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首页> 外文期刊>Journal of Applied Polymer Science >Stability of two-phase polymerization of acrylamide in aqueous poly(ethylene glycol) solution
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Stability of two-phase polymerization of acrylamide in aqueous poly(ethylene glycol) solution

机译:丙烯酰胺在聚乙二醇水溶液中的两相聚合稳定性

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A poly(acrylamide) (PAM) aqueous dispersion with high solid was successfully synthesized through two-phase polymerization of acrylamide (AM) in aqueous poly(ethylene glycol) (PEG) solution. To prepare stable PAM aqueous dispersion, the effects of initiator, monomer and PEG concentration on the stability of the aqueous two-phase polymerization system were investigated in detail. Dynamic light scattering (DLS) was applied to study the evolution of the size and size distribution of the aqueous PAM droplet in the initial stage of polymerization. A droplet aggregation period was found in the initial stage, in which the PAM coagulum is easy to be generated below the conversion of about 5% due to high polymerization rate. By analyzing the effects of PEG on the stability of this polymerization system, it was found that PEG plays both precipitant and stabilizer role. When PEG concentration ranges from 12 to 24%, increasing its use would promote the droplet stabilization; however, when PEG concentration exceeds 28%, increasing its use may accelerate the droplet formation which does not further favor the droplet stabilization. Furthermore, the viscosity evolution during the polymerization under various reaction conditions was determined by rotational viscometer on line. When monomer concentration exceeded 8%, increasing the initiator or monomer concentration would result in that the polymer produced in the continuous phase could not be separated in time due to the high viscosity. All these results demonstrated that the slower the polymerization rate is, the more stable PAM aqueous dispersion will be.
机译:通过将丙烯酰胺(AM)在聚乙二醇(PEG)水溶液中进行两相聚合,成功合成了高固含量的聚丙烯酰胺(PAM)水分散体。为了制备稳定的PAM水分散体,详细研究了引发剂,单体和PEG浓度对水两相聚合体系稳定性的影响。动态光散射(DLS)用于研究聚合初期PAM液滴的尺寸和尺寸分布的演变。在初始阶段发现了液滴聚集期,其中由于高聚合速率,在低于约5%的转化率下易于产生PAM凝结物。通过分析PEG对该聚合体系稳定性的影响,发现PEG同时起沉淀剂和稳定剂的作用。当PEG浓度为12%至24%时,增加其使用量将促进液滴的稳定;但是,当PEG浓度超过28%时,增加其使用量可能会加速液滴的形成,而这进一步不利于液滴的稳定。此外,通过在线旋转粘度计测定在各种反应条件下聚合过程中的粘度变化。当单体浓度超过8%时,引发剂或单体浓度的增加将导致连续相中产生的聚合物由于高粘度而不能及时分离。所有这些结果表明,聚合速率越慢,PAM水分散体将越稳定。

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