The use of TiO2 as heterogeneous catalyst and/or active support for metals or other oxides is here reported. Many reactions of industrial relevance involve, in fact, titania-based catalysts, among them, NOx abatement, Fischer-Tropsch and water-gas shift, Deacon and Claus processes, hydrodesulfurizations and hydrogenations, selective reductions and selective oxidations. This chapter aims to discuss the main applications of TiO2, in its different forms, as effective support or catalyst for thermocatalytic and photo-thermocatalytic reactions, focusing on the role of its structural and physicochemical properties on the catalytic performance (activity, selectivity, stability).

Scire S., Fiorenza R., Bellardita M., Palmisano L. (2021). Catalytic applications of TiO2. In Titanium Dioxide (TiO2) and Its Applications (pp. 637-679). Elsevier [10.1016/B978-0-12-819960-2.00006-7].

Catalytic applications of TiO2

Bellardita M.;Palmisano L.
2021-01-01

Abstract

The use of TiO2 as heterogeneous catalyst and/or active support for metals or other oxides is here reported. Many reactions of industrial relevance involve, in fact, titania-based catalysts, among them, NOx abatement, Fischer-Tropsch and water-gas shift, Deacon and Claus processes, hydrodesulfurizations and hydrogenations, selective reductions and selective oxidations. This chapter aims to discuss the main applications of TiO2, in its different forms, as effective support or catalyst for thermocatalytic and photo-thermocatalytic reactions, focusing on the role of its structural and physicochemical properties on the catalytic performance (activity, selectivity, stability).
2021
Scire S., Fiorenza R., Bellardita M., Palmisano L. (2021). Catalytic applications of TiO2. In Titanium Dioxide (TiO2) and Its Applications (pp. 637-679). Elsevier [10.1016/B978-0-12-819960-2.00006-7].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/575192
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