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首页> 外文期刊>Journal of Surfactants and Detergents >Synthesis of Bis[N,N'-(alkylamideethyl)ethyl] Triethylenediamine Bromide Surfactants and Their Oilfield Application Investigation
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Synthesis of Bis[N,N'-(alkylamideethyl)ethyl] Triethylenediamine Bromide Surfactants and Their Oilfield Application Investigation

机译:双[N,N'-(烷基酰胺乙基)乙基]三乙二胺溴化物表面活性剂的合成及其在油田中的应用研究

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Bis[N,N'-(alkylamideethyl)ethyl] triethylenediamine surfactants are quaternary ammonium salt Gemini surfactants with amide, which are synthesized from fatty acid (dodecanoic, hexadecanoic, tetradecanoic and octa-decanoic) methyl esters, triethylene tetramine and ethyl bromide. The chemical structures of the prepared compounds were characterized by elemental analysis, FTIR and ~1H-NMR spectra, melting point and Krafft point. Several properties of the synthesized surfactants were studied including surface tension, critical micelle concentration, interfacial tension, emulsification power, salt effect, corrosion inhibition efficiency and biological activity. The results show that the surface activity, critical micelle concentration and interfacial activity are correlated to their chemical structures. The emulsification power measurements of these surfactants show their low emulsifying tendency towards Tazhong's crude oil from Tarim Oilfield. The synthesized surfactants also exhibit high biocidal activity towards Gram-positive and Gram-negative bacteria and fungi. This activity increases with the increase of alkyl chain length. The corrosion measurement of thesesurfactants in acidic media with a weight loss technique show good protection of mild steel alloys against acidic environments. These properties suggest that the synthesized compounds have potential for application in the oilfield area.
机译:双[N,N'-(烷基酰胺乙基)乙基]三亚乙基二胺表面活性剂是具有酰胺的季铵盐双子表面活性剂,其是由脂肪酸(十二烷酸酯,十六烷酸酯,十四烷酸酯和八癸酸酯),三亚乙基四胺和溴代乙酰胺合成的。制备的化合物的化学结构通过元素分析,FTIR和〜1H-NMR光谱,熔点和Krafft点进行表征。研究了合成表面活性剂的几种性能,包括表面张力,临界胶束浓度,界面张力,乳化能力,盐效应,缓蚀效率和生物活性。结果表明,表面活性,临界胶束浓度和界面活性与其化学结构相关。这些表面活性剂的乳化能力测量结果表明它们对塔里木油田塔中原油的乳化趋势较低。合成的表面活性剂还显示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。该活性随烷基链长度的增加而增加。用减重技术对这些表面活性剂在酸性介质中的腐蚀测量表明,低碳钢合金对酸性环境具有良好的保护作用。这些性质表明合成的化合物具有在油田领域中应用的潜力。

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