Method for synthesizing slow-release polycarboxylate water reducing agent
A polycarboxylic acid-based, slow-release technology, applied in the field of concrete admixture synthesis, can solve the problems of high energy consumption, high cost, and high concrete slump loss, achieve low construction investment, short production time, and prevent slump The effect of drop loss
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Embodiment 1
[0030] Example 1 : Under the temperature condition of 15°C, add 300g of isopentenol polyoxyethylene ether with a molecular weight of 2200, 26.52g of maleic anhydride, and 230g of deionized water into a 1L four-necked flask, and control the concentration of maleic anhydride and large The monomers all dissolved into a clear solution. Then add 1.05g of 50% concentration hydrogen peroxide and 0.05g of ferrous sulfate heptahydrate in the solution. Solution B prepared by 23.45 g of hydroxyethyl acrylate and 23.4 g of deionized water, and solution C of 1.80 g of mercaptopropionic acid and 0.32 g of sodium formaldehyde sulfoxylate dissolved in 47 g of deionized water were added dropwise. The solution B was added dropwise for 60 minutes, and the solution C was added dropwise 3 minutes after the solution B was added dropwise, and the dropwise addition was completed within 75 minutes. After the solution C was added dropwise, the reaction was continued for 60 minutes, and 229.4 g of dei...
Embodiment 2
[0031] Example 2 : Under the temperature condition of 25°C, add 300g of isopentenol polyoxyethylene ether with a molecular weight of 2400, 26.52g of maleic anhydride, and 230g of deionized water into a 1L four-necked flask. The body completely dissolved into a transparent solution. Then add 50% concentration hydrogen peroxide 1.05g in the solution. Solution B prepared by 23.45 g of hydroxyethyl acrylate and 23.4 g of deionized water, and solution C of 1.80 g of mercaptopropionic acid and 0.32 g of sodium formaldehyde sulfoxylate dissolved in 47 g of deionized water were added dropwise. The solution B was added dropwise for 60 minutes, and the solution C was added dropwise 3 minutes after the solution B was added dropwise, and the dropwise addition was completed within 75 minutes. After the solution C was added dropwise, the reaction was continued for 60 minutes, and 229.31 g of deionized water was added to adjust the concentration of the water reducer to 40wt%, which was re...
Embodiment 3
[0032] Example 3: At a temperature of 10°C, add 300 g of isopentenol polyoxyethylene polyoxypropylene ether with a molecular weight of 2200, 15.32 g of maleic anhydride, and 230 g of deionized water into a 1L four-necked flask. Anhydrides and macromonomers are all dissolved into a transparent solution. Then add 0.95g of 50% concentration hydrogen peroxide and 0.04g of ferrous sulfate heptahydrate in the solution. A solution B made of 34.60 g of hydroxyethyl acrylate and 34.6 g of deionized water, and a solution C of 1.65 g of mercaptopropionic acid and 0.30 g of sodium formaldehyde sulfoxylate dissolved in 47 g of deionized water were added dropwise. The solution B was added dropwise for 120 minutes, and the solution C was added dropwise 3 minutes after the solution B was added dropwise, and the dropwise addition was completed within 150 minutes. After solution C was added dropwise, the reaction was continued for 30 minutes, and 217.71 g of deionized water was added to adju...
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