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首页> 外文期刊>Journal of Applied Polymer Science >Intelligent sustained-release microgel for reduced permeability of fluid channels: Synthesis and properties
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Intelligent sustained-release microgel for reduced permeability of fluid channels: Synthesis and properties

机译:智能持续释放微凝胶,降低流体通道的渗透性:合成和性质

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Polymer microspheres as fluid diverting agents have been applied for profile control in deep reservoirs. However, its reservoir adaptability strictly requires the matching between the particle size and the pore radius, which are hard to realize due to uncertainty of pore radius caused by long-term water flooding. That behavior has severely reduced their plugging performance to the large channel. The objective of this study was to prepare a kind of intelligent sustained-release microgel to solve the problem, which could slowly release of sodium silicate during migration, form the larger aggregates and plug high permeability reaching deep reservoir. We developed a novel blocking agent, which is an amphoteric microgel (OICMS) synthesized by light-initiated polymerization followed by the adsorption of a sodium silicate solution. The microgel properties, including the adsorption and release properties of a sodium silicate solution, and its influencing factors were investigated. The results showed that the OICMS had larger adsorption and release ratio of sodium silicate than conventional polymer microspheres, influenced by the ionic degree, molecular weight, amount of pore-forming agent, and cross-linking density.
机译:聚合物微球作为流体转向剂已被应用于深部油藏的调剖。然而,其储层适应性严格要求粒径与孔隙半径的匹配,由于长期注水导致孔隙半径的不确定性,这很难实现。这种行为严重降低了它们对大通道的封堵性能。本研究的目的是制备一种智能型缓释微凝胶,以解决水玻璃在运移过程中缓慢释放,形成更大的团聚体,堵塞高渗透性深层储层的问题。我们开发了一种新型的封闭剂,它是一种两性微凝胶(OICMS),通过光引发聚合然后吸附水玻璃溶液合成。研究了微凝胶的性能,包括水玻璃溶液的吸附和释放性能及其影响因素。结果表明,与传统的聚合物微球相比,OICMS具有更大的水玻璃吸附和释放率,受离子度、分子量、成孔剂用量和交联密度的影响。

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