Unraveling Thermal Depolarization Phenomena in Biphasic Polarized Calcium Phosphate Catalyst

Author:

Arnau Marc12,Sans Jordi12,Tamarit Josep Lluis23,Romanini Michela23,Turon Pau4,Alemán Carlos125ORCID

Affiliation:

1. IMEM‐BRT Group Departament d'Enginyeria Química EEBE Universitat Politècnica de Catalunya–BarcelonaTech C/ Eduard Maristany, 10–14 Barcelona 08019 Spain

2. Barcelona Research Center in Multiscale Science and Engineering Universitat Politècnica de Catalunya–BarcelonaTech Barcelona 08930 Spain

3. Grup de Caracterització de Materials Departament de Física Universitat Politècnica de Catalunya EEBE, Av. Eduard Maristany 10–14 Barcelona Catalonia E‐08019 Spain

4. B. Braun Surgical S.A.U. Carretera de Terrassa 121 Rubí, Barcelona 08191 Spain

5. Institute for Bioengineering of Catalonia (IBEC) The Barcelona Institute of Science and Technology Baldiri Reixac 10–12 Barcelona 08028 Spain

Abstract

AbstractPermanently polarized biphasic calcium phosphate composed of hydroxyapatite and brushite (pp‐HAp/Bru), which is prepared by applying the thermally stimulated polarization treatment to calcined HAp, is used as a sustainable catalyst to transform CO2 into value‐added products. In this work, the stability of pp‐HAp/Bru is studied from structural, electrical, and catalytic perspectives, applying a thermal depolarization process with temperatures (Td) ranging from 200 to 1000 °C. Results show that the Bru phase is not stable when Td ≤ 400 °C, while the structure of the HAp refines and transforms into Bru when Td ≥ 600 °C. Besides, the electrical resistance and capacitance of the pp‐HAp/Bru increase with Td, evidencing the progressive electrical depolarization of the material. Thermal depolarization also influences the specific orientation of the OH ions, which is partially lost (≈50%). All such changes affect the catalytic efficiency of pp‐HAp/Bru, which is proven using a reaction that transforms CO2 gas into acetic acid and formic acid. Results show that the total reaction yield linearly decreases with increasing Td. Based on such observations, a simple process is designed that allows the reconstitution of the structure and restores the activity of such green catalysts.

Funder

Institució Catalana de Recerca i Estudis Avançats

Agència de Gestió d'Ajuts Universitaris i de Recerca

Publisher

Wiley

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