Electro-migration of nitrate in sandy soil. uri icon

abstract

  • Migration of nitrate to groundwater has become a serious threat in many agricultural areas. This paper presents the results of experimental laboratory tests studying the nitrate gradient developed in response to an electrical potential. Two systems were tested; the first had no flow (closed system) and the second had flow opposite to the direction of the electrical current. A solution of sodium nitrate in sandy soil was used in both systems. The tests showed that the electro-kinetic process effectively concentrated and retained nitrate close to the anode. The movement of NO(3)(-) through the soil column was significantly influenced by the development of a pH gradient. Statistical analysis was performed to determine best-fit equations relating the nitrate gradient to the electrical input and pH gradient. A simple one-dimensional finite difference model was used to predict the pH gradient developed during the electro-kinetic process. The experimental measurements closely agreed with the predicted spatial and temporal distribution of the nitrate gradient for both closed and open system configurations.

published proceedings

  • J Hazard Mater

author list (cited authors)

  • Eid, N., Elshorbagy, W., Larson, D., & Slack, D.

citation count

  • 40

complete list of authors

  • Eid, N||Elshorbagy, W||Larson, D||Slack, D

publication date

  • December 2000