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Gelation Behavior Study of a Resorcinol–Hexamethyleneteramine Crosslinked Polymer Gel for Water Shut-Off Treatment in Low Temperature and High Salinity Reservoirs

机译:间苯二酚-六亚甲基三胺交联聚合物凝胶在低温和高盐度水库中的断水处理的胶凝行为研究

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Mature oilfields usually encounter the problem of high watercut. It is practical to use chemical methods for water-shutoff in production wells, however conventional water-shutoff agents have problems of long gelation time, low gel strength, and poor stability under low temperature and high salinity conditions. In this work a novel polymer gel for low temperature and high salinity reservoirs was developed. This water-shutoff agent had controllable gelation time, adjustable gel strength and good stability performance. The crosslinking process of this polymer gel was studied by rheological experiments. The process could be divided into an induction period, a fast crosslinking period, and a stable period. Its gelation behaviors were investigated in detail. According to the Gel Strength Code (GSC) and vacuum breakthrough method, the gel strength was displayed in contour maps. The composition of the polymer gel was optimized to 0.25~0.3% YG100 + 0.6~0.9% resorcinol + 0.2~0.4% hexamethylenetetramine (HMTA) + 0.08~0.27% conditioner (oxalic acid). With the concentration increase of the polymer gel and temperature, the decrease of pH, the induction period became shorter and the crosslinking was more efficient, resulting in better stability performance. Various factors of the gelation behavior which have an impact on the crosslinking reaction process were examined. The relationships between each impact factor and the initial crosslinking time were described with mathematical equations.
机译:成熟的油田通常会遇到含水率高的问题。在生产井中使用化学方法进行水切断是实用的,但是常规的水切断剂具有胶凝时间长,凝胶强度低以及在低温和高盐度条件下稳定性差的问题。在这项工作中,开发了一种适用于低温和高盐度储层的新型聚合物凝胶。该水切断剂具有可控的胶凝时间,可调节的胶凝强度和良好的稳定性能。通过流变实验研究了该聚合物凝胶的交联过程。该过程可以分为诱导期,快速交联期和稳定期。详细研究了其胶凝行为。根据凝胶强度代码(GSC)和真空穿透方法,凝胶强度显示在轮廓图中。将聚合物凝胶的组成优化为0.25〜0.3%YG100 + 0.6〜0.9%间苯二酚+ 0.2〜0.4%六亚甲基四胺(HMTA)+ 0.08〜0.27%调理剂(草酸)。随着聚合物凝胶浓度的增加和温度的升高,pH值的降低,诱导时间缩短,交联效率提高,稳定性得到改善。研究了影响交联反应过程的各种胶凝行为因素。用数学方程式描述了每个影响因子与初始交联时间之间的关系。

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