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Synthesis and Characterization of Multifunctional Surfactants in Oil-Field Protection Applications

机译:多功能表面活性剂在油田保护应用中的合成与表征

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摘要

A series of cationic surfactants was prepared using economical raw materials. The chemical structures of the prepared compounds were confirmed using elemental analysis, FTIR and 1H-NMR spectra, and melting point determination. The synthesized surfactants were evaluated as oil-field protective additives. In this regard, several surface properties of the synthesized surfactants were studied including surface tension, critical micelle concentration, effectiveness, efficiency, maximum surface excess and minimum surface area. The results obtained from the surface activity measurements were correlated to their chemical structures. The emulsification power measurements for solutions of these surfactants showed their low emulsifying tendency towards paraffin and crude oil. The synthesized surfactants also exhibited high biocidal activity towards gram-positive and gram-negative bacteria and fungi. This activity was increased by increasing the hydrophobic chain length. The corrosion inhibition measurement of these surfactants for mild steel alloys in acidic media using a weight loss technique showed good protection of mild steel alloys against acidic environments. These properties qualify the synthesized compounds as economical oil-field protective additives.
机译:使用经济的原料制备了一系列阳离子表面活性剂。使用元素分析,FTIR和1H-NMR谱图以及熔点测定法确认了所制备化合物的化学结构。评价合成的表面活性剂作为油田保护添加剂。在这方面,研究了合成表面活性剂的几种表面性质,包括表面张力,临界胶束浓度,有效性,效率,最大表面过量和最小表面积。从表面活性测量获得的结果与其化学结构相关。对这些表面活性剂溶液的乳化能力测量表明,它们对石蜡和原油的乳化趋势较低。合成的表面活性剂还表现出对革兰氏阳性和革兰氏阴性细菌和真菌的高杀生物活性。该活性通过增加疏水链长度而增加。使用减重技术对这些表面活性剂在酸性介质中对低碳钢合金的腐蚀抑制测量表明,低碳钢合金对酸性环境具有良好的保护作用。这些性能使合成的化合物成为经济的油田保护添加剂。

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