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Performance Evaluation of STARPAM Polymer and Application in High Temperature and Salinity Reservoir

Based on the properties of high temperature and salinity reservoir, the water-soluble polymer with good heat resistance and salt tolerance can be obtained through copolymerization between 2-acrylamide-2-methyl sulfonate monomer (AMPSN) and acrylamide monomer (AM) in water. The star shaped stable com...

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Autores principales: Zhang, Chengli, Wang, Peng, Song, Guoliang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6312610/
https://www.ncbi.nlm.nih.gov/pubmed/30662465
http://dx.doi.org/10.1155/2018/9653953
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author Zhang, Chengli
Wang, Peng
Song, Guoliang
author_facet Zhang, Chengli
Wang, Peng
Song, Guoliang
author_sort Zhang, Chengli
collection PubMed
description Based on the properties of high temperature and salinity reservoir, the water-soluble polymer with good heat resistance and salt tolerance can be obtained through copolymerization between 2-acrylamide-2-methyl sulfonate monomer (AMPSN) and acrylamide monomer (AM) in water. The star shaped stable complexes (STARPAM) with the star nucleus of β-CD are prepared by living radical polymerization, which can improve the viscosity and change the percolation characteristics of the polymer in porous media. In the article, the performance of the STARPAM (star-shaped polymer) with heat resistance and salt tolerance was evaluated by comparing the viscosification property, heat and salt resistance, calcium and magnesium tolerance, and long-term thermal stability of STARPAM (star-shaped polymer) with those of HPAM (partially hydrolyzed polyacrylamide) and MO-4000 (linear polymer). The results of physical simulation experiment showed that the viscosity of the STARPAM is 3.3 times that of MO-4000 and 4 times that of HPAM under the conditions of mineralization degree of 20000 mg/L, concentration of 1500 mg/L, and 75°C, which indicated that heat resistance and salt tolerance of the STARPAM are excellent. Oil displacement experiments showed that STARPAM can enhance oil recovery by 20.53% after water flooding, and the effect of oil displacement is excellent. At present, 19 wells were effective with a ratio of 95.2%. Compared with before treatment, the daily liquid production increased by 136 m(3), daily oil production increased by 44.6 t, water cut decreased by 4.67 percentage points, and flow pressure decreased by 1.15 MPa.
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spelling pubmed-63126102019-01-20 Performance Evaluation of STARPAM Polymer and Application in High Temperature and Salinity Reservoir Zhang, Chengli Wang, Peng Song, Guoliang Int J Anal Chem Research Article Based on the properties of high temperature and salinity reservoir, the water-soluble polymer with good heat resistance and salt tolerance can be obtained through copolymerization between 2-acrylamide-2-methyl sulfonate monomer (AMPSN) and acrylamide monomer (AM) in water. The star shaped stable complexes (STARPAM) with the star nucleus of β-CD are prepared by living radical polymerization, which can improve the viscosity and change the percolation characteristics of the polymer in porous media. In the article, the performance of the STARPAM (star-shaped polymer) with heat resistance and salt tolerance was evaluated by comparing the viscosification property, heat and salt resistance, calcium and magnesium tolerance, and long-term thermal stability of STARPAM (star-shaped polymer) with those of HPAM (partially hydrolyzed polyacrylamide) and MO-4000 (linear polymer). The results of physical simulation experiment showed that the viscosity of the STARPAM is 3.3 times that of MO-4000 and 4 times that of HPAM under the conditions of mineralization degree of 20000 mg/L, concentration of 1500 mg/L, and 75°C, which indicated that heat resistance and salt tolerance of the STARPAM are excellent. Oil displacement experiments showed that STARPAM can enhance oil recovery by 20.53% after water flooding, and the effect of oil displacement is excellent. At present, 19 wells were effective with a ratio of 95.2%. Compared with before treatment, the daily liquid production increased by 136 m(3), daily oil production increased by 44.6 t, water cut decreased by 4.67 percentage points, and flow pressure decreased by 1.15 MPa. Hindawi 2018-12-18 /pmc/articles/PMC6312610/ /pubmed/30662465 http://dx.doi.org/10.1155/2018/9653953 Text en Copyright © 2018 Chengli Zhang et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Zhang, Chengli
Wang, Peng
Song, Guoliang
Performance Evaluation of STARPAM Polymer and Application in High Temperature and Salinity Reservoir
title Performance Evaluation of STARPAM Polymer and Application in High Temperature and Salinity Reservoir
title_full Performance Evaluation of STARPAM Polymer and Application in High Temperature and Salinity Reservoir
title_fullStr Performance Evaluation of STARPAM Polymer and Application in High Temperature and Salinity Reservoir
title_full_unstemmed Performance Evaluation of STARPAM Polymer and Application in High Temperature and Salinity Reservoir
title_short Performance Evaluation of STARPAM Polymer and Application in High Temperature and Salinity Reservoir
title_sort performance evaluation of starpam polymer and application in high temperature and salinity reservoir
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6312610/
https://www.ncbi.nlm.nih.gov/pubmed/30662465
http://dx.doi.org/10.1155/2018/9653953
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