Preparation method of sic foam, sic foam monolithic catalyst for methane catalytic combustion and preparation method thereof
A monolithic catalyst, methane catalytic combustion technology, applied in the direction of catalyst activation/preparation, physical/chemical process catalyst, catalyst carrier, etc., can solve the problem that the catalyst is difficult to achieve the catalytic effect, the thermal matching of SiC foam is poor, and the second carrier load is uneven and other problems, to achieve the effect of stable phase structure, good matching of thermal expansion coefficient and low cost
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Embodiment 1
[0041] A method of preparing a SiC foam, a glass carbon foam (RVC carbon foam) having a three-dimensional mesh structure having a porosity of 97% as a template, a silicon (PMS) as a silicon source, and xylene is solvent, including The following steps:
[0042] (1) The mass ratio was 1: 1, and PMS and xylene were mixed and stirred for 1 h, resulting in a PMS solution.
[0043] (2) Place the carbon foam in the PMS solution obtained from the step (1), impregnated with carbon foam, drained, dried in a 60 ° C oven, to obtain a carbon foam which is impregnated with PMS; the carbon foam used The RVC carbon foam having a three-dimensional mesh structure with a porosity of 97%.
[0044] (3) Under the protection of Ar protection, the carbon foam obtained by the PMS of step (2) at a high temperature of 1600 ° C under conditions at a high temperature of 1600 ° C, resulting in a SiC foam having a three-dimensional mesh structure.
[0045] The porosity of the SiC foam prepared in the first embo...
Embodiment 2
[0047] A method of preparing a SiC foam, a glass-state carbon foam (RVC carbon foam) having a three-dimensional mesh structure having a porosity of 90% as a template, a silicon (PMS) for silicon source, with xylene solvent, including The following steps:
[0048] (1) In accordance with the mass ratio of 1: 1, PMS and xylene were mixed, stirred for 1 h, and the PMS solution was obtained.
[0049] (2) Place the carbon foam in the PMS solution obtained from the step (1), impregnated with carbon foam, drained, dried in a 60 ° C oven, to obtain a carbon foam which is impregnated with PMS; the carbon foam used The RVC carbon foam having a three-dimensional mesh structure with a porosity of 90%.
[0050] (3) Under the protection of Ar protection, the carbon foam obtained by the PMS of step (2) at a high temperature of 1600 ° C under conditions at a high temperature of 1600 ° C, resulting in a SiC foam having a three-dimensional mesh structure.
[0051] The porosity of the SiC foam prepar...
Embodiment 3
[0054] A SiC foam integral catalyst for methane catalyzed, including a first carrier, wherein the first carrier is a SiC foam; a transition layer is deposited on the SiC foam, and a second carrier is deposited on the transition layer, and the SiC foam integral catalyst There is noble metal in the middle load.
[0055] In the present embodiment, the molar ratio of carbon and silicon in the SiC foam is 1.1: 1; the SiC foam has a three-dimensional mesh structure with a porosity of 97%, and the compressive strength is 1.3 MPa.
[0056] In this embodiment, the transition layer is mullite; the thickness of the transition layer is 5 μm; the mass of the transition layer is 29% of the total mass of the SiC foam integral catalyst.
[0057] In this embodiment, the second carrier is a burn green stone oxide, specifically LA 2 ZR 2 O 7 The second carrier has a thickness of 41 μm; the mass of the second carrier is 57% of the total mass of the SiC foam integral catalyst; the second carrier has a...
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