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  3. Jaime Morales Saavedra
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Jaime Morales Saavedra

Ingeniero Civil Industrial en Química / Universidad de Antofagasta, Chile

Magíster en Ciencias de la Ingenieria Mención en Ingeniería de Procesos de Minerales / Universidad de Antofagasta, Chile

Doctor en Ingeniería de Procesos de Minerales / Universidad de Antofagasta, Chile

CURSOS DICTADOS

  • Fundamentos de Procesos Metalúrgicos
  • Transferencia de Calor y Masa
  • Termodinámica Química

Áreas de Interés

Termodinámica metalúrgica

Línea de Investigación

Termodinámica y Cinética de la Metalurgia Extractiva

Ubicación

Oficina 4-2

2024

  • Gabriel Hermosilla, Gabriel Villavicencio, Giovanni Cocca – Guardia, Vicente Aprigliano, Manuel Silva, Juan Carlos Quezada, Pierre Breul, Vinicius Minatogawa y Jaime Morales. “Simplified Physical Stability Assessment of Chilean Mine Waste Storage Facilities Using GIS and AI: Application in the Antofagasta Region”. IEEE Access ieeexplore.ieee.org/document/10843715

 

  • Jaime Morales, Andrea Espinoza Pérez, Lorena Espinoza Pérez, Ernesto Pino Cortés, Diana Yáñez Sevilla, Patricia Viñán Guerrero, Lorena Molina, Carlos Burgos, Fidel Vallejo. “Supply Chain Design for Waste Valorization Through High-Energy-Density Pellet Production in Chile”. Applied Science mdpi.com/2076-3417/14/22/10429

2019

  • Jimenez, Y. P., Galleguillos, H. R., Morales, J. W., & Hernández-Luis, F. (2019). “Measurement and modelling of water activity, density and viscosity of the KClO4+ poly (ethylene glycol) + H2O system at various temperatures”. Journal of Molecular Liquids, 286, 110922.

2016

  • Hernández-Luis, F., Rodríguez-Raposo, R., Galleguillos, H. R., & Morales, J. W. (2016). “Activity coefficients of NaF in aqueous mixtures with ε-increasing co-solvent: N-methylformamide-water mixtures at 298.15 K”. Fluid Phase Equilibria, 425, 451-464.

 

  • Robles, P. A., Morales, J. W., & Cisternas, L. A. (2016). “Modeling of liquid-liquid equilibrium for binary and ternary systems containing ionic liquids with the hexafluorophosphate anion using the ASOG method”. Fluid Phase Equilibria, 429, 119-126.

 

  • Hernández-Luis, F., Rodríguez-Raposo, R., Galleguillos, H. R., & Morales, J. W. (2016). “Solubility of Sodium Halides in Aqueous Mixtures with ε-Increasing Cosolvents: Formamide, N-Methylformamide, and N-Methylacetamide at 298.15 K”. Industrial & Engineering Chemistry Research, 55(3), 812-819.

 

  • Carlesi, C., Cortes, E., Dibernardi, G., Morales, J., & Muñoz, E. (2016). “Ionic liquids as additives for acid leaching of copper from sulfidic ores”Hydrometallurgy, 161, 29-33.

 

  • Guajardo, N., Carlesi, C., Schrebler, R., & Morales, J. (2016). “Applications of Liquid/Liquid Biphasic Oxidations by Hydrogen Peroxide with Ionic Liquids or Deep Eutectic Solvents”. ChemPlusChem.

 

  • Aracena, A., Jerez, O., Ortiz, R., & Morales, J. (2016). “Pyrite oxidation kinetics in an oxygen–nitrogen atmosphere at temperatures from 400 to 500° C”. Canadian Metallurgical Quarterly, 55(2), 195-201.

2012

  • Morales, J. W., Galleguillos, H. R., & Hernández-Luis, F. (2012). “Activity Coefficients of NaBF4 in PEG4000+ Water Mixtures at (288.15, 298.15, and 308.15) K”. Journal of Chemical & Engineering Data, 57(2), 500-506.

2011

  • Morales, J. W., Galleguillos, H. R., Hernández-Luis, F., & Rodríguez-Raposo, R. (2011). “Activity coefficients of NaClO4 in aqueous solution”. Journal of Chemical & Engineering Data, 56(8), 3449-3453.

2010

  • Hernández-Luis, F., Rodríguez-Raposo, R., Galleguillos, H. R., & Morales, J. W. (2010). “Activity Coefficients of NaCl in Aqueous Mixtures with High Relative Permittivity Cosolvent: Ethylene Carbonate+ Water at 298.15 K”. Journal of Chemical & Engineering Data, 55(9), 3349-3355.

 

  • Hernández-Luis, F., Rodríguez-Raposo, R., Galleguillos, H. R., & Morales, J. W. (2010). “Activity coefficients of KCl in PEG 4000+ water mixtures at 288.15, 298.15 and 308.15 K”. Fluid Phase Equilibria, 295(2), 163-171.

 

  • Morales, J. W., Galleguillos, H. R., Graber, T. A., & Hernández-Luis, F. (2010). “Activity coefficients of LiCl in (PEG 4000+ water) at T=(288.15, 298.15, and 308.15) K”. The Journal of Chemical Thermodynamics, 42(10), 1255-1260.

 

  • Hernández-Luis, F., Morales, J. W., Graber, T. A., & Galleguillos, H. R. (2010). “Activity Coefficients of NaNO3 in Poly (ethylene glycol) 4000+ Water Mixtures at (288.15, 298.15, and 308.15) K”Journal of Chemical & Engineering Data, 55(9), 4082-4087.

 

  • Hernández-Luis, F., Rodríguez-Raposo, R., Galleguillos, H. R., & Morales, J. W. (2010). “Activity Coefficients of NaBr in Aqueous Mixtures with High Relative Permittivity Cosolvent: Ethylene Carbonate+ Water at 298.15 K“. Journal of Chemical & Engineering Data, 55(9), 3786-3792.

2009

  • Morales, J. W., Galleguillos, H. R., Taboada, M. E., & Hernández-Luis, F. (2009). “Activity coefficients of NaCl in PEG 4000+ water mixtures at 288.15, 298.15 and 308.15 K”. Fluid Phase Equilibria, 281(2), 120-126.

2008

  • Graber, T. A., Morales, J. W., Robles, P. A., Galleguillos, H. R., & Taboada, M. E. (2008). “Behavior of LiOH· H2O crystals obtained by evaporation and by drowning out”. Crystal Research and Technology, 43(6), 616-625.

2007

  • Galleguillos, H. R., Hernández-Luis, F., Graber, T. A., & Morales, J. W. (2007). “Activity coefficients of NaBF 4 in aqueous solution”. The Journal of Chemical Thermodynamics, 39(12), 1632-1636.

 

  • Morales, J. W., Galleguillos, H. R., & Hernandez-Luis, F. (2007). “Solubility of NaF in NaF+ NaX+ H2O (X= ClO4 and NO3) ternary systems and density and refractive index of the saturated solutions at 298.15 K”. Journal of Chemical & Engineering Data, 52(3), 687-690.

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