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首页> 外文期刊>Journal of Applied Polymer Science >Preparation of highly concentrated inverse emulsions of acrylamide-based anionic copolymers as efficient water rheological modifiers
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Preparation of highly concentrated inverse emulsions of acrylamide-based anionic copolymers as efficient water rheological modifiers

机译:制备高浓度丙烯酰胺基阴离子共聚物反相乳液作为有效的水流变改性剂

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摘要

Highly concentrated inverse anionic polymeric emulsions (with a solid content of up to 63 wt %) were prepared using a two-step methodology: (i) First, acrylamide, acrylic acid, and its ammonium salts crosslinked copolymers were obtained by inverse emulsion polymerization, (ii) The water/volatile oil mixture was then separated from the heterogeneous system by vacuum distillation. To maintain sufficient stability during the reaction and distillation processes, a ternary surfactant mixture was used. A surface response methodology was employed to obtain the optimal values of the factors involved in both process and product specifications, and to maximize the high performance of these inverse anionic polymer emulsions. This yielded a product containing up to 63.2 wt % solids capable of achieving Brookfield viscosities as high as 40.3 Pas, using an aliquote of these concentrated inverse polymer emulsions (1.8 wt % in deionized water). Rheological characterization (oscillatory and rotational measurements) was carried out to evaluate the behavior of the diluted inverse anionic polymer emulsion in water thickening. The methodology developed can be used to formulate a wide range of viscoelastic (G/G) water-based products from anionic water soluble polymers. (c) 2016 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2016, 133, 43502.
机译:使用两步法制备高浓度的阴离子聚合物乳液(固体含量最高为63 wt%):(i)首先,通过反相乳液聚合获得丙烯酰胺,丙烯酸及其铵盐交联共聚物, (ii)然后通过真空蒸馏将水/挥发油混合物与非均相系统分离。为了在反应和蒸馏过程中保持足够的稳定性,使用了三元表面活性剂混合物。使用表面响应方法来获得工艺和产品规格中涉及的因素的最佳值,并使这些反阴离子聚合物乳液的高性能最大化。使用这些浓缩的反相聚合物乳液的等分试样(在去离子水中为1.8 wt%),得到的产品含有高达63.2 wt%的固体,能够实现高达40.3 Pa s的Brookfield粘度。进行流变学表征(振荡和旋转测量)以评估稀释的反型阴离子聚合物乳液在水增稠中的行为。所开发的方法可用于由阴离子水溶性聚合物配制各种粘弹性(G / G)水性产品。 (c)2016 Wiley Periodicals,Inc. J. Appl。 Polym。科学2016,133,43502。

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