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Theoretical analysis of a method to measure size distributions of solid particles in water by aerosolization

机译:雾化法测量水中固体颗粒尺寸分布的方法的理论分析

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Reliable measurement of the size-resolved number concentration (size distribution) of solid particles dispersed in water or melted ice is of critical importance in many geoscientific observational studies. Because physical and chemical properties of particles can be measured more unambiguously and accurately in rarefied media (air) than in condensed media (water), particle measurement after aerosolization using a nebulizer is a significant method for the observation of solid particles dispersed in water. We propose a mathematical theory for estimating the original size distribution of solid particles in water from the measured size distribution of aerosolized particles. We assume that the size distribution of water droplets produced by a nebulizer is given. The size distribution of solid particles in water can be estimated by solving a system of nonlinear equations. The complexity in solving the equations increases rapidly with the computational resolution of particle size and the assumed maximum number of particles within each droplet. For such a system of equations, we found rigorous error bounds of a true solution using INTLAB, an interval arithmetic package. Our theoretical framework will be useful in many fields in geoscience as a fundamental scheme to quantify solid particles in water. In particular, an application of the proposed theoretical method is shown to be useful for the quantitative observations of the size distribution of black carbon particles in rainwater. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在许多地球科学观测研究中,可靠地测量分散在水或融化冰中的固体颗粒的大小分辨数浓度(大小分布)非常重要。因为在稀薄介质(空气)中比在冷凝介质(水)中可以更明确,更准确地测量颗粒的物理和化学性质,所以使用雾化器雾化后的颗粒测量是观察分散在水中的固体颗粒的重要方法。我们提出了一种数学理论,用于根据测得的雾化颗粒的尺寸分布来估算水中固体颗粒的原始尺寸分布。我们假设给出了雾化器产生的水滴的尺寸分布。水中固体颗粒的尺寸分布可以通过求解非线性方程组来估算。随着粒子大小的计算分辨率和每个液滴中假定的最大粒子数,求解方程的复杂性迅速增加。对于这样的方程式系统,我们使用间隔算术软件包INTLAB找到了真实解的严格误差范围。我们的理论框架作为量化水中固体颗粒的基本方案,将在地球科学的许多领域中发挥作用。特别地,所提出的理论方法的应用被证明对于雨水中黑碳颗粒的尺寸分布的定量观察是有用的。 (C)2015 Elsevier Ltd.保留所有权利。

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