首页> 外文期刊>Journal of Sol-Gel Science and Technology >Experimental investigation of partially hydrolyzed polyacrylamide-hexamine-pyrocatechol polymer gel for permeability modification
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Experimental investigation of partially hydrolyzed polyacrylamide-hexamine-pyrocatechol polymer gel for permeability modification

机译:部分水解聚丙烯酰胺 - 六胺 - 六胺 - PyrocateChol聚合物凝胶进行渗透性修饰的实验研究

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摘要

The crosslinked polymer gel systems are most widely used as injection fluids for the maintenance of adequate mobility control and favorable permeability profiles within the reservoir. The application of these systems requires careful monitoring of the gelation behavior to avoid premature gelation or prolongs shut-in times under reservoir conditions. The paper deals with the investigation of disproportionate permeability reduction (DPR) of reservoir rock using partially hydrolyzed polyacrylamide-hexamine-pyrocatechol gels. Mutual correlation was observed between gelation time of the developed organic polymer gel in bulk gelation studies and other parameters such as the concentration of polymer and crosslinkers as well as temperature. An increase in gelation time was observed with the increase in the concentration of polymer and crosslinkers as well as temperature. The stability of the developed polymer gel was observed at the polymer and crosslinker concentration from 0.9 to 1.1 and from 0.3 to 0.5 wt.%, respectively. The thermal stability of the developed polymer gel was exhibited at a higher temperature of about 120 degrees C. The stabilized polymer gel was used for in situ gelation study to evaluate the plugging ability of the polymer gel in sand pack. In situ gelation studies showed a good injectivity and plugging ability with potentiality for the DPR in the oil fields.
机译:交联的聚合物凝胶系统最广泛地用作用于维持储层内充足的迁移率控制和有利的渗透率的注射液。这些系统的应用需要仔细监测凝胶化行为,以避免在储层条件下避免过早凝胶化或延长关闭时间。本文涉及使用部分水解的聚丙烯酰胺 - 六胺 - 六胺 - 吡酰凝胶进行储层岩石岩岩渗透性减少(DPR)的研究。在散装凝胶研究中发育的有机聚合物凝胶中的凝胶化时间和其他参数之类的其他参数之间观察到互相关,例如聚合物和交联剂的浓度以及温度。随着聚合物和交联剂浓度以及温度的增加,观察到凝胶化时间的增加。在聚合物和交联剂浓度下观察到发育聚合物凝胶的稳定性,分别为0.9至1.1和0.3-0.5重量%。%。发育聚合物凝胶的热稳定性在约120℃的较高温度下呈现。稳定的聚合物凝胶用于原位凝胶化研究,以评估聚合物凝胶在砂包中的堵塞能力。在原位凝胶化研究表明,具有油田DPR潜力的良好的再射性和堵塞能力。

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