Method for producing water reducer of cement concrete
A manufacturing method and technology of water reducing agent, applied in the field of building materials, can solve problems such as high price, difficult construction, complex ingredients, etc., and achieve the effects of simple production equipment, easy control of process, and high water reducing efficiency
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Embodiment 1
[0027] In 600 ml of water at 85°C, add 55 grams of calcium lignosulfonate, 86 grams of p-aminobenzenesulfonic acid, and 25 grams of phenol, stir for 30 minutes, add 22 grams of sodium hydroxide, and adjust the pH of the solution to 7-8 , at 85°C, drop 100 grams of formaldehyde, react at this temperature for 9 hours, cool to obtain a liquid superplasticizer (water agent), with a solid content of about 24%, and then dry to obtain a powdery superplasticizer ( powder).
[0028] Measurement results of fluidity of cement slurry
[0029] Initially
Embodiment 2
[0031] At 90°C, in 1000 ml of water, add 55 grams of calcium lignosulfonate, 86 g of p-aminobenzenesulfonic acid, and 55 grams of phenol, stir for 30 minutes, add 23 grams of sodium hydroxide, and adjust the pH value of the solution to 8. ℃, drop 120 grams of formaldehyde, react at this temperature for 10 hours, and cool to obtain a liquid superplasticizer (water agent), with a solid content of about 24%. After drying, a powdery high-efficiency water reducer is obtained.
[0032] Fluidity of cement paste and its change over time
[0033] Example 1 of the combination of cement slurry
[0034] Superplasticizer content
Embodiment 3
[0036] At 90 DEG C, 90 grams of calcium lignosulfonate and 260 grams of p-aminobenzenesulfonic acid were dropped into 1000 milliliters of water. Phenol 140 grams. Stir for 30 minutes, add 68 grams of sodium hydroxide, adjust the pH value of the solution to 8, drop in 360 grams of formaldehyde at a temperature of 90 ° C, react at this temperature for 10 hours, and cool to obtain a liquid superplasticizer (water agent). The solid content is about 30%, and then dried to obtain a powdery high-efficiency water reducer.
[0037] Fluidity of cement paste and its change over time
[0038] Mixing ratio of cement paste:
[0039] Superplasticizer content
[0040] Comparison of the fluidity of the high-efficiency water-reducer of the present invention with that of the current naphthalene-based high-efficiency water-reducer:
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