Related Experiment Video
Updated: May 6, 2026

Transport of Surface-modified Carbon Nanotubes through a Soil Column
Published on: April 2, 2015
Cation dependent dynamics of sequential and cotransport processes of micro-polystyrene and soil colloids in porous
Qing Lin1, Penghui Lin1, Fengrui Wang1
1Department of Environmental Science and Engineering, Qingdao University, Qingdao, 266071, China.
Abstract:
Interactions between microplastics (MPs) and soil colloids critically influence pollutant mobility in subsurface environments, yet remain insufficiently characterized under transient flow conditions. This study explored the effects of ionic strength, ion type, and cation exchange on the co-transport and release of polystyrene (PS) MPs and soil colloids in saturated quartz sand. In NaCl solutions, pre-deposited PS particles or soil colloids increased surface roughness and chemical heterogeneity of the sand, inhibiting subsequent particle transport. PS particles preferentially attached to pre-deposited soil colloids, whereas most subsequent soil colloids adhered directly onto sand surfaces. Flushing with deionized water induced significant remobilization of both particles due to reduced ionic strength, which was well captured by a transport model coupled with ion dynamics. In CaCl2 solutions, the impact of pre-deposited particles varies with ionic strength. At lower ionic strength, competition for attachment sites promoted particle transport, while at higher ionic strength, increased surface roughness and heterogeneity inhibited mobility. Unlike Na+, Ca2+ facilitated a staggered arrangement of soil colloids and pre-deposited PS particles through cation bridging, resulting in strong retention and minimal release during deionized water flushing. Subsequent cation exchange from Ca2+ to Na + weakened adhesive forces and triggered substantial release, with soil colloids showing greater sensitivity than PS. Overall, the interactions between suspended soil colloids and PS MPs are governed by cation valence and concentration, reflecting a balance between steric hindrance and surface heterogeneity. These findings provide insights into how pre-deposited and suspended PS and soil colloids influence each other's transport behavior and highlight the critical role of cation exchange in regulating mobility in subsurface environments.
More Related Videos
12:32Combining Fluidic Devices with Microscopy and Flow Cytometry to Study Microbial Transport in Porous Media Across Spatial Scales
Published on: November 25, 2020
10:30Soil Lysimeter Excavation for Coupled Hydrological, Geochemical, and Microbiological Investigations
Published on: September 11, 2016
Related Concept Videos
The Colloidal State
Soil Microbial Ecology
Passive Diffusion: Overview and Kinetics
When administered orally, drugs establish a substantial concentration gradient between the gastrointestinal (GI) lumen and the bloodstream, expediting...
Pore Transport and Ion-Pair Transport
Pore transport, also known as convective transport, is a process where small molecules like urea, water, and sugars rapidly cross cell membranes as though there were channels or pores in the membrane. Although direct microscopic evidence is limited but the concept of pores or channels is widely accepted based on physiological evidence. Despite the lack of direct...
Colloids and Suspensions