29 شهریور 1400
آزاده ميروكيلي

آزاده میروکیلی

مرتبه علمی: استادیار
نشانی: دانشکده مهندسی نفت، گاز و پتروشیمی - گروه مهندسی شیمی
تحصیلات: دکترای تخصصی / مهندسی شیمی
تلفن: 21222026
دانشکده: دانشکده مهندسی نفت، گاز و پتروشیمی

مشخصات پژوهش

عنوان Experimental study of iron-control agents selection for high temperature sour gas and oil wells acidizing process
نوع پژوهش مقالات در نشریات
کلیدواژه‌ها
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مجله CHEMICAL ENGINEERING RESEARCH & DESIGN
شناسه DOI
پژوهشگران آزاده میروکیلی (نفر اول) ، محمدرضا رحیمپور (نفر دوم) ، عبدالحسین جهانمیری (نفر سوم)

چکیده

In acidizing process, the pH of acid increases gradually. When PH is higher than about 2.2, Fe3 forms a black sticky precipitant that decreases well permeability. Therefore, using Ferric ion reducing agent as an additive is a proper way to prevent of precipitant formation. In this study, some materials are introduced as reducing agents and compared with each other. Then the effect of adding catalyst to these materials was investigated and the best mixtures were chosen and compared with commercial ferrotrol 200 from BJ service. These two mixtures include thioglycolic acid as ferric ion reducing agent and potassium iodide as a catalyst, and phosphinic acid salt as ferric ion reducing agent and potassium iodide as a catalyst. The results showed that the proposed additives have better performance at high temperature in contrast to ferrotrol 200. Then these two mixtures and ferrotrol 200 were compared with each other in the presence of H2S and calcium carbonate (representative of reservoir rock). The result showed that the two chosen mixtures mentioned above have better performances in contrast to ferrotrol 200 owing to better reduction of ferric ion and performing faster than H2S, also, prevent of FeS and S precipitants formation. After that, a comparison between these two mixtures and ferrotrol 200 has been performed in the presence of crude oil that proved these studied additives do successfully; however, additive including thioglycolic acid is more proper in acidizing process of oil wells.