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首页> 外文期刊>Iranian polymer journal >Emulsion Copolymerization of Butyl Acrylate and Glycidyl Methacrylate: Determination of Monomer Reactivity Ratios
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Emulsion Copolymerization of Butyl Acrylate and Glycidyl Methacrylate: Determination of Monomer Reactivity Ratios

机译:丙烯酸丁酯和甲基丙烯酸缩水甘油酯的乳液共聚:单体反应率的测定

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摘要

Copolymers of butyl acrylate (BA) and glycidyl methacrylate (GMA) were prepared by batch emulsion copolymerization at 75℃, using potassium persulphate (KPS) as an initiator, sodium dodecylbenzene sulphonate (SDBS) as an emulsifier and sodium bicarbonate as a buffer. Composition of copolymers was determined by elemental analysis and the monomer reactivity ratios were estimated by five conventional linear methods at low monomer conversions, i.e., methods of Mayo-Lewis (ML), Fineman-Ross (FR), inverted Fineman-Ross (IFR), Ezrielev-Brokhina-Roskin (EBR) and Kelen-TUdos (KT). All methods resulted in higher reactivity ratios for GMA comparing to those of BA (ML: r_B = 0.15 and r_G = 1.51, FR: r_B = 0.22 and r_G = 1.85, IFR: r_B = 0.16 and r_G = 1.57, EBR: r_B = 0.18 and r_G = 1.77, and KT: r_B = 0.30 and r_G = 1.57). The results also showed that, compared to homogeneous polymerizations (bulk and solution), reactivity ratio of GMA is reduced in emulsion polymerization due to its relative water-solubility, whereas the reactivity ratio of BA is distinctly increased. The effect of the reactivity ratios on the monomer conversion was primarily studied, as well. The results showed that monomer conversion is increased when using higher GMA feed content due to higher reactivity of GMA.
机译:以过硫酸钾(KPS)为引发剂,十二烷基苯磺酸钠(SDBS)为乳化剂,碳酸氢钠为缓冲剂,在75℃下通过间歇乳液共聚制备丙烯酸丁酯(BA)和甲基丙烯酸缩水甘油酯(GMA)的共聚物。通过元素分析确定共聚物的组成,并通过五种常规线性方法在低单体转化率下估算单体反应率,例如,Mayo-Lewis(ML),Fineman-Ross(FR),倒Fineman-Ross(IFR)方法,Ezrielev-Brokhina-Roskin(EBR)和Kelen-TUdos(KT)。与BA相比,所有方法均导致GMA的反应率更高(ML:r_B = 0.15和r_G = 1.51,FR:r_B = 0.22和r_G = 1.85,IFR:r_B = 0.16和r_G = 1.57,EBR:r_B = 0.18和r_G = 1.77,以及KT:r_B = 0.30和r_G = 1.57)。结果还表明,与均相聚合(本体和溶液)相比,乳液聚合中GMA的反应性比率由于其相对水溶性而降低,而BA的反应性比率则明显增加。还主要研究了反应性比对单体转化率的影响。结果表明,由于使用更高的GMA反应性,使用更高的GMA进料含量可以提高单体转化率。

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