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Calibration and numerical simulation of Nanoparticle Surface Area Monitor (TSI Model 3550 NSAM)

机译:纳米颗粒表面积监测仪的校准和数值模拟(TSI 3550型NSAM)

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TSI Nanoparticle Surface Area Monitor (NSAM) Model 3550 has been developed to measure the nanoparticle surface area deposited in different regions of the human lung. It makes use of an adjustable ion trap voltage to match the total surface area of particles, which are below 100 nm, deposited in tracheobronchial (TB) or alveolar (A) regions of the human lung. In this paper, calibration factors of NSAM were experimentally determined for particles of different materials. Tests were performed using monodisperse (Ag agglomerates and NaCl, 7–100 nm) and polydisperse particles (Ag agglomerates, number count mean diameter below 50 nm). Experimental data show that the currents in NSAM have a linear relation with a function of the total deposited nanoparticle surface area for the different compartments of the lung. No significant dependency of the calibration factors on particle materials and morphology was observed. Monodisperse nanoparticles in the size range where the response function is in the desirable range can be used for calibration. Calibration factors of monodisperse and polydisperse Ag particle agglomerates are in good agreement with each other, which indicates that polydisperse nanoparticles can be used to determine calibration factors. Using a CFD computer code (Fluent) numerical simulations of fluid flow and particle trajectories inside NSAM were performed to estimate response function of NSAM for different ion trap voltages. The numerical simulation results agreed well with experimental results.
机译:TSI纳米颗粒表面积监测器(NSAM)3550型已经开发出来,可以测量沉积在人肺不同区域的纳米颗粒表面积。它利用可调节的离子阱电压来匹配沉积在人肺气管支气管(TB)或肺泡(A)区域中的低于100 nm的粒子的总表面积。本文通过实验确定了不同材料颗粒的NSAM校准因子。使用单分散(Ag团块和NaCl,7–100 nm)和多分散颗粒(Ag团块,数均直径低于50 nm)进行测试。实验数据表明,NSAM中的电流与肺部不同隔室的总沉积纳米颗粒表面积呈线性关系。没有观察到校准因子对颗粒材料和形态的显着依赖性。响应函数在所需范围内的尺寸范围内的单分散纳米颗粒可用于校准。单分散和多分散的银颗粒团聚体的校准因子彼此非常吻合,这表明多分散的纳米颗粒可用于确定校准因子。使用CFD计算机代码(Fluent)对NSAM内部的流体流动和颗粒轨迹进行了数值模拟,以估算NSAM对不同离子阱电压的响应函数。数值模拟结果与实验结果吻合良好。

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