Titanium oxide sulfur recovery catalyst with high specific surface area and preparation method thereof
A high specific surface area, sulfur recovery technology, applied in catalyst activation/preparation, physical/chemical process catalyst, sulfur preparation/purification, etc., to achieve the effect of increasing specific surface area
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Embodiment 1
[0031] A catalyst for recovering sulfur from titanium oxide with a high specific surface area, comprising the following raw materials proportioned by weight: 50 parts of metatitanic acid, 1 part of vegetable jelly, 22 parts of nitric acid, and 5 parts of silica-alumina sol;
[0032] Wherein, the solid phase mass content of the silica-alumina sol is 20%, the particle size of the metatitanic acid is 150-180 mesh, and the concentration of the nitric acid is 12%.
[0033] A preparation method of a high specific surface area titanium oxide sulfur recovery catalyst, comprising the following steps:
[0034] Step (1): Treatment of metatitanic acid: dry the hydrous metatitanic acid in a hot air drying furnace at a temperature of 90°C for 6 hours. After the drying is completed, use a ball mill to pulverize the metatitanic acid. sieve through a sieve;
[0035] Step (2): mixing metatitanic acid and vegetable glue: mixing the metatitanic acid and vegetable glue raw materials obtained in s...
Embodiment 2
[0042] A catalyst for recovering sulfur from titanium oxide with a high specific surface area, comprising the following raw materials proportioned by weight: 50 parts of metatitanic acid, 1 part of vegetable jelly, 24 parts of nitric acid, and 2 parts of silica-alumina sol;
[0043] Among them, the solid phase mass content of the silica-alumina sol is 35%, the particle size of the metatitanic acid is 150-180 mesh, and the concentration of nitric acid is 13%.
[0044] A preparation method of a high specific surface area titanium oxide sulfur recovery catalyst, comprising the following steps:
[0045] Step (1): Treatment of metatitanic acid: dry the hydrous metatitanic acid in a hot-air drying oven at 100°C for 8 hours, and pulverize it with a ball mill after drying, and use 150 mesh and 180 mesh sieve through a sieve;
[0046] Step (2): mixing metatitanic acid and vegetable glue: mixing the metatitanic acid and vegetable glue raw materials obtained in step (1) in a mechanical ...
Embodiment 3
[0053] A catalyst for recovering sulfur from titanium oxide with a high specific surface area, comprising the following raw materials proportioned by weight: 50 parts of metatitanic acid, 3 parts of vegetable jelly, 23 parts of nitric acid, and 3 parts of silica-alumina sol;
[0054] Wherein, the solid phase mass content of the silica-alumina sol is 25%, the particle size of the metatitanic acid is 150-180 mesh, and the concentration of the nitric acid is 15%.
[0055] A preparation method of a high specific surface area titanium oxide sulfur recovery catalyst, comprising the following steps:
[0056] Step (1): Treatment of metatitanic acid: dry the hydrous metatitanic acid in a hot-air drying oven at 100°C for 4 hours, and pulverize it with a ball mill after drying, and use 150 mesh and 180 mesh sieve through a sieve;
[0057] Step (2): mixing metatitanic acid and vegetable glue: mixing the metatitanic acid and vegetable glue raw materials obtained in step (1) in a mechanica...
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