Modeling microplastic transport through porous media : Challenges arising from dynamic transport behavior
Modelling microplastic transport through porous media, such as soils and aquifers, is an emerging research topic, where existing hydrogeological models for (reactive) solute and colloid transport have shown limited effectiveness thus far. This perspective article draws upon recent literature to provide a brief overview of key microplastic transport processes, with emphases on less well-understood processes, to propose potential research directions for efficiently modeling microplastic transport through the porous environment. Microplastics are particulate matter with distinct physicochemical properties. Biogeochemical processes and physical interactions with the surrounding environment cause microplastic properties such as material density, geometry, chemical composition, and DLVO interaction parameters to change dynamically, through complex webs of interactions and feedbacks that dynamically affect transport behavior. Furthermore, microplastic material densities, which cluster around that of water, distinguish microplastics from other colloids, with impactful consequences that are often underappreciated. For example, (near-)neutral material densities cause microplastic transport behavior to be highly sensitive to spatio-temporally varying environmental conditions. The dynamic nature of microplastic properties implies that at environmentally relevant large spatio-temporal scales, the complex transport behavior may be effectively intractable to direct physical modeling. Therefore, efficient modeling may require integrating reduced-complexity physics-constrained models, with stochastic or statistical analyses, supported by extensive environmental data.
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Format: | Article/Letter to editor biblioteca |
Language: | English |
Subjects: | Groundwater aquifers, Microplastic transport, Physical model, Porous media, Soils, |
Online Access: | https://research.wur.nl/en/publications/modeling-microplastic-transport-through-porous-media-challenges-a |
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dig-wur-nl-wurpubs-6388452024-12-18 Yang, Xiaomei Tang, Darrell W.S. Article/Letter to editor Journal of Hazardous Materials 484 (2025) ISSN: 0304-3894 Modeling microplastic transport through porous media : Challenges arising from dynamic transport behavior 2025 Modelling microplastic transport through porous media, such as soils and aquifers, is an emerging research topic, where existing hydrogeological models for (reactive) solute and colloid transport have shown limited effectiveness thus far. This perspective article draws upon recent literature to provide a brief overview of key microplastic transport processes, with emphases on less well-understood processes, to propose potential research directions for efficiently modeling microplastic transport through the porous environment. Microplastics are particulate matter with distinct physicochemical properties. Biogeochemical processes and physical interactions with the surrounding environment cause microplastic properties such as material density, geometry, chemical composition, and DLVO interaction parameters to change dynamically, through complex webs of interactions and feedbacks that dynamically affect transport behavior. Furthermore, microplastic material densities, which cluster around that of water, distinguish microplastics from other colloids, with impactful consequences that are often underappreciated. For example, (near-)neutral material densities cause microplastic transport behavior to be highly sensitive to spatio-temporally varying environmental conditions. The dynamic nature of microplastic properties implies that at environmentally relevant large spatio-temporal scales, the complex transport behavior may be effectively intractable to direct physical modeling. Therefore, efficient modeling may require integrating reduced-complexity physics-constrained models, with stochastic or statistical analyses, supported by extensive environmental data. en application/pdf https://research.wur.nl/en/publications/modeling-microplastic-transport-through-porous-media-challenges-a 10.1016/j.jhazmat.2024.136728 https://edepot.wur.nl/683416 Groundwater aquifers Microplastic transport Physical model Porous media Soils https://creativecommons.org/licenses/by/4.0/ https://creativecommons.org/licenses/by/4.0/ Wageningen University & Research |
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Groundwater aquifers Microplastic transport Physical model Porous media Soils Groundwater aquifers Microplastic transport Physical model Porous media Soils Yang, Xiaomei Tang, Darrell W.S. Modeling microplastic transport through porous media : Challenges arising from dynamic transport behavior |
description |
Modelling microplastic transport through porous media, such as soils and aquifers, is an emerging research topic, where existing hydrogeological models for (reactive) solute and colloid transport have shown limited effectiveness thus far. This perspective article draws upon recent literature to provide a brief overview of key microplastic transport processes, with emphases on less well-understood processes, to propose potential research directions for efficiently modeling microplastic transport through the porous environment. Microplastics are particulate matter with distinct physicochemical properties. Biogeochemical processes and physical interactions with the surrounding environment cause microplastic properties such as material density, geometry, chemical composition, and DLVO interaction parameters to change dynamically, through complex webs of interactions and feedbacks that dynamically affect transport behavior. Furthermore, microplastic material densities, which cluster around that of water, distinguish microplastics from other colloids, with impactful consequences that are often underappreciated. For example, (near-)neutral material densities cause microplastic transport behavior to be highly sensitive to spatio-temporally varying environmental conditions. The dynamic nature of microplastic properties implies that at environmentally relevant large spatio-temporal scales, the complex transport behavior may be effectively intractable to direct physical modeling. Therefore, efficient modeling may require integrating reduced-complexity physics-constrained models, with stochastic or statistical analyses, supported by extensive environmental data. |
format |
Article/Letter to editor |
topic_facet |
Groundwater aquifers Microplastic transport Physical model Porous media Soils |
author |
Yang, Xiaomei Tang, Darrell W.S. |
author_facet |
Yang, Xiaomei Tang, Darrell W.S. |
author_sort |
Yang, Xiaomei |
title |
Modeling microplastic transport through porous media : Challenges arising from dynamic transport behavior |
title_short |
Modeling microplastic transport through porous media : Challenges arising from dynamic transport behavior |
title_full |
Modeling microplastic transport through porous media : Challenges arising from dynamic transport behavior |
title_fullStr |
Modeling microplastic transport through porous media : Challenges arising from dynamic transport behavior |
title_full_unstemmed |
Modeling microplastic transport through porous media : Challenges arising from dynamic transport behavior |
title_sort |
modeling microplastic transport through porous media : challenges arising from dynamic transport behavior |
url |
https://research.wur.nl/en/publications/modeling-microplastic-transport-through-porous-media-challenges-a |
work_keys_str_mv |
AT yangxiaomei modelingmicroplastictransportthroughporousmediachallengesarisingfromdynamictransportbehavior AT tangdarrellws modelingmicroplastictransportthroughporousmediachallengesarisingfromdynamictransportbehavior |
_version_ |
1819140074425548800 |