Role of Nb2O5 Crystal Phases on the Photocatalytic Conversion of Lignin Model Molecules and Selectivity for Value‐Added Products

Author:

Rojas Susana D.123ORCID,Rafaela Gabriela1,Espinoza‐Villalobos Nicole1ORCID,Diaz‐Droguett Donovan E.456ORCID,Salazar‐González Ricardo1ORCID,Caceres‐Jensen Lizethly7ORCID,Escalona Néstor1589ORCID,Barrientos Lorena158ORCID

Affiliation:

1. Facultad de Química y de Farmacia Pontificia Universidad Católica de Chile Vicuña Mackenna 4860, Macul Santiago Chile

2. Current Address: Escuela de Ingeniería Industrial, Facultad de Ingeniería Universidad de Valparaíso Avenida Brasil 1786 Valparaíso Chile

3. Gran Avenida 4160, San Miguel Santiago Chile

4. Instituto de Física Pontificia Universidad Católica de Chile Av. Vicuña Mackenna 4860 Santiago Chile

5. Centro de investigación en Nanotecnología y Materiales CIEN-UC Pontificia Universidad Católica de Chile Vicuña Mackenna 4860, Macul Santiago Chile

6. Centro de Energía UC Pontificia Universidad Católica de Chile Vicuña Mackenna 4860, Macul Santiago Chile

7. Laboratorio de Fisicoquímica & Analítica (PachemLab) Nucleus of Computational Thinking and Education for Sustainable Development (NuCES) Center for Research in Education (CIE-UMCE) Departamento de Química Universidad Metropolitana de Ciencias de la Educación Avenida José Pedro Alessandri 774, Ñuñoa Santiago 776019 Chile

8. Millennium Nuclei on Catalytic Processes Towards Sustainable Chemistry (CSC) Santiago Chile

9. Departamento de Ingeniería Química y Bioprocesos Escuela de Ingeniería Pontificia Universidad Católica de Chile Vicuña Mackenna 4860, Macul Santiago Chile

Abstract

AbstractThe photocatalytic conversion in aqueous media of phenol and guaiacol as a lignin model compound using Nb2O5 with different crystal phases was studied. Nb2O5 particles were synthesized using hydrothermal methods, where it was observed that changes in the solvent control their morphology and crystal phase. Different photocatalytic behavior of Nb2O5 was observed with the selected model compounds, indicating that its selection directly impacts the resulting conversion and selectivity rates as well as the reaction pathway, highlighting the relevance of model molecule selection. Photocatalytic conversion of phenol showed conversion rate (C%) up to 25 % after 2 h irradiation and high selectivity (S%) to pyrogallol (up to 50 %). Orthorhombic Nb2O5 spheres favored conversion through free hydroxyl radicals while monoclinic rods did not convert phenol. Guaiacol photocatalytic oxidation showed high conversion rate but lower selectivity. Orthorhombic and monoclinic Nb2O5 favored the formation of resorcinol with S % ~0.43 % (C % ~33 %) and ~13 % (C % ~27 %) respectively. The mixture of both phases enhanced the guaiacol conversion rate to ~55 % with ~17 % of selectivity to salicylaldehyde. The use of radical scavengers provided information to elucidate the reaction pathway for these model compounds, showing that different reaction pathways may be obtained for the same photocatalyst if the model compound is changed.

Publisher

Wiley

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