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Deagglomeration testing of airborne nanoparticle agglomerates: stability analysis under varied aerodynamic shear and relative humidity conditions

机译:机载纳米颗粒团聚体的解团聚测试:在不同的气动剪切和相对湿度条件下的稳定性分析

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摘要

Occupational exposure to nanomaterial aerosols poses potential health risks to workers at nanotechnology workplaces. Understanding the mechanical stability of airborne nanoparticle agglomerates under varied mechanical forces and environmental conditions is important for estimating their emission potential and the released particle size distributions which in consequence alters their transport and human uptake probability. In this study, two aerosolization and deagglomeration systems were used to investigate the potential for deagglomeration of nanopowder aerosols with different surface hydrophilicity under a range of shear forces and relative humidity conditions. Critical orifices were employed to subject airborne agglomerates to the shear forces induced by a pressure drop. Increasing applied pressure drop were found to be associated with decreased mean particle size and increased particle number concentrations.Rising humidity decreased the deagglomeration tendency as expressed by larger modal particle sizes and lower number concentrations compared to dry conditions. Hydrophilic aerosols exhibited higher sensitivities to changes in humidity than hydrophobic particles. However, the test systems themselves also differed in generated particle number concentrations and size distributions, which in turn altered the responses of created aerosols to humidity changes. The results of the present study clearly demonstrate that a) humidity control is essential for dustiness and deagglomeration testing, b) that (industrial) deagglomeration, e.g. for preparation of aerosol suspensions, can be manipulated by subjecting airborne particles to external energies, and c) that the humidity of workplace air may be relevant when assessing occupational exposure to nanomaterial aerosols.
机译:职业接触纳米材料气溶胶会对纳米技术工作场所的工人构成潜在的健康风险。了解空气传播的纳米颗粒团聚物在各种机械力和环境条件下的机械稳定性对于估算其发射潜能和释放的粒径分布非常重要,从而改变了其运输和人类吸收的可能性。在这项研究中,使用了两种雾化和解团聚系统来研究在一定的剪切力和相对湿度条件下具有不同表面亲水性的纳米粉末气溶胶的解团潜力。关键孔用于使空气中的附聚物经受由压降引起的剪切力。研究发现,增加的压降与平均粒径的减小和颗粒数浓度的增加有关。湿度升高降低了团聚趋势,这表现为与干态相比更大的模态粒径和更低的浓度。亲水性气溶胶比疏水性颗粒对湿度变化表现出更高的敏感性。但是,测试系统本身在生成的粒子数浓度和尺寸分布上也有所不同,从而改变了生成的气溶胶对湿度变化的响应。本研究的结果清楚地表明,a)湿度控制对于粉尘和解聚测试至关重要,b)(工业)解聚,例如对于制备气雾剂悬浮液,可以通过使空气传播的颗粒受到外部能量来控制,并且c)在评估职业性接触纳米材料气雾剂时,工作场所空气的湿度可能是相关的。

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