4.7 Article

Synthesis and Demulsification Properties of Poly (DMDAAC-co-DAMBAC) (9:1) Copolymer

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POLYMERS
卷 15, 期 3, 页码 -

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MDPI
DOI: 10.3390/polym15030562

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poly (DMDAAC-co-DAMBAC); copolymerization; weight-average molecular weight; demulsification performance

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By utilizing the copolymerization modification of DMDAAC, the deficiency of its monomer in application was resolved. The synthesis of poly (DMDAAC-co-DAMBAC) (9:1) was optimized using response surface methodology (RSM), resulting in a high molecular weight and demulsification rate for the polymer. This study demonstrates the potential application scope of the copolymer in emulsion demulsification.
Utilizing the copolymerization modification of dimethyl diallyl ammonium chloride (DMDAAC), the high positive charge density of the copolymer could be maintained, thereby facilitating the deficiency of its monomer in the application. In this paper, poly (DMDAAC-co-DAMBAC) (9:1) was synthesized with an aqueous polymerization method using DMDAAC and methyl benzyl diallyl ammonium chloride (DAMBAC) as monomers and 2,2'-azobis [2-methylpropionamidine] dihydrochloride (V50) as an initiator. Targeted to the product's weight-average relative molecular mass (M-w), the response surface methodology (RSM) was used to optimize the preparation process. The optimal process conditions were obtained as follows: w (M) = 80.0%, m (V50):m (M) = 0.00700%, m (Na(4)EDTA):m (M) = 0.00350%, T-1 = 50.0 degrees C, T-2 = 60.0 degrees C, and T-3 = 72.5 degrees C. The intrinsic viscosity ([eta]) of the product was 1.780 dL/g, and the corresponding double bond conversion (Conv.) was 90.25 %. Poly (DMDAAC-co-DAMBAC) (9:1) revealed a highest M-w of 5.637 x 10(5), together with the polydispersity index d (M-w/M-n) as 1.464. For the demulsification performance of simulated crude oil O/W emulsions, the demulsification rate of poly (DMDAAC-co-DAMBAC) (9:1) could reach 97.73%. Our study has illustrated that the copolymerization of DMDAAC and a small amount of DAMBAC with poor reactivity could significantly improve the relative molecular weight of the polymer, enhance its lipophilicity, and thus the application scope of the polymer.

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