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Camila Alejandra Fernández Rojas

Investigador

Unidad de Desarrollo Tecnológico (CCTE-UDT), Universidad de Concepción

Concepción , Chile

Líneas de Investigación


Chemical engineering, heterogeneous catalysis, hydrogenation, oxidation, nanomaterials, nanoparticles

Educación

  •  Doctorat en Sciences Agronomiques et Ingénierie biologique, UNIVERSITE CATHOLIQUE DE LOUVAIN. Bélgica, 2015
  •  Magister en Ciencias de la Ingeniería, Mención en Ing. Química, UNIVERSIDAD DE CONCEPCION. Chile, 2011
  •  Ingeniero Civil Químico, UNIVERSIDAD DE CONCEPCION. Chile, 2009

Experiencia Académica

  •   Ingeniero Investigador / Candidato a PhD Full Time

    UNIVERSITE CATHOLIQUE DE LOUVAIN

    Faculté d’ingénierie biologique, agronomique et environnementale (AGRO)

    Louvain-la-Neuve, Bélgica

    2011 - 2015

  •   Ingeniero de Investigación / Candidato a Magister Full Time

    UNIVERSIDAD DE CONCEPCION

    Facultad de Ingeniería

    Concepción, Chile

    2008 - 2011

Experiencia Profesional

  •   Ingeniero de proyecto Part Time

    CCTE-UDT, Universidad de Concepción

    Concepción, Chile

    2011 - 2011

  •   Ingeniero de proyecto Part Time

    CCTE-UDT, Universidad de Concepción

    Concepción, Chile

    2010 - 2010

  •   Ingeniero de Investigación Part Time

    BP Products North America Inc. y Universidad de Concepción

    Concepción, Chile

    2009 - 2010

  •   Researcher Full Time

    Unidad de Desarrollo Tecnológico (CCTE-UDT), Universidad de Concepción

    Concepcion, Chile

    2017 - A la fecha

Premios y Distinciones

  •   Premio Facultad Ingeniería 2009

    UNIVERSIDAD DE CONCEPCION

    Chile, 2009

    Premio de graduación por excelencia académica. Generación egresados 2009, UdeC.

  •   Becas Chile, Doctorado en el Extranjero

    COMISION NACIONAL DE INVESTIGACION CIENTIFICA Y TECNOLOGICA

    Chile, 2010

    Beca de doctorado en el extranjero, CONICYT, Chile

  •   Umicore Materials Technology PhD Award 2016

    UMICORE

    Bélgica, 2016

    Premio de tesis doctoral otorgado por la empresa Umicore, por contribución original en el área de materiales para catálisis en Europa


 

Article (15)

Abiotic Transformation of H-2 and CO2 into Methane on a Natural Chromitite Rock
Carbon Aerogel-Supported Nickel and Iron for Gasification Gas Cleaning. Part I: Ammonia Adsorption
Dry reforming of methane on grafted-supported Rh catalysts: effect of the metal-support interaction on the reaction rate
The inhibitor role of NH3 on its synthesis process at low temperature, over Ru catalytic nanoparticles
Kinetics of hydrogen adsorption and mobility on Ru nanoparticles supported on alumina: Effects on the catalytic mechanism of ammonia synthesis
New concepts in low-temperature catalytic hydrogenation and their implications for process intensification
Understanding the growth of RuO2 colloidal nanoparticles over a solid support: An atomic force microscopy study
Disclosing the synergistic mechanism in the catalytic activity of different-sized Ru nanoparticles for ammonia synthesis at mild reaction conditions
Insights in the mechanism of deposition and growth of RuO2 colloidal nanoparticles over alumina. Implications on the activity for ammonia synthesis
Insights in the mechanism of deposition and growth of RuO2 colloidal nanoparticles over alumina. Implications on the activity for ammonia synthesis
Effect of the size and distribution of supported Ru nanoparticles on their activity in ammonia synthesis under mild reaction conditions
Insights into dynamic surface processes occurring in Rh supported on Zr-grafted gamma-Al2O3 during dry reforming of methane
Insights into dynamic surface processes occurring in Rh supported on Zr-grafted γ-Al2O3 during dry reforming of methane
Effect of the structural and morphological properties of Cu/ZnO catalysts prepared by citrate method on their activity toward methanol synthesis from CO 2 and H 2 under mild reaction conditions
Effect of the structural and morphological properties of Cu/ZnO catalysts prepared by citrate method on their activity toward methanol synthesis from CO2 and H2 under mild reaction conditions

Proyecto (3)

Desarrollo de una red para el análisis superficial avanzado de materiales catalíticos
ADVANCED MATERIALS FOR CATALYTIC UPGRADING OF BIOMASS-DERIVED SYNGAS=> FOCUS ON SUSTAINABLE ENERGY PRODUCTION
BECA DE DOCTORADO EN EL EXTRANJERO BECAS CHILE – CONVOCATORIA 2010
12
Camila Fernández

Investigador

Área Bioenergía

Unidad de Desarrollo Tecnológico (CCTE-UDT), Universidad de Concepción

Concepción , Chile

2
Romel Jiménez

Full Professor

Chemical Engineering

UNIVERSIDAD DE CONCEPCIÓN

Concepción, Chile

1
LUIS ARTEAGA

Académico

Ingeniería en Maderas

Universidad del Bío-Bío

Concepción, Chile

1
Gina Pecchi

Professor

Physical Chemistry

UNIVERSIDAD DE CONCEPCION

Concepcion, Chile

1
Oscar Gómez

Investigador Posdoctoral

Universidad de Concepción

Concepción, Chile

1
Alejandro Karelovic

Professor

Department of Chemical Engineering

Universidad de Concepcion

Concepcion, Chile