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Synthesis of ammonium persulfate microcapsule with a polyaniline shell and its controlled burst release

机译:用聚苯胺壳合成过硫酸铵微胶囊及其控制爆发

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摘要

Polymer hydraulic fracturing is important for increasing production during petroleum exploitation. After fracturing, the high-viscosity polymer should be completely decomposed by gel breakers (ammonium persulfate [APS]) to realize high conductivity in the proppant pack. A new series of polyaniline microcapsules loaded with APS for the preparation of delayed-release gel breakers were synthesized via in situ polymerization. The silica nanoparticles were doped in polyaniline to control the release of the encapsulated APS. The morphology, shell wall thickness, and elemental composition of the microcapsules were characterized by scanning electron microscopy, transmission electron microscopy, and two-dimensional scanned energy-dispersive X-ray spectroscopy. The results revealed that the microcapsules were irregularly spherical with average diameters of about 5-6 mu m and had shell thicknesses of 150-300 nm, and the silica nanoparticles had been successfully doped in the polyaniline shell. The microcapsules had a burst release pattern, and their initial release time was precisely controlled by adjusting the concentration and temperature of the sodium hydroxide solution. With increased demands for high performance delayed-release microcapsules, the prepared polyaniline microcapsules loaded with APS show great potential for practical applications in petroleum exploitation, self-healing coating, fiber printing, and grease.
机译:聚合物水力压裂是石油开采中增产的重要手段。压裂后,高粘度聚合物应通过破胶剂(过硫酸铵[APS])完全分解,以实现支撑剂包中的高导电性。采用原位聚合法制备了一系列用于制备延迟释放破胶剂的APS聚苯胺微胶囊。将二氧化硅纳米颗粒掺杂到聚苯胺中以控制封装的APS的释放。通过扫描电子显微镜、透射电子显微镜和二维扫描能量色散X射线光谱对微胶囊的形貌、壳壁厚度和元素组成进行了表征。结果表明,微胶囊呈不规则球形,平均直径约为5-6μm,壳层厚度为150-300nm,二氧化硅纳米颗粒已成功掺杂到聚苯胺壳层中。微胶囊具有突发释放模式,通过调节氢氧化钠溶液的浓度和温度可以精确控制其初始释放时间。随着人们对高性能缓释微胶囊的需求不断增加,制备的APS聚苯胺微胶囊在石油开采、自愈涂层、纤维印刷和油脂等领域显示出巨大的应用潜力。

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