Determination of Zn partition coefficient and simulation of reactive transport from landfills in Mar Del Plata, Argentina

Author:

Martínez Daniel,Mascioli Silvana,Bocanegra Emilia

Publisher

Springer Science and Business Media LLC

Subject

General Earth and Planetary Sciences,Earth and Planetary Sciences (miscellaneous),General Engineering,General Environmental Science,Water Science and Technology,Environmental Chemistry

Reference33 articles.

1. Appelo CAJ, Postma D (1993) Geochemistry, groundwater and pollution. A.A. Balkema, Rotterdam, pp 1–536

2. Baedecker MJ, Back W (1979a) Modern marine sediments as a natural analog to the chemically stressed environment of a landfill. J Hydrol 43:393–414

3. Baedecker MJ, Back W (1979b) Hydrogeological processes and chemical reactions at a landfill. Ground Water 17:429–437

4. Beck P, Jancoski P (2000) Using Kd-test data in the estimation of contaminant attenuation risk assessment. In: Sililo O et al. (eds) Proceedings of the XXX IAH Congress: groundwater: past achievements and future challenges. Balkema, Rotterdam, pp 697–701

5. Beck P, Jancoski P (2002) Hydrogeochemical reactions that control heavy metal mobility in the saturated portion of a sand aquifer. In: Bocanegra E et al. (eds) Proceedings of the XXXII IAH Congress: groundwater and human development. Full Papers CD, Mar del Plata, pp 938–945

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2. Mobility of Heavy Metals (Pb, Cd, Zn) in the Pampeano and Puelche Aquifers, Argentina: Partition and Retardation Coefficients;Bulletin of Environmental Contamination and Toxicology;2015-07-17

3. Prediction on contaminant migration in aquifer of fractured granite substrata of landfill;Journal of Central South University;2013-11

4. Hydrochemistry of an aquifer in Quaternary loess like sediments in the Pampean Plain, Argentina;Revista Facultad de Ingeniería Universidad de Antioquia;2013-03-18

5. Incorporating nonlinear isotherms into robust multilayer sorptive barrier design;Advances in Water Resources;2009-11

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