Performance evaluation of asphaltene inhibitors using integrated method—ADT coupled with spot test

被引:2
作者
Syed Imran Ali
Shaine Mohammadali Lalji
Javed Haneef
Syed Mohammad Tariq
Syeda Fardees Zaidi
Muntaha Anjum
机构
[1] NED University of Engineering & Technology,Department of Petroleum Engineering
[2] Reservoir Services International,undefined
关键词
Asphaltene; Inhibitor; Deposition; Precipitation; Deposit level test; Spot test;
D O I
10.1007/s12517-022-09994-4
中图分类号
学科分类号
摘要
Asphaltene deposition problem is considered as one of the major issues in the petroleum industry. Over the years, several methods were proposed to cure the asphaltene deposition problem. Among these treatment techniques, the chemical treatment method is regarded as the most common, flexible, and reliable method. For the selection of chemical additives to be implemented in field conditions, the additives required are rigorously tested in a laboratory environment for their efficiency evaluation. Owing to the requirement of reliable testing techniques, several methods were proposed and applied in the past but most of them were expensive, needed complex instrumentation, were not continuous, and showed a lack of flexibility and reliability. In this study, an integrated method, i.e., asphaltene deposit level test (ADT) coupled with spot test, is applied to understand both deposition and dispersion mechanisms. Two inhibitors, namely inhibitor 1 and inhibitor 2, were tested on crude oil sample G. The tests were performed at different dosage levels of chemical additives at different times for 1 day. Inhibitor 1 was proved to be the more efficient as compared to inhibitor 2. Inhibitor 1 was able to completely control asphaltene deposition while inhibitor 2 reduced asphaltene deposition. Furthermore, inhibitor 1 showed better dispersion ability relative to inhibitor 2 at all tested times.
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  • [1] Ali SI(2020)Asphaltene precipitation modeling in dead crude oils using scaling equations and non-scaling models: comparative study J Pet Explor Prod 10 1183-1200
  • [2] Lalji SM(2021)Comprehensive analysis of asphaltene stability predictors under different conditions Pet Chem 61 446-454
  • [3] Haneef J(2019)A comprehensive review of asphaltene deposition in petroleum reservoirs: theory, challenges, and tips Fuel 252 753-791
  • [4] Louis C(2017)The relationship between SARA fractions and crude oil stability Egypt J Pet 26 209-213
  • [5] Saboor A(2013)Direct assessment of inhibitor and solvent effects on the deposition mechanism of asphaltenes in a Brazilian crude oil Energy Fuels 2019 4748-4757
  • [6] Yousaf N(2011)Experimental investigation and thermodynamic modeling of asphaltene precipitation Sci Iran c 18 1384-1390
  • [7] Ali SI(1996)The development of an onset-of-precipitation detection technique using heat transfer analysis Fuel Sci Technol Int’l 14 117-137
  • [8] Lalji SM(1998)Asphaltene precipitation from cold lake and Athabasca bitumens Pet Sci Technol 16 287-305
  • [9] Haneef J(2017)Inhibiting asphaltene precipitation from Iranian crude oil using various dispersants: experimental investigation through viscometry and thermodynamic modelling Fluid Phase Equilib 442 104-118
  • [10] Khan MA(2020)Critical review of asphaltene properties and factors impacting its stability in crude oil J Pet Explor Prod Technol 10 1183-1200