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Synthesis and physicochemical investigation of betaine type polyoxyethylene zwitterionic surfactants containing different ionic headgroups

机译:含有不同离子头组的甜菜碱型聚氧乙烯两性离子表面活性剂的合成与理化研究

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摘要

The surfactant solubility in oilfield water and stability under high-salinity/high-temperature reservoirs faces great challenges. The industrially applied surfactants including petroleum sulfonate, alkyl benzyl sulfonate, and polyoxyethylene ether are suffering due to poor performance in high temperature and high salinity environment. In this study, three betaine based polyoxyethylene zwitterionic surfactants having an unsaturated tail with different ionic headgroups (carboxybetaine, sulfobetaine, and hydroxy sulfobetaine) were synthesized. The structures of the synthesized surfactants were elucidated using FTIR and NMR. The surfactants showed excellent solubility in formation water and sear water and no apparent insoluble surfactants were observed. Thermogravimetric analysis results revealed that the degradation temperatures of the synthesized surfactants were above 290 degrees C. The critical micelle concentration (cmc) of all surfactants was reduced upon enhancing the temperature, however, the surfactant-containing hydroxy sulfonate headgroup showed the lowest cmc (3.35 x 10(-5) mol/L). Similarly, the surface tension at cmc (gamma(cmc)) also reduced upon enhancing the temperature and the surfactant-containing carboxylate headgroup exhibited lowest surface tension (32.24 mN/m). The excellent surface properties and heat stabilities of the betaine type polyoxyethylene zwitterionic surfactants make them a preferred choice for challenging reservoir conditions. (C) 2018 Elsevier B.V. All rights reserved.
机译:高盐度/高温水库下油田水和稳定性的表面活性剂溶解性面临巨大的挑战。在包括石油磺酸盐,烷基苄酯和聚氧乙烯醚和聚氧乙烯醚的工业上施加的表面活性剂由于在高温和高盐度环境中的性能差而导致。在该研究中,合成了具有不同离子头组(羧基脲,磺基因和羟基磺基)的不饱和尾巴的三种甜菜碱的聚氧乙烯两性离子表面活性剂。使用FTIR和NMR阐明合成表面活性剂的结构。表面活性剂在地层水和硅酸盐中显示出优异的溶解度,并且没有观察到明显的不溶性表面活性剂。热量分析结果显示,合成表面活性剂的降解温度高于290℃。然而,在增强温度时,所有表面活性剂的临界胶束浓度(CMC)降低,然而,含表面活性剂的羟基磺酸盐头组显示最低的CMC(3.35 x 10(-5)mol / l)。类似地,在增强温度下,CMC(γ(CMC))的表面张力也降低,并且含表面活性剂的羧酸盐标题表现出最低的表面张力(32.24mN / m)。甜菜碱型聚氧乙烯两性离子表面活性剂的优异表面性能和热稳定性使其成为攻击储层条件的优选选择。 (c)2018年elestvier b.v.保留所有权利。

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