> The destabilization of asphaltenes in crude oil mainly happens due to variations in pressu'/> Polycardanol and Poly(cardanol‐co‐styrene): Synthesis, Characterization, and Performance as Asphaltene Flocculant
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Polycardanol and Poly(cardanol‐co‐styrene): Synthesis, Characterization, and Performance as Asphaltene Flocculant

机译:聚琥珀醇和聚(Cardanol-Co-苯乙烯):合成,表征和性能作为沥青质絮凝剂

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> The destabilization of asphaltenes in crude oil mainly happens due to variations in pressure, temperature, and oil composition; causing significant losses. Polymers containing specific groups can be used as asphaltene stabilizers, thus avoiding their precipitation, or as asphaltene flocculants in a particular type of unconventional oil, for example, assisting in further destabilization of the model system to enable removal of suspended fine solids, such as kaolinite. Asphaltene precipitation is usually evaluated by tests with variation in stability of asphaltenes in function of adding a flocculant solvent. In this work, two molecules with different amounts of cardanol and styrene are synthesized and structurally characterized by FTIR and 1 H NMR. Their molar mass is also determined by SEC and their thermal stability is measured by TGA. In addition, the efficiency of these synthesized molecules as asphaltene dispersants or flocculants is analyzed. The stability of asphaltenes is monitored by precipitation tests induced by a flocculant agent (n‐heptane), using an ultraviolet–visible (UV–vis) spectrometer. The synthesis results indicated formation of an oligomer instead of a polymer. The asphaltene stability results indicate that the synthesized molecules can act as asphaltene flocculants, decreasing the onset of precipitation to smaller volumes of n‐heptane. Furthermore, the increase in concentration of these synthesized molecules in the model systems containing asphaltenes dispersed in mixtures of toluene and n‐heptane in different concentrations promote greater flocculant action of the asphaltenes.
机译: <第XML:ID =“Masy201800105-SEC-0001”>

由于压力,温度和压力变化,沥青质的稳定化主要发生了油组成;造成显着的损失。含有特定基团的聚合物可用作沥青质稳定剂,从而避免它们的沉淀,或作为特定类型的非常规油中的沥青质絮凝剂,例如,辅助模型系统的进一步稳定化,以便去除悬浮的细固体,例如高岭石等悬浮的细固体。通常通过试验评估沥青质沉淀,其具有添加絮凝剂溶剂的沥青质稳定性的变化。在这项工作中,通过FTIR和 1 H NMR合成并在结构表征具有不同量的糖醇和苯乙烯的两个分子。它们的摩尔质量也由Sec确定,并且它们的热稳定性通过TGA测量。另外,分析了这些合成分子作为沥青质分散剂或絮凝剂的效率。通过絮凝剂(正庚烷)诱导的沉淀试剂使用紫外线可见(UV-VIS)光谱仪来监测沥青质的稳定性。合成结果表明了低聚物代替聚合物的形成。沥青甾烯稳定性结果表明合成的分子可以充当沥青质絮凝剂,降低沉淀到较小的正庚烷的发作。此外,在不同浓度的甲苯和正庚烷混合物中含有沥青质的模型系统中这些合成分子的浓度增加促进了沥青质的更大絮凝作用。

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