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Optimisation of a thermophoretic personal sampler for nanoparticle exposure studies

机译:优化热泳个人采样器以进行纳米粒子暴露研究

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摘要

A new Thermal Precipitator (TP) was developed as a personal sampler for nanoparticle exposure studies. Two parallel 20-mm-long plates with different but uniform temperatures were introduced into the TP with an appropriate gap distance, to achieve a uniform temperature gradient along the length of the plates. Particles are thermophoretically deposited on the colder plate in the TP which acts as the substrate. Analytical calculations were carried out to determine an optimal plate gap distance and temperature gradient in the TP. A simulation grid was created from the resulting geometry which was used for numerical modelling with a CFD Software. Results from the simulations showed a uniform deposition of particles up to the size range of about 300 nm for a temperature gradient of 15 K/mm and a 1-mm gap distance, independent of the orientation of the TP during sampling. In contrast to the old TP where up to 32 SEM images of its non-uniform particle deposition had to be evaluated to obtain an average particle size distribution, an evaluation of the uniform deposition with the new TP is much more simplified, remarkably reducing the time and cost of the evaluation, while providing more accurate results.
机译:开发了一种新型的热沉淀器(TP)作为用于纳米颗粒暴露研究的个人采样器。将具有不同但均匀温度的两个平行的20毫米长的板以适当的间隙距离引入TP中,以沿板的长度获得均匀的温度梯度。颗粒通过热电泳法沉积在TP中作为基板的较冷板上。进行了分析计算以确定TP中的最佳板间隙距离和温度梯度。根据生成的几何图形创建一个仿真网格,该网格用于CFD软件进行数值建模。模拟结果表明,对于15 K / mm的温度梯度和1 mm的间隙距离,最大尺寸范围约为300 nm的颗粒均匀沉积,与采样过程中TP的方向无关。与旧的TP相比,必须对其多达32个SEM图像的不均匀颗粒沉积进行评估以获得平均粒度分布,相比之下,使用新TP进行均匀沉积的评估要简单得多,从而显着减少了时间和评估成本,同时提供更准确的结果。

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