Proceedings of the Korea Water Resources Association Conference (한국수자원학회:학술대회논문집)
- 2004.05b
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- Pages.90-101
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- 2004
Solute Transport Model with Cation Exchange under Redox Environment and its Application for Designing the Slow Infiltration Set-up
- GUERRA, GINGGING (Institute of Environmental Systems, Kyushu University) ;
- JINNO, KENJI (Institute of Environmental Systems, Kyushu University) ;
- HIROSHIRO, YOSHINARI (Institute of Environmental Systems, Kyushu Univeristy) ;
- NAKAMURA, KOJI (Institute of Environmental Systems, Kyushu University)
- Published : 2004.05.01
Abstract
The present trend of disposing treated sewage water by allowing it to infiltrate the soil brings a new dimension to environmental problems. It is therefore necessary to identify the chemicals likely to be present in treated sewage water. A soil column experiment was conducted to determine the behavior of chemical species in soil columns applied with secondary treated sewage water. To predict the behavior of chemical species, a multicomponent solute transport model that includes the biochemical redox process and cation exchange process was developed. The model computes changes in concentration over time caused by the processes of advection, dispersion, biochemical reactions and cation exchange reactions. The solute transport model was able to predict the behavior of the different chemical species. The model reproduced the sequential reduction reaction. To design the safe depth of plow layer where
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