Tesis doctoralsDepartament de Química

Molybdenum Oxides as Catalyst for Biomass-derived Compounds: a Theoretical Approach

  • Datos identificativos

    Identificador:  TDX:2783
    Autores:  Rellán Piñeiro, Marcos
    Resumen:
    For the development of a more sustainable chemical industry the upgrading of biomass derived compounds to valuable chemicals in selective and non-contaminant processes is an important target. In this thesis, the conversion of oxygenated hydrocarbons derived from biomass catalyzed by Mo-oxides is studied by means of Density Functional Theory (DFT). The first objective is the study of the selective methanol oxidation to formaldehyde. This is an important reaction in chemical industry that has several issues under discussion. The reaction path is calculated on Mo-oxides surfaces and the activity and selectivity of each surface are studied. Moreover, the role of the iron in the industrial catalyst is unraveled by the study of the reactivity of the doped MoO3 surface. In the following objective, the DFT+U method is optimized to correctly describe the redox properties of MoO3. With the optimized method, the MoO3 (010) surface vacancy defects are characterized since they play an essential role in the catalytic activity of the oxide. Other objective is the study of the selective reduction of glycerol to propylene catalyzed by reduced MoO3. Through a hydrodeoxygenation (HDO) process the selective C-O bond cleavage over C-C bonds leads to the formation of the desired product. A study of the reaction network has been performed to illustrate this selective bond cleavage and pave the way to a better understanding of HDO processes. Finally, the selective epimerization of glucose to mannose is studied. The mechanism for the inversion of C2 configuration through a 1,2 C-shift is calculated on Mo-based polyoxometalates and continuous α-MoO3 surface. It was found that the Mo-centers act as electron buffer in these reactions and, therefore, the reducibility of the Mo-centers can be traced back as the descriptor for catalyst activity.
  • Otros:

    Editor: Universitat Rovira i Virgili
    Fecha: 2018-03-22
    Identificador: http://hdl.handle.net/10803/552410
    Departamento/Instituto: Departament de Química Física i Inorgànica, Universitat Rovira i Virgili.
    Idioma: eng
    Autor: Rellán Piñeiro, Marcos
    Director: López Alonso, Núria
    Fuente: TDX (Tesis Doctorals en Xarxa)
    Formato: 190 p., application/pdf
  • Palabras clave:

    Green Chemistry
    Heterogeneous Catalysis
    Computational Chemistry
    Química Verde
    Química Verda
    Catàlisi Heterogènia
    Química Computacional
    Ciències
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