Transport and degradation of perchlorate in deep vadose zone: implications from direct observations during bioremediation treatment.

Dahan, O., Katz, I., Avishai, L., & Ronen, Z. (2017). Transport and degradation of perchlorate in deep vadose zone: implications from direct observations during bioremediation treatment. Hydrology & Earth System Sciences, 21(8).

Continue ReadingTransport and degradation of perchlorate in deep vadose zone: implications from direct observations during bioremediation treatment.

Real-time monitoring of nitrate transport in the deep vadose zone under a crop field – implications for groundwater protection.

Turkeltaub, T., Kurtzman, D., & Dahan, O. (2016). Real-time monitoring of nitrate transport in the deep vadose zone under a crop field – implications for groundwater protection. Hydrology and Earth System Sciences, 20(8), 3099.

Continue ReadingReal-time monitoring of nitrate transport in the deep vadose zone under a crop field – implications for groundwater protection.

Flood hydrograph reconstruction from the peak flow value in ephemeral streams using a simplified robust single‐parameter model.

Ronen‐Eliraz, G., Ginat, H., Dody, A., Blumberg, D., & Dahan, O. (2016). Flood hydrograph reconstruction from the peak flow value in ephemeral streams using a simplified robust single‐parameter model. Hydrological Processes, 30(17), 3004-3013.

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Using the natural biodegradation potential of shallow soils for in-situ remediation of deep vadose zone and groundwater.

Avishai, L., Siebner, H., Dahan, O., and Ronen, Z. (2016). Using the natural biodegradation potential of shallow soils for in-situ remediation of deep vadose zone and groundwater. J. Hazard. Mater. 324, 398–405. doi:10.1016/j.jhazmat.2016.11.003.

Continue ReadingUsing the natural biodegradation potential of shallow soils for in-situ remediation of deep vadose zone and groundwater.