Published 1991 | Version v1
Book

A model to predict element redistribution in unsaturated soil: Its simplification and validation

  • 1. AECL Research, Whiteshell Labs., Pinawa, MB (Canada)

Description

A research model has been developed to predict the long-term fate of contaminants entering unsaturated soil at the surface through irrigation or atmospheric deposition, and/or at the water table through groundwater. The model, called SCEMR1 (Soil Chemical Exchange and Migration of Radionuclides, Version 1), uses Darcy's law to model water movement, and the soil solid/liquid partition coefficient, Kd, to model chemical exchange. SCEMR1 has been validated extensively on controlled field experiments with several soils, aeration statuses and the effects of plants. These validation results show that the model is robust and performs well. Sensitivity analyses identified soil Kd, annual effective precipitation, soil type and soil depth to be the four most important model parameters. SCEMR1 consumes too much computer time for incorporation into a probabilistic assessment code. Therefore, we have used SCEMR1 output to derive a simple assessment model. The assessment model reflects the complexity of its parent code, and provides a more realistic description of containment transport in soils than would a compartment model. Comparison of the performance of the SCEMR1 research model, the simple SCEMR1 assessment model and the TERRA compartment model on a four-year soil-core experiment shows that the SCEMR1 assessment model generally provides conservative soil concentrations. (15 refs., 3 figs.)

Part of:
BIOMOVS. Symposium on the validity of environmental transfer models

Additional details

Publishing Information

Publisher
SSI.
Imprint Place
Stockholm (Sweden)
ISBN
91-630-0437-2
Imprint Title
BIOMOVS. Symposium on the validity of environmental transfer models
Imprint Pagination
498 p.
Journal Page Range
p. 213-222.

Conference

Title
BIOMOVS. Symposium on the validity of environmental transfer models.
Dates
8-10 Oct 1990.
Place
Stockholm (Sweden).

Optional Information

Notes
BIOMOVS = Biospheric Model Validation Study.