative risk assessments from sub-chronic animal studies recommend the health-based need to reduce exposures below the recommended exposure limit of 1 µg/m3. Practice of prevention measures including the use of engineering controls, personal protective equipment, health surveillance program, safe handling and use, as well as worker training can significantly minimize worker exposure and improve worker health and safety.
机译:鉴于其卓越的性能,碳纳米管(CNTs)已在各种工业和医学应用中崭露头角,并且预计CNT的整体生产将在未来几年快速增长,因此需要更多的工作人员。然而,它们的独特应用和理想的性能充满了有关职业暴露的担忧。对工人接触碳纳米管的担忧来自最近的动物研究结果。在啮齿类动物中进行的短期和亚慢性暴露研究表明,吸入或滴注几种类型的CNT后,持续存在的不利健康影响,例如肺部炎症,肉芽肿,纤维化,遗传毒性和间皮瘤。此外,CNT的理化特性(例如分散度,功能化和粒径)会显着影响其肺毒性。动物研究的风险估计值需要采取保护措施,以限制工人接触碳纳米管。关于工作场所暴露的信息非常有限,但是,研究报告称,在工作场所的合成和加工活动中,碳纳米管可以被雾化并达到可呼吸的空气中水平。来自亚慢性动物研究的定量风险评估建议,基于健康的需要,应将暴露量降低至建议的暴露极限1 µg / m 3 以下。预防措施的实践,包括使用工程控制,个人防护设备,健康监控程序,安全处理和使用以及工人培训,可以大大减少工人的暴露并改善工人的健康和安全。

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