Titanium dioxide-based sulfur recovery catalyst and preparation method thereof
A technology for the recovery of titanium dioxide and sulfur, which can be used in physical/chemical process catalysts, metal/metal oxide/metal hydroxide catalysts, chemical instruments and methods, etc., and can solve the problems of reduced activity, long reaction time, and high cost. The effect of short contact reaction time, good antioxidant capacity and low cost
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Embodiment 1
[0027] The titania-based sulfur recovery catalyst in this example consists of the following components: 86 parts by weight of porous oxides with a particle size of 180 μm, 12 parts by weight of graphene, 5 parts by weight of iron oxide and 6 parts by weight of manganese dioxide, wherein, The porous oxide is composed of 30 parts by weight of activated alumina with a particle size of 4-6 μm, 60 parts by weight of titanium dioxide with a particle size of 1-3 μm and 50 parts by weight of silicon dioxide with a particle size of 15-20 μm.
[0028] The preparation method of the titanium dioxide-based sulfur recovery catalyst in the present embodiment comprises the following steps:
[0029] (1) Prepare raw materials: Prepare raw materials according to the following parts by weight: 86 parts by weight of porous oxides with a particle size of 180 μm, 12 parts by weight of graphene, 5 parts by weight of iron oxide and 6 parts by weight of manganese dioxide, wherein the porous oxide The m...
Embodiment 2
[0040] The titanium dioxide-based sulfur recovery catalyst in this example consists of the following components: 90 parts by weight of porous oxides with a particle size of 160 μm, 15 parts by weight of graphene, 7 parts by weight of iron oxide and 4 parts by weight of manganese dioxide, wherein, The porous oxide is composed of 20 parts by weight of activated alumina with a particle size of 6-10 μm, 70 parts by weight of titanium dioxide with a particle size of 1-3 μm and 45 parts by weight of silicon dioxide with a particle size of 15-20 μm.
[0041] The preparation method of the titanium dioxide-based sulfur recovery catalyst in the present embodiment comprises the following steps:
[0042] (1) Prepare raw materials: Prepare raw materials according to the following parts by weight: 90 parts by weight of porous oxides with a particle size of 160 μm, 15 parts by weight of graphene, 7 parts by weight of iron oxide and 4 parts by weight of manganese dioxide, wherein the porous ox...
Embodiment 3
[0053] The titanium dioxide-based sulfur recovery catalyst in this example consists of the following components: 80 parts by weight of porous oxides with a particle size of 190 μm, 13 parts by weight of graphene, 8 parts by weight of iron oxide and 5 parts by weight of manganese dioxide, wherein, The porous oxide is composed of 25 parts by weight of activated alumina with a particle size of 4-6 μm, 50 parts by weight of titanium dioxide with a particle size of 1-2 μm and 40 parts by weight of silicon dioxide with a particle size of 15-20 μm.
[0054] The preparation method of the titanium dioxide-based sulfur recovery catalyst in the present embodiment comprises the following steps:
[0055] (1) Prepare raw materials: Prepare raw materials according to the following parts by weight: 80 parts by weight of porous oxides with a particle size of 190 μm, 13 parts by weight of graphene, 8 parts by weight of iron oxide and 5 parts by weight of manganese dioxide, wherein the porous oxi...
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