硫化铅污染机理及轻馏分影响的研究

W. Keogh, T. Charpentier, V. Eroini, J. Olsen, F. M. Nielsen, S. Baraka-Lokmane, J. Ellingsen, Oeystein Bache, A. Neville
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引用次数: 0

摘要

在油气行业中,井下完井设备上无机结垢的沉积会导致大量的停工和生产损失。据报道,高温/高压(HT/HP)油田由于储层酸化导致硫化铅(PbS)结垢。本文报道了一个实验平台的设计,允许H2S在动态环境下扩散到结垢盐水中。通过在系统中引入轻馏分引起的多相条件被用来制造乳液,以便更准确地反映酸性系统中发生的结垢过程。结果表明:体系内油相的存在导致硫化铅纳米晶体驻留在油水界面(o/w);通过粘合过程增加表面积聚倾向。通过重量测量和显微镜技术确定了一系列可能应用于油田环境的涂层的性能,并且表明表面的润湿性对多相体系中硫化铅沉积的程度有重要影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Insights into the Mechanism of Lead Sulfide Pbs Fouling and The Influence of Light Distillate Fraction
Deposition of inorganic scale on downhole completion equipment contributes to significant downtime and loss of production within the oil and gas industry. High temperature/high pressure (HT/HP) fields have reported build-up of lead sulfide (PbS) scale as a consequence of reservoir souring. This paper reports on the design of an experimental rig allowing diffusion of H2S into a scaling brine under dynamic environments. Multiphase conditions induced by introduction of a light distillate within the system were used to create an emulsion in order to reflect more accurately the scaling process occurring within sour systems. The results showed that the presence of an oil phase within the system caused the lead sulfide nano crystals to reside at the oil- water (o/w) interface; increasing surface build-up propensity through an adhesion process. Performance of a range of coatings for potential application in oilfield environments was determined through gravimetric measurements and microscopy techniques and the wettability of surfaces was shown to have a significant influence on the degree of lead sulfide deposition in a multiphase system.
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