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CRUDE OIL CHEMISTRY EFFECTS ON INHIBITION OF CORROSION AND PHASE WETTING

机译:原油化学性质对腐蚀和相润湿的抑制作用

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The effect of crude oil chemistry on corrosion processes is poorly understood. A simple mechanistic model that takes into account the combined effects of corrosion inhibition and wettability alteration, due to the adsorption of polar molecules onto the steel surface, is proposed. While the inhibition effect is dominant in oil-water stratified flow, the wettability alteration is dominant in turbulent flow. Consequently, both effects have to be taken into consideration in order to predict corrosion in oil-water pipe flow. The objective of this study is to identify chemicals present in crude oil which have an effect on inhibition and wettability. The likeliest molecules to adsorb onto a metal surface are polar compounds. Nine polar compounds containing nitrogen, sulfur and oxygen have been studied. Corrosion rates were recorded, the change of the steel wettability has been quantified and the mass adsorbed onto the metal surface measured with a quartz-crystal-microbalance. Results show that certain groups of chemicals have strongly inhibitive effect on corrosion and wettability while others had only a negligible effect.
机译:人们对原油化学作用对腐蚀过程的影响了解甚少。提出了一个简单的机械模型,该模型考虑了由于极性分子在钢表面上的吸附而引起的腐蚀抑制和润湿性改变的综合作用。虽然抑制作用在油水分层流中占主导地位,但润湿性的变化在湍流中占主导地位。因此,为了预测油水管流动中的腐蚀,必须同时考虑这两种影响。这项研究的目的是确定原油中存在的对抑制和润湿性有影响的化学物质。吸附到金属表面上的最可能的分子是极性化合物。已经研究了九种含氮,硫和氧的极性化合物。记录腐蚀速率,量化钢的润湿性变化,并用石英晶体微量天平测量吸附在金属表面上的质量。结果表明,某些化学物质对腐蚀和润湿性具有强烈的抑制作用,而其他化学物质的影响则微不足道。

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