Photocatalysts based on structured three-dimensional carbide, in particular β-SiC, foams
The invention relates to a photocatalyst comprising a β-SiC cellular foam and a photocatalytically active phase, deposited directly on said cellular foam or on an intermediate phase deposited on said cellular foam. The average size of the cells is between 2500 μm and 5000 μm. The foam can comprise nanotubes or nanofibers (particularly of carbon, SiC, and TiO 2 ) that consist of, or carry as an intermediate phase, a photocatalytically active phase.
1. A photoreactor, comprising:
a photocatalyst, the photocatalyst comprising a cellular β-SiC foam having cells and a photocatalytically active phase deposited directly on said cellular β-SiC foam or on an intermediate phase deposited on said cellular β-SiC foam,
wherein the average size of the cells is between 2500 μm and 5000 μm;
the photoreactor further comprising a liquid-tight and gas-tight casing element, at least one part of the photocatalyst having a ring shape located inside said casing element, and at least one light radiation source;
wherein the photocatalyst comprises a plurality of annular parts, said annular parts having an internal diameter that is alternatively different, so that all of the even-numbered parts have the same internal diameter d 1 , and all of the odd-numbered parts have the same internal diameter d 2 , and said light radiation source is located in the internal diameter of said annular parts.
2. The photoreactor according to claim 1 , wherein said annular parts are separated by an empty space or a part that is optically transparent to at least a portion of said light radiation used.
3. The photoreactor according to claim 1 , wherein the average size of the cells is between 3000 μm and 5000 μm.
4. The photoreactor according to claim 1 , wherein said cellular β-SiC foam has a specific surface of at least 5 m 2 /g and a density of between 0.1 g/cm 3 and 0.4 g/cm 3 .
5. The photoreactor according to claim 4 , wherein the photocatalyst has, in a visible spectrum of between 400 nm and 700 nm, an optical transmission of at least 10% for the foam with a thickness of 1.5 cm.
6. The photoreactor according to claim 5 , wherein said foam further comprises nanotubes or nanofibers which support as an intermediate phase the photocatalytically active phase, wherein said nanotubes or nanofibers are selected from the group consisting of carbon, SiC, TiO 2 and titanates.
7. The photoreactor according to claim 6 , wherein said photocatalytically active phase is selected from the group consisting of metal oxides, titanates, metal sulfides, selenides, type III-V semiconductors, and SiC.