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The Thermal Gelation Behavior and Performance Evaluation of High Molecular Weight Nonionic Polyacrylamide and Polyethyleneimine Mixtures for In-Depth Water Control in Mature Oilfields

机译:高分子量非离子聚丙烯酰胺和聚乙烯亚胺混合物对成熟油田深入水控制的热凝胶化行为及性能评价

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摘要

A delayed crosslinked polymer gel was developed for in-depth water control in mature oilfields. The thermal gelation behavior of nonionic polyacrylamide (NPAM) and PEI was investigated, and sodium citrate (NaCit) was selected as a new retarder to prolong the gelation time. The gelation performance of NPAM/PEI gel system can be adjusted by varying NPAM or PEI concentration, and a quadratic model is developed by statistical analysis, which predicts the gelation time of NPAM/PEI gel system. The obtained model shows high significance and good reliability, as suggested by the F-ratio of 175.16 and high adjusted R-square value (0.9732). The addition of NaCit exhibits a good delayed gelation effect on the NPAM/PEI gel system, better than that of NaCl. The decrease of the initial pH value of the gelling solution leads to the weaker gel viscosity and longer gelation time due to the protonation of amine groups on the PEI chains. Increasing temperature results in higher gel viscosity but shorter gelation time. The gel system in the presence of NaCit exhibits good compatibility with injection and formation water. A dense three-dimensional structure was observed in matured NPAM/PEI/NaCit gel, and it could keep stable below 160 °C. The gel system could effectively reduce the permeability (>95%) and restricted the flow of water after matured in natural cores.
机译:在成熟油田中开发了一种延迟交联的聚合物凝胶,用于深入的水控制。研究了非离子聚丙烯酰胺(NPAM)和PEI的热凝胶化行为,选择柠檬酸钠(NaCit)作为延长凝胶化时间的新延迟器。可以通过改变NPAM或PEI浓度来调节NPAM / PEI凝胶系统的凝胶化性能,并且通过统计分析开发了二次模型,其预测NPAM / PEI凝胶系统的凝胶化时间。所获得的模型显示出高的意义和良好的可靠性,如F比率为175.16和高调节的R-Square值(0.9732)。添加NaCit在NPAM / PEI凝胶系统上表现出良好的延迟凝胶化效果,比NaCl更好。由于PEI链上的胺基质量,胶凝溶液的初始pH值的降低导致凝胶粘度和较长的凝胶化时间。增加的温度导致较高的凝胶粘度但凝胶化时间较短。在NaCit存在下的凝胶系统表现出与注射和形成水的良好相容性。在成熟的NPAM / PEI / NACIT凝胶中观察到致密的三维结构,并且可以保持稳定在160℃以下。凝胶系统可以有效地降低渗透率(> 95%),并在天然核中成熟后的水流动。

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