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Biological Trace Element Research|November 29, 2014
Response of two barley cultivars to increasing concentrations of cadmium or chromium in soil during the growing periodA González, M Gil-Díaz, M C Lobo
Journal of Hazardous Materials|October 11, 2016
Viability of a nanoremediation process in single or multi-metal(loid) contaminated soilsM Gil-Díaz, P Pinilla, J Alonso, et al.
Journal of Environmental Management|October 4, 2015
Evaluation of the stability of a nanoremediation strategy using barley plantsM Gil-Díaz, A González, J Alonso, et al.
Scientific Reports|September 28, 2020
Effectiveness of nanoscale zero-valent iron for the immobilization of Cu and/or Ni in water and soil samplesM Gil-Díaz, M A Álvarez, J Alonso, et al.
Chemosphere|September 1, 2019
Zero valent iron and goethite nanoparticles as new promising remediation techniques for As-polluted soilsD Baragaño, J Alonso, J R Gallego, et al.
Environmental Pollution (Barking, Essex : 1987)|January 1, 2021
Selecting efficient methodologies for estimation of As and Hg availability in a brownfieldM Gil-Díaz, A Luchsinger-Heitmann, P García-Gonzalo, et al.
Meat Science|April 27, 2010
Free D-amino acids determination in ready-to-eat cooked ham irradiated with electron-beam by indirect chiral HPLCM Gil-Díaz, M J Santos-Delgado, S Rubio-Barroso, et al.
The Science of the Total Environment|February 14, 2017
Comparing different commercial zero valent iron nanoparticles to immobilize As and Hg in brownfield soilM Gil-Díaz, J Alonso, E Rodríguez-Valdés, et al.
The Science of the Total Environment|April 27, 2019
Nanoremediation and long-term monitoring of brownfield soil highly polluted with As and HgM Gil-Díaz, E Rodríguez-Valdés, J Alonso, et al.
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