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采用不同水分活度估算方法的吸湿增长模型的评估与验证

Assessment and Validation of a Hygroscopic Growth Model with Different Water Activity Estimation Methods.

作者信息

O'Shaughnessy Patrick T, LeBlanc Lawrence, Pratt Alessandra, Altmaier Ralph, Rajaraman Prathish K, Walenga Ross, Lin Ching-Long

机构信息

Occupational & Environmental Health, University of Iowa, Iowa City, Iowa, USA.

Mechanical Engineering, University of Iowa, Iowa City, Iowa, USA.

出版信息

Aerosol Sci Technol. 2020;54(10):1169-1182. doi: 10.1080/02786826.2020.1763247. Epub 2020 May 19.

Abstract

Hygroscopic growth models are currently of interest as aids for targeting the deposition of inhaled drug particles in preferred areas of the lung that will maximize their pharmaceutical effect. Mathematical models derived to estimate hygroscopic growth over time have been previously developed but have not been thoroughly validated. For this study, model validation involved a comparison of modeled values to measured values when the growing droplet had reached equilibrium. A second validation process utilized a novel system to measure the growth of a droplet on a microscope coverslip relative to modeled values when the droplet is undergoing the initial rapid growth phase. Various methods currently used to estimate the water activity of the growing droplet, which influences the droplet growth rate, were also compared. Results indicated that a form of the hygroscopic growth model that utilizes coupled-differential equations to estimate droplet diameter and temperature over time was valid throughout droplet growth until it reached its equilibrium size. Accuracy was enhanced with the use of a polynomial expression to estimate water activity relative to the use of a simplified estimate of water activity based on Raoult's Law. Model accuracy was also improved when constraining the film of salt solution surrounding the dissolving salt core at saturation.

摘要

吸湿增长模型目前备受关注,可作为一种辅助手段,用于确定吸入药物颗粒在肺部特定区域的沉积位置,从而使药物效果最大化。此前已开发出用于估算随时间变化的吸湿增长的数学模型,但尚未得到充分验证。在本研究中,模型验证包括当生长液滴达到平衡时,将模型值与测量值进行比较。第二个验证过程使用了一种新颖的系统,在液滴处于初始快速生长阶段时,测量显微镜盖玻片上液滴的生长情况,并与模型值进行比较。还比较了目前用于估算影响液滴生长速率的生长液滴水活度的各种方法。结果表明,一种利用耦合微分方程来估算液滴直径和随时间变化的温度的吸湿增长模型,在液滴生长直至达到平衡尺寸的整个过程中都是有效的。相对于基于拉乌尔定律的水活度简化估算方法,使用多项式表达式估算水活度可提高准确性。当将溶解盐核周围的盐溶液膜限制在饱和状态时,模型准确性也会提高。

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