Increased irrigation water salinity enhances nitrate transport to deep unsaturated soil.

Weissman, G., Bel, G., Ben‐Gal, A., Yermiyahu, U., Alexandrov, B., Rasmussen, K. Ø., & Dahan, O. (2020). Increased irrigation water salinity enhances nitrate transport to deep unsaturated soil. Vadose Zone Journal, 19(1), e20041.

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Holistic approach for evaluation of landfill leachate pollution potential – From the waste to the aquifer.

Aharoni, I., Siebner, H., Yogev, U., & Dahan, O. (2020). Holistic approach for evaluation of landfill leachate pollution potential–From the waste to the aquifer. Science of The Total Environment, 741, 140367.

Continue ReadingHolistic approach for evaluation of landfill leachate pollution potential – From the waste to the aquifer.

Continuous in-situ monitoring of nitrate concentration in soils–a key for groundwater protection from nitrate pollution.

Yeshno, E. Arnon, S. Dahan, O., 2019. Continuous in-situ monitoring of nitrate concentration in soils - a key for groundwater protection from nitrate pollution. Hydrol Earth Syst Sci.

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Tracer experiment in a brownfield using geophysics and a vadose zone monitoring system.

Fernández de Vera, N., Beaujean, J., Jamin, P., Hakoun, V., Caterina, D., Dahan, O., Vanclooster, M., Dassargues, A., Nyugen, F. and Brouyère, S. (2017). Tracer experiment in a brownfield using geophysics and a vadose zone monitoring system. Vadose Zone Journal, 16(1), 1-15.

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Application of vadose-zone monitoring system for real-time characterization of leachate percolation in and under a municipal landfill.

Aharoni, I., Siebner, H., and Dahan, O. (2017). Application of vadose-zone monitoring system for real-time characterization of leachate percolation in and under a municipal landfill. Waste Manag. doi:10.1016/j.wasman.2017.05.012.

Continue ReadingApplication of vadose-zone monitoring system for real-time characterization of leachate percolation in and under a municipal landfill.