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A Novel and Comprehensive Study of Polymeric and Traditional Phosphonate Inhibitors for High-Temperature Scale Control

机译:新型和全面研究用于高温规模控制的聚合物和传统膦酸酯抑制剂

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摘要

A novel barite-inhibition assay based on the nucleation and inhibition model has been proposed and used to evaluate the thermal stability of phosphonates and polymeric scale inhibitors with regard to their potential application in high-temperature wells. Systematic experiments have been conducted to investigate the time (minutes to days) and temperature (up to 200℃) dependence of inhibitor thermal degradation, the impact of stainless steel and iron on the degradation of inhibitors at high temperatures, and the difference between aging tests with inhibitors in solution and with those inhibitors adsorbed on core materials. The results not only enable a more accurate understanding of the thermal degradation of scale inhibitors but also facilitate the selection and placement of scale inhibitors for high-temperature oil and gas production.
机译:提出了一种基于成核和抑制模型的重晶石抑制新方法,并用于评估膦酸酯和聚合物阻垢剂在高温井中的潜在应用的热稳定性。已经进行了系统的实验,以研究抑制剂热降解的时间(分钟至数天)和温度(高达200℃)的依赖性,高温下不锈钢和铁对抑制剂降解的影响以及老化测试之间的差异溶液中的抑制剂以及吸附在核心材料上的抑制剂。结果不仅能够更准确地了解阻垢剂的热降解性能,而且还有助于高温油气生产中阻垢剂的选择和放置。

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  • 来源
    《SPE journal》 |2013年第3期|575-582|共8页
  • 作者单位

    Rice University Brine Chemistry Consortium;

    Rice University Brine Chemistry Consortium;

    Rice University Brine Chemistry Consortium;

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  • 原文格式 PDF
  • 正文语种 eng
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