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线性和径向几何结构下纸基上的溶剂驱动蒸发浓缩

Solvent-pumped evaporation concentration on paper in linear and radial geometries.

作者信息

Syms Richard R A, Wright Steven

机构信息

EEE Department, Imperial College London, Exhibition Road, London SW7 2AZ, United Kingdom.

出版信息

Biomicrofluidics. 2023 Aug 9;17(4):044103. doi: 10.1063/5.0161199. eCollection 2023 Jul.

Abstract

Solvent-pumped evaporation-driven concentration of an initial distribution of solutes on a porous substrate is considered in one and two dimensions. Approximate analytic solutions to the isotropic advection-dispersion equations are first found for a Gaussian kernel and an infinite domain, following the smoothed particle approximation. Analytic solutions for more general initial distributions are then found as sums of Gaussians, and comparison is made with numerical solutions. In each case, initial distributions are advected toward the stagnation point and concentrated. Two-dimensional analysis is then extended to describe anisotropy in permeability and diffusion, and hydrodynamic dispersion. Radial-flow experiments are performed using filter papers and water-soluble dyes. Diffusion coefficients, temperature and humidity profiles, and the evolution of spot distributions are measured. The results confirm minor anisotropy in permeability and diffusion, limited hydrodynamic dispersion, and largely uniform evaporation. Péclet numbers over 2500 are demonstrated. Evaporation-driven concentration provides a mechanism for solute transport over long timescales. Potential applications lie in the design of paper spray microanalytical devices operating by solvent pumping rather than capillary flow.

摘要

研究了溶剂泵送蒸发驱动下溶质在多孔基底上初始分布的一维和二维浓缩情况。首先,采用平滑粒子近似法,针对高斯核和无限域,求出了各向同性平流 - 弥散方程的近似解析解。然后,将更一般初始分布的解析解求为高斯函数之和,并与数值解进行比较。在每种情况下,初始分布都被平流输送到驻点并浓缩。接着,二维分析扩展到描述渗透率、扩散和水动力弥散中的各向异性。使用滤纸和水溶性染料进行了径向流实验。测量了扩散系数、温度和湿度分布以及斑点分布的演变。结果证实了渗透率和扩散中存在轻微各向异性、有限的水动力弥散以及基本均匀的蒸发。证明了佩克莱数超过2500。蒸发驱动浓缩为长时间尺度上的溶质传输提供了一种机制。潜在应用在于设计通过溶剂泵送而非毛细管流动运行的纸喷雾微分析装置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0df/10415022/51b38d1a0381/BIOMGB-000017-044103_1-g001.jpg

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