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A novel hydrophobically associating water-soluble polymer used as constant rheology agent for cement slurry

  • Yuhuan Bu
  • , Mengran Xu
  • , Huajie Liu
  • , Annan Zhou
  • , Jiapei Du
  • , Xin Yang
  • , Shenglai Guo*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

During the process of well cementing in deep water, the cement slurry experiences a wide range of temperature variation from low temperature at seabed to high temperature in downhole. The elevated temperature affects the rheology of cement slurry. The change of rheology of cement slurry could influence the safety of cementing operation. The aim of this paper is to develop a new kind of hydrophobically associating water-soluble polymer (NHAWP) as an additive to prepare a constant rheology oil well cement slurry, which can be used at temperature range from 4C to 90C. The acrylamide, 2-Acrylamide-2-methylpropionic acid and stearyl methylacrylate were applied to synthesize the NHAWP by the inverse microemulsion polymerization. Test results indicate that the critical association temperature of NHAWP is 45C. The critical association temperature is independent of NHAWP concentration, salt concentration and alkalinity of solution. When the temperature is below 45C, NHAWP shows little influence on the viscosity of solution. When the temperature is above 45C, the NHAWP forms spatial network structure by intermolecular hydrophobic association and thus increases the viscosity of solution significantly. The NHAWP also displays good thermal stability and excellent salt and alkali resistance properties. In addition, the NHAWP shows nearly no negative influence on the basic properties of cement slurry, which indicates that the NHAWP can be used as a constant rheology agent to prepare a cement slurry with constant rheology in the temperature range of 4C to 90C.

Original languageEnglish
Article number211170
JournalRoyal Society Open Science
Volume9
Issue number2
DOIs
StatePublished - 2022
Externally publishedYes

Keywords

  • Cement slurry
  • Constant rheology
  • water-soluble polymer

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