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首页> 外文期刊>Journal of Molecular Liquids >High molecular weight copolymers as rheology modifier and fluid loss additive for water-based drilling fluids
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High molecular weight copolymers as rheology modifier and fluid loss additive for water-based drilling fluids

机译:高分子量共聚物作为水性钻井液的流变改性剂和流体损失添加剂

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In this work, the impact of molecular structure such as the degree of hydrolysis (DOH) and nature of comonomers in acrylamide-based copolymers on the rheological and filtration properties of bentonite dispersions was assessed using three different water-soluble polymers for water-based drilling fluids. These polymers are (1) copolymer of acrylamide and 2-acrylamido-2-methylpropane sulfonic acid (AMPS) with 10% DOH (P1), (2) copolymer of acrylamide and 2-acrylamido-2-methylpropane sulfonic acid (P2) with 25% DOH, and (3) copolymer of acrylamide and acrylic acid (P3) with 15% DOH. Steady shear rheology data was fitted to the Herschel-Bulkley model and fiowability test was performed at 25 degrees C and 85 degrees C. Aging of bentonite and bentonite/polymer dispersions was performed at 90 degrees C for 16 h. Results showed that the incorporation of polymers in bentonite enhanced the filtration and rheological properties. The bentonite/P3 dispersion showed better rheological properties compared to other bentonite/polymer dispersions. The better rheological properties of bentonite/P3 dispersion suggest that acrylamide-based copolymers containing smaller comonomers such as acrylic acid are better compared to the bulky comonomers such as AMPS for drilling fluids applications. The filtration properties are less affected by the DOH and nature of comonomers, nevertheless, all polymer/bentonite dispersions showed better filtration properties compared to bentonite dispersion. The use of this high molecular weight polymer provides high thermal stability, superior rheological properties and better filtration characteristics for water-based drilling fluids. (C) 2017 Elsevier B.V. All rights reserved.
机译:在这项工作中,使用三种不同的水溶性聚合物对水性钻井的三种不同水溶性聚合物评估丙烯酰胺基共聚物中丙烯酰胺基共聚物中的水解度(OH)和丙烯酰胺类共聚单体的性质的影响。用三种不同的水溶性聚合物评估膨润土分散体的流变和过滤性质液体。这些聚合物是丙烯酰胺和2-丙基酰胺-2-甲基丙烷磺酸(AMP)的共聚物,其中10%DOH(P1),(2)丙烯酰胺和2-丙基酰胺-2-甲基丙烷磺酸(P2)的共聚物25%WOH,(3)丙烯酰胺和丙烯酸(P3)的共聚物,15%WOH。稳定的剪切流变学数据安装在Herschel-Bulkley模型中,并且在25摄氏度和85摄氏度下进行测量试验,膨润土和膨润土/聚合物分散体的老化在90℃下进行16小时。结果表明,膨润土中聚合物的掺入增强了过滤和流变性质。与其他膨润土/聚合物分散体相比,Bentonite / P3分散体显示出更好的流变性质。膨润土/ P3分散体的更好流变性能表明,与诸如AMPS的粗型共聚单体如AMPS,含有较小的共聚单体的丙烯酰胺基共聚物,例如丙烯酸,例如用于钻井液应用。过滤性能受到共聚单体的DOH和性质的影响,虽然,与膨润土分散体相比,所有聚合物/膨润土分散体显示出更好的过滤性能。使用该高分子量聚合物提供高热稳定性,流变性质,以及用于水性钻井液的更好的过滤特性。 (c)2017年Elsevier B.V.保留所有权利。

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