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首页> 外文期刊>Journal of Molecular Liquids >Novel trimeric cationic pyrdinium surfactants as bi-functional corrosion inhibitors and antiscalants for API 5L X70 carbon steel against oilfield formation water
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Novel trimeric cationic pyrdinium surfactants as bi-functional corrosion inhibitors and antiscalants for API 5L X70 carbon steel against oilfield formation water

机译:新型三聚体阳离子吡啶鎓表面活性剂作为双功能腐蚀抑制剂和API 5L X70碳钢对油田水的抗粘连剂

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摘要

Three trimeric cationic pyridiniumsurfactants (APMC(6), APMC(12) and APMC(18)), were synthesized via esterification reaction, followed by a quaternization reaction, and characterized by micro-elemental analysis, FTIR, and (HNMR)-H-1 spectroscopy. Surface-active parameters for APMC compoundswere investigated using surface tension measurements. The critical micelle concentration values declined as a function of the alkyl chain length. The corrosion inhibition performance of these surfactants was studied on API 5L X70 carbon steel against oilfield formationwater as corrosive mediumby various electrochemical techniques. The results indicated that APMC surfactants showed superior corrosion inhibitive activity, as the inhibition efficiency (%I.E.) was up to 94% for APMC(18). Atomic force microscopy confirmed the creation of a protective layer on the carbon steel surface. Furthermore, the anti-scaling aspects of APMC compounds were investigated using static scale precipitation technique. The data revealed that the scale inhibition performance elevated by increasing the dosage of APMCcompounds. Both anti-corrosion and anti-scaling results supported the potential multifunctional use of APMC compounds against corrosion and scale problems in formation water. Finally, quantum chemical calculations and Monte Carlo simulations were computed to fulfill a rationale of the obtained experimental data. (C) 2020 Published by Elsevier B.V.
机译:通过酯化反应合成三种三聚体吡啶吡啶硫纤维剂剂(APMC(6),APMC(12)和APMC(18)),然后进行季铵化反应,并通过微型元素分析,FTIR和(HNMR)-H- 1光谱学。使用表面张力测量研究APMC化合物的表面活性参数。临界胶束浓度值随着烷基链长度的函数而下降。在API 5L X70碳钢上研究了这些表面活性剂的腐蚀抑制性能,抵抗油田形成水作为各种电化学技术的腐蚀性介质。结果表明APMC表面活性剂显示出优异的腐蚀性抑制活性,作为抑制效率(%I.E。)的APMC(18)的抑制效率高达94%。原子力显微镜确认在碳钢表面上产生保护层。此外,使用静态沉淀技术研究APMC化合物的抗缩放方面。数据显示,通过增加APMCCompounds的剂量来升高尺度抑制性能。抗腐蚀和抗缩放结果都支持APMC化合物对地层水中的腐蚀和规模问题的潜在多功能使用。最后,计算量子化学计算和蒙特卡罗模拟以满足所获得的实验数据的基本原理。 (c)2020由elsevier b.v发布。

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