Preparation of polycarboxylic acid water reducing agent for prefabricated part
A technology for prefabricated components and polycarboxylic acid, which is applied in the field of preparing high-performance water-reducing agent for concrete, can solve problems such as being unfavorable for product storage, and achieve the effects of preventing side reactions, reducing production costs, and improving the dispersion of water-reducing agents.
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Embodiment 1
[0030] Add 80g of methoxypolyethylene glycol with a molecular weight of M2000 to the reaction vessel equipped with a stirring, condensing, and effluent reflux device, and fully melt it at a temperature of 110°C. Add 0.14g of a polymerization inhibitor hydroquinone, and react for 15 minutes 2.88g of acrylic acid, 4.00g of concentrated sulfuric acid, and 16g of cyclohexane were added to the reaction vessel in sequence, kept at a constant temperature for 3.5 hours, and the cyclohexane was removed by vacuuming to obtain a mixture of methoxy polyethylene glycol acrylate and acrylic acid . During the second step of polymerization, the esterification reaction was added into a four-necked flask to obtain mixture a, 71.7 g of water was continuously stirred, and the temperature was raised to 50° C. in a water bath. Add 17.28g of acrylic acid, 22.1g of sodium methacrylate, and 80g of ammonium persulfate aqueous solution with a concentration of 1% into the reaction kettle at one time, rai...
Embodiment 2
[0032]Add 80g of methoxypolyethylene glycol with a molecular weight of M3000 to the reaction vessel equipped with a stirring, condensing, and effluent reflux device, and fully melt it at a temperature of 100°C. Add 0.01g of a polymerization inhibitor hydroquinone, and react for 10 minutes , then sequentially add 1.0g of acrylic acid, 0.06g of concentrated sulfuric acid, and 6.4g of cyclohexane into the reaction vessel, keep the temperature at constant temperature for 6.5 hours, and remove the cyclohexane by vacuuming to obtain a mixture of methoxy polyethylene glycol acrylate and acrylic acid a. During the second step of polymerization, the esterification reaction was added into a four-necked flask to obtain a mixture a, 128.5 g of water was continuously stirred, and the temperature was raised to 50°C by heating in a water bath. 2.1g of p-toluenesulfonic acid, 13.8g of AMPS, and 72.5g of ammonium persulfate mass aqueous solution with a concentration of 20% were added to the re...
Embodiment 3
[0034] Add 80g of methoxypolyethylene glycol with a molecular weight of M3000 to the reaction vessel equipped with a stirring, condensing, and effluent reflux device, and fully melt it at a temperature of 140°C. Add 0.23g of a polymerization inhibitor hydroquinone, and react for 13 minutes , and then sequentially add 5.76g of acrylic acid, 2.0g of p-toluenesulfonic acid, and 24g of cyclohexane into the reaction vessel, keep the temperature for 5 hours, and remove the cyclohexane by vacuuming to obtain methoxypolyethylene glycol acrylate and acrylic acid. mixture a. During the second step of polymerization, the esterification reaction was added into a four-necked flask to obtain mixture a, 108.5 g of water was continuously stirred, and the temperature was raised to 45°C by heating in a water bath. Add 29.4 g of sodium methacrylsulfonate, 11.2 g of N, N-methylene acrylamide, and 230 g of ammonium persulfate aqueous solution with a concentration of 20% into the reaction kettle at...
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