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Synthesis and Application of New Amphiphilic Asphaltene Ionic Liquid Polymers to Demulsify Arabic Heavy Petroleum Crude Oil Emulsions

机译:新型两亲沥青离子液体聚合物的合成及在阿拉伯重石油原油乳液中的破乳作用

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摘要

Asphaltenes are heavy petroleum crude oil components which limit the production of petroleum crude oil due to their aggregation and their stabilization for all petroleum crude oil water emulsions. The present study aimed to modify the chemical structures of isolated asphaltenes by converting them into amphiphilic polymers containing ionic liquid moieties (PILs) to demulsify the emulsion and replace the asphaltene layers surrounding the oil or water droplets in petroleum crude oil emulsions. The literature survey indicated that no modification occurred to produce the PILs from the asphaltenes. In this respect, the asphaltenes were modified via oxidation of the lower aliphatic chain through carboxylation followed by conversion to asphaltene acid chloride that reacted with ethoxylated N-alkyl pyridinium derivatives. Moreover, the carboxylation of asphaltenes was carried out through the Diels–Alder reaction with maleic anhydride that was linked with ethoxylated N-alkyl pyridinium derivatives to produce amphiphilic asphaltene PILs. The produced PILs from asphaltenes acid chloride and maleic anhydride were designated as AIL and AIL-2. The chemical structure and thermal stability of the polymeric asphaltene ionic liquids were evaluated. The modified structure of asphaltenes AIL and AIL-2 exhibited different thermal characteristics involving glass transition temperatures (T ) at −68 °C and −45 °C, respectively. The new asphaltenes ionic liquids were adsorbed at the asphaltenes surfaces to demulsify the heavy petroleum crude emulsions. The demulsification data indicated that the mixing of AIL and AIL-2 100 at different ratios with ethoxylated N-alkyl pyridinium were demulsified with 100% of the water from different compositions of O:W emulsions 50:50, 90:10, and 10:90. The demulsification times for the 50:50, 90:10, and 10:90 O:W emulsions were 120, 120, and 60 min, respectively. The interaction of the PILs with asphaltene and mechanism of demulsification was also investigated.
机译:沥青质是重质石油原油组分,由于它们的聚集和对所有石油原油水乳液的稳定作用,它们限制了石油原油的生产。本研究旨在通过将分离出的沥青质转化为含有离子液体部分(PIL)的两亲性聚合物,以使乳液破乳并替换石油原油乳液中油或水滴周围的沥青质层,从而改变其化学结构。文献调查表明,没有发生改性反应从沥青质生产PIL。在这方面,通过低级脂族链的羧基化氧化,然后转化为与乙氧基化的N-烷基吡啶鎓衍生物反应的沥青质酰氯,来改性沥青质。此外,沥青质的羧化反应是通过Diels-Alder反应与顺丁烯二酸酐进行的,该反应与乙氧基化的N-烷基吡啶鎓衍生物连接生成两亲性沥青质PIL。由沥青质酰氯和马来酸酐生产的PIL称为AIL和AIL-2。评价了聚合物沥青质离子液体的化学结构和热稳定性。沥青质AIL和AIL-2的改性结构表现出不同的热特性,分别涉及-68°C和-45°C的玻璃化转变温度(T)。将新的沥青质离子液体吸附在沥青质表面,以使重质石油原油乳液破乳。破乳数据表明,将不同比例的AIL和AIL-2 100与乙氧基化N-烷基吡啶鎓的混合物用100%来自O:W乳液50:50、90:10和10:10组成的水破乳。 90 50:50、90:10和10:90 O:W乳化液的破乳时间分别为120、120和60分钟。还研究了PIL与沥青质的相互作用和破乳机理。

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