Posdoctoral Contract - Madrid, España - Institute of Applied Magnetism, Complutense University of Madrid

Institute of Applied Magnetism, Complutense University of Madrid
Institute of Applied Magnetism, Complutense University of Madrid
Empresa verificada
Madrid, España

hace 3 días

Isabel García

Publicado por:

Isabel García

beBee Recruiter


Descripción

Función:
Perform characterization experiments of high frequency induction heating mediated by magnetic nanoparticles. Design of small reactor working under hydrogen atmosphere for the study of reduction processes of magnetic nanoparticles

  • Empresa: Institute of Applied Magnetism, Complutense University of Madrid
  • No de Plazas: 1
  • Referencia: RyFCycling
  • Publicada el 15/2/2023
  • Publicada hasta el 15/5/202
  • Tipo de Contrato: Contrato temporal
  • Dedicación: Jornada completa
  • Localidad: Madrid
  • Provincia: Madrid
  • Disponibilidad para viajar: Si, Internacional
  • Fecha de Incorporación: April 2023
  • Fecha de Finalización: 20 months
  • Nível Académico
Doctor

  • Titulación Académica
Física (Titulación Universitaria)

Ingeniería de Materiales (Titulación Universitaria)

Nanociencia y Nanotecnología (Titulación Universitaria)

- Áreas tecnológicas
I- Energía

L- Física

P-13 Nanotecnología

  • Idiomas

Idioma:
Inglés


Nível Lectura:
Alto


Nível Escrito:
Alto


Nível Conversación:
Alto


  • Experiência
  • At least two years of demonstrated expertise
  • Otros
  • About the Project


The aim of the
RyFCycling project is to study t
he feasibility of plastic waste pyrolysis using modified zeolites impregnated with MNPs (Z-MNPs) as catalysts, using radiofrequency fields as a source of energy as a way for improving the efficiency of the hydrocracking process.

For such aim, MNPs suitable for high temperatures inductive heating will be synthesized and characterized.

A reactor system will be designed and developed to take advantage of the heating generation capabilities of the Z-MNPs under radiofrequency fields for the conversion of plastic waste into added-value products.

The process will be analysed and optimized in terms of the obtained products and energetic efficiency.

The resulting findings will be disseminated via conference proceedings and research papers, and the potential of result exploitation will be evaluated.

This process is based on a multidisciplinary point of view such as Material Science, Nanotechnology, Magnetism, and Chemical Engineering.

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