Evaluation of a naturally derived tannin extracts biopolymer additive in drilling muds for high-temperature well applications
The formulations of drilling fluids using conventional clays are often faced with difficulties in the control of rheology, filtration and gelation, owing to the flocculation of the clay at the temperature above 250 °F. In this study, tannins were extracted from the bark wastes of Rhizophora Mucronat...
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Published in | Journal of petroleum exploration and production technology Vol. 10; no. 2; pp. 623 - 639 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
Cham
Springer International Publishing
01.02.2020
Springer Nature B.V SpringerOpen |
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Abstract | The formulations of drilling fluids using conventional clays are often faced with difficulties in the control of rheology, filtration and gelation, owing to the flocculation of the clay at the temperature above 250 °F. In this study, tannins were extracted from the bark wastes of
Rhizophora Mucronata spp
. (RMTE) and used as a deflocculant to formulate water-based muds (WBMs). The efficacy of reducing the gelation and viscosity of WBMs with the extracted RMTE was compared with commercial Modified Desco Tannin (MDT). The RMTE was characterized using Fourier-transform infrared spectroscopy (FTIR). Rheological and filtration control properties tests were conducted on the RMTE and MDT mud samples before and after hot rolling tests at different temperatures of 225 °F, 250 °F, 275 °F and 300 °F. FTIR test data indicate the presence of different active functional groups in the RMTE structure, especially the hydroxyl (–OH) groups, which are responsible for the good thinning ability of the RMTE. Experimental data of the WBM after hot rolling tests with 8 g concentration at 300 °F show a 43.5% reduction of plastic viscosity with MDT and 50% reduction with RMTE. With a concentration of 2 g, the yield point of the WBM with commercial MDT and locally derived RMTE at 225 °F before hot rolling tests reduced by 50% and 57.1%, respectively. Furthermore, the addition of RMTE and MDT to the WBM reduced the filtrate volume and the gel strength. The experimental data indicate that the RMTE shows better deflocculating performance compared to that of the MDT, illustrating the need for its application in WBMs for high-temperature wells. |
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AbstractList | Abstract
The formulations of drilling fluids using conventional clays are often faced with difficulties in the control of rheology, filtration and gelation, owing to the flocculation of the clay at the temperature above 250 °F. In this study, tannins were extracted from the bark wastes of
Rhizophora Mucronata spp
. (RMTE) and used as a deflocculant to formulate water-based muds (WBMs). The efficacy of reducing the gelation and viscosity of WBMs with the extracted RMTE was compared with commercial Modified Desco Tannin (MDT). The RMTE was characterized using Fourier-transform infrared spectroscopy (FTIR). Rheological and filtration control properties tests were conducted on the RMTE and MDT mud samples before and after hot rolling tests at different temperatures of 225 °F, 250 °F, 275 °F and 300 °F. FTIR test data indicate the presence of different active functional groups in the RMTE structure, especially the hydroxyl (–OH) groups, which are responsible for the good thinning ability of the RMTE. Experimental data of the WBM after hot rolling tests with 8 g concentration at 300 °F show a 43.5% reduction of plastic viscosity with MDT and 50% reduction with RMTE. With a concentration of 2 g, the yield point of the WBM with commercial MDT and locally derived RMTE at 225 °F before hot rolling tests reduced by 50% and 57.1%, respectively. Furthermore, the addition of RMTE and MDT to the WBM reduced the filtrate volume and the gel strength. The experimental data indicate that the RMTE shows better deflocculating performance compared to that of the MDT, illustrating the need for its application in WBMs for high-temperature wells. The formulations of drilling fluids using conventional clays are often faced with difficulties in the control of rheology, filtration and gelation, owing to the flocculation of the clay at the temperature above 250 °F. In this study, tannins were extracted from the bark wastes of