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Surface and thermal properties of synthesized cationic poly(ethylene oxide) gemini surfactants: the role of the spacer

机译:合成阳离子聚(环氧乙烷)Gemini表面活性剂的表面和热性能:间隔件的作用

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摘要

The solubility and heat stability of surfactants are the prerequisites for their oilfield applications. Most commercial surfactants undergo hydrolysis at high temperature and prolonged heating at 40 degrees C or above leads to decomposition. In this report, three cationic poly(ethylene oxide) gemini surfactants (GSs) containing flexible and rigid spacers were synthesized for oilfield applications. The chemical structures of the GSs were elucidated with the aid of C-13 NMR, H-1 NMR, FT-IR, and MALDI-TOF MS. The GSs exhibit pronounced solubility in deionized water, seawater, and formation brine and no cloudiness, phase separation, or precipitation were detected after keeping GS solutions in an oven at 90 degrees C for three weeks. According to thermal gravimetric analysis, the degradation temperature of all the GSs was above 240 degrees C, which is higher than the existing oilfield temperature (>= 90 degrees C). The critical micelle concentration (CMC) of the synthesized GSs decreases upon increasing the temperature. Additionally, CMC values were observed to increase even further with increasing salinity. The low CMC values of gemini surfactants containing a flexible structure indicate that they create a more closely packed micelle structure compared with gemini surfactants with a rigid structure. The distinct surface and thermal features of the synthesized GSs reveal them to be appropriate materials for high salinity and elevated temperature reservoirs.
机译:表面活性剂的溶解度和热稳定性是其油田应用的先决条件。大多数商业表面活性剂在高温下进行水解,并在40℃或以上的延长加热导致分解。在本报告中,为油田应用合成了三种阳离子聚(环氧乙烷)Gemini表面活性剂(GSS)含有柔性和刚性间隔物。借助于C-13 NMR,H-1 NMR,FT-IR和MALDI-TOF MS,阐明了GSS的化学结构。 GSS在去离子水,海水和地层盐水中表现出明显的溶解性,并且在将GS溶液保持在90℃的烘箱中以在90℃下保持三周后,检测到浑浊,相分离或沉淀。根据热重分析,所有GSS的降解温度高于240℃,其高于现有的油田温度(> = 90℃)。在增加温度时,合成的GSS的临界胶束浓度(CMC)降低。另外,观察到CMC值进一步增加盐度。含有柔性结构的Gemini表面活性剂的低CMC值表明,与具有刚性结构的Gemini表面活性剂相比,它们产生更紧密的胶束结构。合成的GSS的不同表面和热特征显示它们是高盐度和高温储层的适当材料。

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    《RSC Advances》 |2019年第52期|共10页
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  • 正文语种 eng
  • 中图分类 化学;
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