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Numerical simulation for reactive solute

Osama Eljamal, Keiko Sasaki

2026enarsenicpermeable reactive barriernumerical simulationzero-valent irongroundwater

Abstract

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Numerical modeling was developed in one dimensional solute transport including chemical reaction to simulate the permeable reactive barrier column results, in which arsenite (As(III)) was removed using zero-valent iron (ZVI). Removal principles of As(III) includes oxidation of As(III) to As(V), sorption of As(III) and sorption of As(V) at least. Each kinetic parameter was drawn in preliminary batch tests to integrate the simulation. The column simulation results show that As(V) adsorption rate was faster than the As(III) adsorption rate and that they are affected by the available mass of Fe(III) in the system. The model can be used to design and predict the long term performance of ZVI permeable reactive barriers (PRBs).

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Cite This Work

@article{4201a1c4-d3a6-4992-9a96-3bffdf56d324,
  title={Numerical simulation for reactive solute},
  author={Osama Eljamal and Keiko Sasaki},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - Numerical simulation for reactive solute
AU  - Osama Eljamal
AU  - Keiko Sasaki
PY  - 2026
LA  - en
ER  -

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