Rhizophora Mucronata spp. (RMTE) and used as a deflocculant to formulate water-based muds (WBMs). The efficacy of reducing the gelation and viscosity of WBMs with the extracted RMTE was compared with commercial Modified Desco Tannin (MDT). The RMTE was characterized using Fourier-transform infrared spectroscopy (FTIR). Rheological and filtration control properties tests were conducted on the RMTE and MDT mud samples before and after hot rolling tests at different temperatures of 225 °F, 250 °F, 275 °F and 300 °F. FTIR test data indicate the presence of different active functional groups in the RMTE structure, especially the hydroxyl (–OH) groups, which are responsible for the good thinning ability of the RMTE. Experimental data of the WBM after hot rolling tests with 8 g concentration at 300 °F show a 43.5% reduction of plastic viscosity with MDT and 50% reduction with RMTE. With a concentration of 2 g, the yield point of the WBM with commercial MDT and locally derived RMTE at 225 °F before hot rolling tests reduced by 50% and 57.1%, respectively. Furthermore, the addition of RMTE and MDT to the WBM reduced the filtrate volume and the gel strength. The experimental data indicate that the RMTE shows better deflocculating performance compared to that of the MDT, illustrating the need for its application in WBMs for high-temperature wells. Abstract The formulations of drilling fluids using conventional clays are often faced with difficulties in the control of rheology, filtration and gelation, owing to the flocculation of the clay at the temperature above 250 °F. In this study, tannins were extracted from the bark wastes of Rhizophora Mucronata spp. (RMTE) and used as a deflocculant to formulate water-based muds (WBMs). The efficacy of reducing the gelation and viscosity of WBMs with the extracted RMTE was compared with commercial Modified Desco Tannin (MDT). The RMTE was characterized using Fourier-transform infrared spectroscopy (FTIR). Rheological and filtration control properties tests were conducted on the RMTE and MDT mud samples before and after hot rolling tests at different temperatures of 225 °F, 250 °F, 275 °F and 300 °F. FTIR test data indicate the presence of different active functional groups in the RMTE structure, especially the hydroxyl (–OH) groups, which are responsible for the good thinning ability of the RMTE. Experimental data of the WBM after hot rolling tests with 8 g concentration at 300 °F show a 43.5% reduction of plastic viscosity with MDT and 50% reduction with RMTE. With a concentration of 2 g, the yield point of the WBM with commercial MDT and locally derived RMTE at 225 °F before hot rolling tests reduced by 50% and 57.1%, respectively. Furthermore, the addition of RMTE and MDT to the WBM reduced the filtrate volume and the gel strength. The experimental data indicate that the RMTE shows better deflocculating performance compared to that of the MDT, illustrating the need for its application in WBMs for high-temperature wells. The formulations of drilling fluids using conventional clays are often faced with difficulties in the control of rheology, filtration and gelation, owing to the flocculation of the clay at the temperature above 250 °F. In this study, tannins were extracted from the bark wastes of Rhizophora Mucronata spp . (RMTE) and used as a deflocculant to formulate water-based muds (WBMs). The efficacy of reducing the gelation and viscosity of WBMs with the extracted RMTE was compared with commercial Modified Desco Tannin (MDT). The RMTE was characterized using Fourier-transform infrared spectroscopy (FTIR). Rheological and filtration control properties tests were conducted on the RMTE and MDT mud samples before and after hot rolling tests at different temperatures of 225 °F, 250 °F, 275 °F and 300 °F. FTIR test data indicate the presence of different active functional groups in the RMTE structure, especially the hydroxyl (–OH) groups, which are responsible for the good thinning ability of the RMTE. Experimental data of the WBM after hot rolling tests with 8 g concentration at 300 °F show a 43.5% reduction of plastic viscosity with MDT and 50% reduction with RMTE. With a concentration of 2 g, the yield point of the WBM with commercial MDT and locally derived RMTE at 225 °F before hot rolling tests reduced by 50% and 57.1%, respectively. Furthermore, the addition of RMTE and MDT to the WBM reduced the filtrate volume and the gel strength. The experimental data indicate that the RMTE shows better deflocculating performance compared to that of the MDT, illustrating the need for its application in WBMs for high-temperature wells. |
