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Aminated Copolymers as Flow Improvers for Super-viscous Crude Oils

机译:胺化共聚物作为超粘原油的流动改进剂

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The new flow improvers for super-viscous crude oils were developed via esterification of polybasic high carbon alcohol with methacrylate and copolymerization of monomers followed by amination of copolymers. The structure of the synthesized polymer flow improver additive was confirmed by IR spectroscopy and the crystal structure of the flow improver additives were determined by X-ray diffraction analysis. The structure of wax crystals was also studied at the same time. The results showed that the wax crystal structure was closely related with the crystal structure of the flow improver, which could change the pour point depression and viscosity reduction behavior of the crude oil. When the wax crystal structure matched well with that of the additive, the wax crystals were dispersed satisfactorily, resulting in favorable effects in terms of pour point depression and viscosity reduction. The new synthesized aminated polymer flow improver additive was most efficient for treating super-viscous crude oils. The super-viscous crude oil had a high content of resins and asphaltenes, which might aggregate onto the surface of wax crystals to form blocks to limit the crude oil fluidity. However, amination of copolymers having similar structure with the resins and asphaltenes contained in crude oil could dissolve the huge polar groups to make the deposit formation difficult.
机译:通过多元高碳醇与甲基丙烯酸酯的酯化反应和单体的共聚反应,然后胺化共聚物,开发了新型的高粘度原油流动改进剂。通过IR光谱确认合成的聚合物流动改进剂添加剂的结构,并且通过X射线衍射分析确定流动改进剂添加剂的晶体结构。同时也研究了蜡晶体的结构。结果表明,蜡的晶体结构与流动改进剂的晶体结构密切相关,可以改变原油的降凝点和降低粘度的行为。当蜡晶体结构与添加剂的晶体结构良好匹配时,蜡晶体令人满意地分散,从而在降低倾点和降低粘度方面产生有利的效果。新型合成的胺化聚合物流动改进剂添加剂对处理超粘原油最有效。超粘原油中含有大量的树脂和沥青质,它们可能会聚集在蜡晶体的表面上,形成块状,从而限制了原油的流动性。然而,与原油中包含的树脂和沥青质具有相似结构的共聚物的胺化可溶解巨大的极性基团,从而使沉积物形成困难。

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