Sorption nonideality during organic contaminant transport in porous media
- 1 January 1989
- journal article
- research article
- Published by Taylor & Francis in Critical Reviews in Environmental Control
- Vol. 19 (1), 33-99
- https://doi.org/10.1080/10643388909388358
Abstract
In modeling subsurface contaminant transport, sorption is often simplified by assuming instantaneous equilibrium, isotherm linearity, and sorption‐desorption singularity. Data exhibiting behavior that deviates from that predicted by this simple model have been reported, challenging the validity of these assumptions. This nonideal sorptive behavior has been attributed to several different factors, including kinetic sorption reactions, diffusive mass transfer resistances, isotherm nonlinearity, and sorption‐desorption nonsingularity. These factors are examined and their relative impact on contaminant transport is evaluated. For hydrophobic organic compounds, physical nonequilibrium (i.e., rate‐limited mass‐transfer in aggregated or layered systems) and intraorganic matter diffusion (rate‐limited diffusion within the sorbent organic matter matrix) are probably the predominant factors causing nonideality. The relative importance of these factors is scale‐dependent. For smaller scale systems, mass‐transfer limitations associated with aggregated media and/or sorbent organic matter appear to predominate, whereas aquifer heterogeneity appears to be dominant at the field scale.Keywords
This publication has 202 references indexed in Scilit:
- Sorption of 2,3,7,8-tetrachlorodibenzo-p-dioxin to soils from water/methanol mixturesEnvironmental Science & Technology, 1988
- Parameter estimation for unsaturated flow and transport models — A reviewJournal of Hydrology, 1987
- Sorption kinetics of hydrophobic organic compounds to natural sediments and soilsEnvironmental Science & Technology, 1986
- Interactions between polycyclic aromatic hydrocarbons and dissolved humic material: binding and dissociationEnvironmental Science & Technology, 1985
- The effect of dead-end porosity on rock-matrix diffusionJournal of Hydrology, 1985
- The “mixing-cell” concept applied to transport of non-reactive and reactive components in soils and groundwaterJournal of Hydrology, 1985
- Migration of contaminants in groundwater at a landfill: A case studyJournal of Hydrology, 1983
- Partitioning of organic compounds in octanol-water systemsEnvironmental Science & Technology, 1982
- Adsorption, partition, ion exchange and chemical reaction in batch reactors or in columns — A reviewJournal of Hydrology, 1981
- A Theory of ChromatographyJournal of the American Chemical Society, 1940