Author | Latefi, Nur A. S. Oseh, Jeffrey O. Mohd Norddin, M. N. A. Agi, Augustine J. Ismail, Issham Gbadamosi, Afeez O. Ismail, Abdul R. |
Author_xml | – sequence: 1 givenname: Abdul R. surname: Ismail fullname: Ismail, Abdul R. organization: Department of Petroleum Engineering, School of Chemical and Energy Engineering, Universiti Teknologi Malaysia, Malaysia Petroleum Resource Corporation Institute for Oil and Gas (MPRC-UTM), Universiti Teknologi Malaysia – sequence: 2 givenname: M. N. A. surname: Mohd Norddin fullname: Mohd Norddin, M. N. A. email: anam@utm.my organization: Department of Petroleum Engineering, School of Chemical and Energy Engineering, Universiti Teknologi Malaysia – sequence: 3 givenname: Nur A. S. surname: Latefi fullname: Latefi, Nur A. S. organization: Department of Petroleum Engineering, School of Chemical and Energy Engineering, Universiti Teknologi Malaysia – sequence: 4 givenname: Jeffrey O. surname: Oseh fullname: Oseh, Jeffrey O. organization: Department of Petroleum Engineering, School of Chemical and Energy Engineering, Universiti Teknologi Malaysia, Malaysia Petroleum Resource Corporation Institute for Oil and Gas (MPRC-UTM), Universiti Teknologi Malaysia, Department of Chemical and Petroleum Engineering, College of Engineering, Afe Babalola University – sequence: 5 givenname: Issham surname: Ismail fullname: Ismail, Issham organization: Department of Petroleum Engineering, School of Chemical and Energy Engineering, Universiti Teknologi Malaysia, Malaysia Petroleum Resource Corporation Institute for Oil and Gas (MPRC-UTM), Universiti Teknologi Malaysia – sequence: 6 givenname: Afeez O. surname: Gbadamosi fullname: Gbadamosi, Afeez O. organization: Department of Petroleum Engineering, School of Chemical and Energy Engineering, Universiti Teknologi Malaysia, Department of Chemical and Petroleum Engineering, College of Engineering, Afe Babalola University – sequence: 7 givenname: Augustine J. surname: Agi fullname: Agi, Augustine J. organization: Department of Petroleum Engineering, School of Chemical and Energy Engineering, Universiti Teknologi Malaysia |
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CitedBy_id | crossref_primary_10_1007_s13202_020_01007_y crossref_primary_10_3389_fagro_2022_911014 crossref_primary_10_1016_j_geoen_2024_212956 crossref_primary_10_1007_s13204_019_01163_6 crossref_primary_10_1016_j_petrol_2021_110021 crossref_primary_10_3390_molecules25214980 crossref_primary_10_1016_j_colsurfa_2023_133001 crossref_primary_10_1016_j_geoen_2024_213103 crossref_primary_10_1016_j_jngse_2021_104046 crossref_primary_10_1080_15567036_2022_2143961 crossref_primary_10_4236_aces_2021_114017 |
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Snippet | The formulations of drilling fluids using conventional clays are often faced with difficulties in the control of rheology, filtration and gelation, owing to... Abstract The formulations of drilling fluids using conventional clays are often faced with difficulties in the control of rheology, filtration and gelation,... Abstract The formulations of drilling fluids using conventional clays are often faced with difficulties in the control of rheology, filtration and gelation,... |
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SubjectTerms | Additives Analytical methods Bark Biopolymers Clay Computational fluid dynamics Deflocculating Drilling Drilling fluids Drilling muds Earth and Environmental Science Earth Sciences Energy Systems Experimental data Filtrate Filtration Flocculation Fluids Formulations Fourier transforms Functional groups Gelation Gels Geology High temperature Hot rolling Industrial and Production Engineering Industrial Chemistry/Chemical Engineering Infrared spectroscopy MDT Monitoring/Environmental Analysis Mud Offshore Engineering Original Paper - Production Engineering Reduction Rheological properties Rheology RMTE Tannin extracts Tannins Temperature Tests Viscosity Yield point |
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Title | Evaluation of a naturally derived tannin extracts biopolymer additive in drilling muds for high-temperature well applications |
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