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Anomalous transport of colloids in heterogeneous porous media: a multi-scale statistical theory

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Title: Anomalous transport of colloids in heterogeneous porous media: a multi-scale statistical theory
Authors: Fan, D
Chapman, E
Khan, A
Iacoviello, F
Mikutis, G
Pini, R
Striolo, A
Item Type: Journal Article
Abstract: Hypothesis Transport of suspended colloids in heterogeneous porous media is a multi-scale process that exhibits anomalous behavior and cannot be described by the Fickian dispersion theory. Although many studies have documented colloids’ transport at different length scales, a theoretical basis that links pore- to core-scale observations remains lacking. It is hypothesized that a recently proposed pore-scale statistical kinetic theory is able to capture the results observed experimentally. Experiments We implement a multi-scale approach via conducting core-flooding experiments of colloidal particles in a sandstone sample, simulating particles flowing through a sub-volume of the rock’s digital twin, and developing a core-scale statistical theory for particles’ residence times via upscaling the pore-scale kinetic theory. Experimental and computational results for solute transport are used as benchmark. Findings Based on good agreement across the scales achieved in our investigation, we show that the macroscopically observed anomalous transport is particle-type dependent and stems from particles’ microscopic dispersion and deposition in heterogeneous flow fields. In particular, we reveal that residence-time distributions (i.e., breakthrough curve) obey a closed-form function that encompasses particles’ microscopic dynamics, which allows investigations of a whole transition from pre-asymptotic to asymptotic behavior. The physical insights attained could be useful for interpreting experimental data and designing colloidal tracers.
Issue Date: Jul-2022
Date of Acceptance: 26-Feb-2022
URI: http://hdl.handle.net/10044/1/95518
DOI: 10.1016/j.jcis.2022.02.127
ISSN: 0021-9797
Publisher: Elsevier
Start Page: 94
End Page: 105
Journal / Book Title: Journal of Colloid and Interface Science
Volume: 617
Copyright Statement: © 2022 Elsevier Ltd. All rights reserved. This manuscript is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International Licence http://creativecommons.org/licenses/by-nc-nd/4.0/
Sponsor/Funder: Commission of the European Communities
Funder's Grant Number: 764810
Keywords: Anomalous transport
Colloid
Digital rock
Multi-scale approach
Porous media
Chemical Physics
02 Physical Sciences
03 Chemical Sciences
09 Engineering
Publication Status: Published
Online Publication Date: 2022-03-02
Appears in Collections:Chemical Engineering



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