A kind of preparation method of belite sulphoaluminate cement
A technology of Belite sulfoaluminate and teresulfoaluminate, which is applied in the field of preparation of Belite sulfoaluminate cement, can solve problems such as environment and high energy consumption, achieve low energy consumption, solve environmental problems, The effect of reducing energy consumption
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Embodiment 1
[0019] The ratio of raw materials and water consumption designed in this embodiment are as shown in Table 2.
[0020] Table 2 Embodiment 1 raw material ratio and water consumption
[0021] Example 1
Calcium-enriched liquid slag
Carbide slag
Desulfurization gypsum
Bauxite
water
Mass / g
235
394
341
30
373
[0022] The specific implementation steps are as follows:
[0023] 1) Mixing: Weigh the raw materials according to the proportion and put them in the planetary mill, add water, grind for 2 hours, take out and pour the slurry into the mold, demould after molding, and obtain a block sample;
[0024] 2) Hydrothermal synthesis: put the above sample in a digital display constant temperature stirring circulation curing box that has been heated to a set temperature of 60°C, take it out and cool it after constant temperature curing for 10 hours;
[0025] 3) Calcination: After the cooled block sample is crushed, it is placed in a...
Embodiment 2
[0030] The ratio of raw materials and water consumption designed in this embodiment are as shown in Table 4.
[0031] Table 4 Embodiment 2 raw material ratio and water consumption
[0032] Example 2
Calcium-enriched liquid slag
Carbide slag
Phosphogypsum
Bauxite
water
Mass / g
161
364
416
59
363
[0033] The specific implementation steps are as follows:
[0034] 1) Mixing: Weigh the raw materials according to the proportion and place them in a planetary mill, add water, grind for 5 hours, take out and pour the slurry into the mold, demould after molding, and obtain a block sample;
[0035] 2) Hydrothermal synthesis: put the above sample in a digital display constant temperature stirring circulation curing box that has been heated to a set temperature of 90°C, take it out and cool it after constant temperature curing for 6 hours;
[0036] 3) Calcination: After the cooled block sample is crushed, it is placed in a high-temp...
Embodiment 3
[0041] The ratio of raw materials and water consumption designed in this embodiment are as shown in Table 6.
[0042] Table 6 Embodiment 3 raw material ratio and water consumption
[0043] Example 3
coal gangue
Carbide slag
Desulfurization gypsum
Tailings bauxite
water
Mass / g
95
392
376
137
329
[0044] The specific implementation steps are as follows:
[0045] 1) Mixing: Weigh the raw materials according to the proportion and put them in the planetary mill, add water, grind for 7 hours, take out and pour the slurry into the mold, demould after molding, and obtain a block sample;
[0046] 2) Hydrothermal synthesis: Place the above sample in an autoclave that has been heated to a set temperature of 115°C, and take it out to cool after constant temperature curing for 4.5 hours;
[0047] 3) Calcination: After the cooled block sample is crushed, it is placed in a high-temperature furnace, calcined at 960°C for 70 minutes, t...
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