The use of laurylamine hydrocholoride CH3(CH2)11 NH3 –Cl for secondary oil recovery

Laurylamine hydrochloride CH3(CH2)11 NH3 – Cl has been chosen from cationic surfactants to produce secondary oil using lab. model shown in fig. (1). The relationship between interfacial tension and (temperature, salinity and solution concentration) have been studied as shown in fig. (2, 3, 4) respec...

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Main Author: Baghdad Science Journal
Format: Article
Language:Arabic
Published: College of Science for Women, University of Baghdad 2012-03-01
Series:Baghdad Science Journal
Subjects:
Online Access:http://bsj.uobaghdad.edu.iq/index.php/BSJ/article/view/1341
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author Baghdad Science Journal
author_facet Baghdad Science Journal
author_sort Baghdad Science Journal
collection DOAJ
description Laurylamine hydrochloride CH3(CH2)11 NH3 – Cl has been chosen from cationic surfactants to produce secondary oil using lab. model shown in fig. (1). The relationship between interfacial tension and (temperature, salinity and solution concentration) have been studied as shown in fig. (2, 3, 4) respectively. The optimum values of these three variables are taken (those values that give the lowest interfacial tension). Saturation, permeability and porosity are measured in the lab. The primary oil recovery was displaced by water injection until no more oil can be obtained, then laurylamine chloride is injected as a secondary oil recovery. The total oil recovery is 96.6% or 88.8% of the residual oil has been recovered by this technique as shown in fig. (5). This method was applied in an oil field and it gave approximate values close to that obtained in the lab.
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spelling doaj.art-ac346cc554724603a53dda66f085acd32022-12-22T00:50:29ZaraCollege of Science for Women, University of BaghdadBaghdad Science Journal2078-86652411-79862012-03-019110.21123/bsj.9.1.120-123The use of laurylamine hydrocholoride CH3(CH2)11 NH3 –Cl for secondary oil recoveryBaghdad Science JournalLaurylamine hydrochloride CH3(CH2)11 NH3 – Cl has been chosen from cationic surfactants to produce secondary oil using lab. model shown in fig. (1). The relationship between interfacial tension and (temperature, salinity and solution concentration) have been studied as shown in fig. (2, 3, 4) respectively. The optimum values of these three variables are taken (those values that give the lowest interfacial tension). Saturation, permeability and porosity are measured in the lab. The primary oil recovery was displaced by water injection until no more oil can be obtained, then laurylamine chloride is injected as a secondary oil recovery. The total oil recovery is 96.6% or 88.8% of the residual oil has been recovered by this technique as shown in fig. (5). This method was applied in an oil field and it gave approximate values close to that obtained in the lab.http://bsj.uobaghdad.edu.iq/index.php/BSJ/article/view/1341"surfactants, optimum concentration, optimum salinity, optimum temperature, oil recovery, Lab. Model, injection process."
spellingShingle Baghdad Science Journal
The use of laurylamine hydrocholoride CH3(CH2)11 NH3 –Cl for secondary oil recovery
Baghdad Science Journal
"surfactants, optimum concentration, optimum salinity, optimum temperature, oil recovery, Lab. Model, injection process."
title The use of laurylamine hydrocholoride CH3(CH2)11 NH3 –Cl for secondary oil recovery
title_full The use of laurylamine hydrocholoride CH3(CH2)11 NH3 –Cl for secondary oil recovery
title_fullStr The use of laurylamine hydrocholoride CH3(CH2)11 NH3 –Cl for secondary oil recovery
title_full_unstemmed The use of laurylamine hydrocholoride CH3(CH2)11 NH3 –Cl for secondary oil recovery
title_short The use of laurylamine hydrocholoride CH3(CH2)11 NH3 –Cl for secondary oil recovery
title_sort use of laurylamine hydrocholoride ch3 ch2 11 nh3 cl for secondary oil recovery
topic "surfactants, optimum concentration, optimum salinity, optimum temperature, oil recovery, Lab. Model, injection process."
url http://bsj.uobaghdad.edu.iq/index.php/BSJ/article/view/1341
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