Skip to main content
Erschienen in: Arabian Journal for Science and Engineering 12/2023

04.10.2023 | Research Article-Petroleum Engineering

Effect of Modified Hydroxyapatite Nanoparticles on Sodium and Calcium Cation-Contaminated Bentonite-Water Solutions at High Temperatures

verfasst von: Jeffrey O. Oseh, M. N. A. M. Norddin, Afeez O. Gbadamosi, Issham Ismail, Eugene N. Ngouangna, Ugochukwu I. Duru, Abdul R. Risal, Muftahu N. Yahya, Augustine Agi

Erschienen in: Arabian Journal for Science and Engineering | Ausgabe 12/2023

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

Drilling in high-temperature wells may worsen the flocculation of water-based bentonite suspension (BN-WBM), particularly when common drilling fluid contaminants like calcium cation (Ca2+) and sodium cation (Na+) are present. High concentrations of these cations can adversely affect drilling fluid rheology, filtration, and density. This can result in poor well control, pipe entrapment, poor hole cleaning, and prolonged inactivity, making drilling unprofitable. Therefore, this study examined how well CaCl2 and NaCl work with Nano-HAp to control the viscosity and filtration of BN-WBM at 25, 120, 150, 180, and 210 °C. The salt cation's (Ca2+/Na+) adverse effects on BN-WBMs and Nano-HAp's salt-tolerant activities were also shown. Adding 0.5 wt% Nano-HAp reduced the BN-salt-contaminated mud viscosity, shear stress, and fluid loss at all temperatures (25–210 °C). Salt screening demonstrated that Nano-HAp adsorbed onto the BN platelets' positive edge and negative face surfaces and protected the BN ion-sensitive regions. This prevented Ca2+ and Na+ from damaging the plate-like structure of the BN. When Nano-HAp is added to BN-CaCl2-contaminated WBM at 210 °C, the amount of fluid lost drops by 59%, from 192 to 79 mL, and the viscosity drops from 26.23 to 10.67 mPa s. In BN-NaCl-contaminated WBM, Nano-HAp reduced the viscosity from 20.82 to 8.91 mPa s and fluid loss from 169 to 73 mL by 57%. This study demonstrated that the drilling fluids performed efficiently with 0.5 wt% Nano-HAp. This study also reveals that Nano-HAp increases BN-WBM's salt and temperature resistance and efficiency in high-salinity, high-temperature settings.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literatur
1.
Zurück zum Zitat Guo, X.; Hu, D.; Li, Y.; Duan, J.; Zhang, X.; Fan, X.; Duan, H.; Li, W.: Theoretical progress and key technologies of onshore ultra-deep oil/gas exploration. Engineering 5, 458–470 (2019)CrossRef Guo, X.; Hu, D.; Li, Y.; Duan, J.; Zhang, X.; Fan, X.; Duan, H.; Li, W.: Theoretical progress and key technologies of onshore ultra-deep oil/gas exploration. Engineering 5, 458–470 (2019)CrossRef
2.
Zurück zum Zitat Liu, J.; Zhang, X.; Zhang, W.; Lv, K.; Bai, Y.; Wang, J.; Huang, X.; Jin, J.; Sun, J.: Carbon nanotube enhanced water-based drilling fluid for high temperature and high salinity deep resource development. Pet. Sci. 19, 916–926 (2021)CrossRef Liu, J.; Zhang, X.; Zhang, W.; Lv, K.; Bai, Y.; Wang, J.; Huang, X.; Jin, J.; Sun, J.: Carbon nanotube enhanced water-based drilling fluid for high temperature and high salinity deep resource development. Pet. Sci. 19, 916–926 (2021)CrossRef
3.
Zurück zum Zitat Sun, J.; Zhang, X.; Lv, K.; Liu, J.; Xiu, Z.; Wang, X.; Huang, X.; Bai, Y.; Wang, J.; Jin, J.: Synthesis of hydrophobic associative polymers to improve the rheological and filtration performance of drilling fluids under high temperature and high salinity conditions. J. Pet. Sci. Eng. 209, 109808 (2022)CrossRef Sun, J.; Zhang, X.; Lv, K.; Liu, J.; Xiu, Z.; Wang, X.; Huang, X.; Bai, Y.; Wang, J.; Jin, J.: Synthesis of hydrophobic associative polymers to improve the rheological and filtration performance of drilling fluids under high temperature and high salinity conditions. J. Pet. Sci. Eng. 209, 109808 (2022)CrossRef
4.
Zurück zum Zitat Li, J.; Sun, J.; Lv, K.; Ji, Y.; Liu, J.; Huang, X.; Bai, Y.; Wang, J.; Jin, J.; Shi, S.: Temperature- and salt-resistant micro-crosslinked polyampholyte gel as fluid-loss additive for water-based drilling fluids. Gels 8, 289 (2022)CrossRef Li, J.; Sun, J.; Lv, K.; Ji, Y.; Liu, J.; Huang, X.; Bai, Y.; Wang, J.; Jin, J.; Shi, S.: Temperature- and salt-resistant micro-crosslinked polyampholyte gel as fluid-loss additive for water-based drilling fluids. Gels 8, 289 (2022)CrossRef
5.
Zurück zum Zitat Liu, J.; Dai, Z.; Xu, K.; Yang, Y.; Lv, K.; Huang, X.; Sun, J.: Water-based drilling fluid containing bentonite/poly(sodium 4-styrene sulfonate) composite for ultra-high temperature ultra-deep drilling and its field performance. SPE J. 25, 1193–1203 (2020)CrossRef Liu, J.; Dai, Z.; Xu, K.; Yang, Y.; Lv, K.; Huang, X.; Sun, J.: Water-based drilling fluid containing bentonite/poly(sodium 4-styrene sulfonate) composite for ultra-high temperature ultra-deep drilling and its field performance. SPE J. 25, 1193–1203 (2020)CrossRef
8.
Zurück zum Zitat Ivanova, A.A.; Phan, C.; Barifcani, A.; Iglauer, S.; Cheremisin, A.N.: Effect of nanoparticles on viscosity and interfacial tension of aqueous surfactant solutions at high salinity and high temperature. J. Surfactants Deterg. 23, 327–338 (2019)CrossRef Ivanova, A.A.; Phan, C.; Barifcani, A.; Iglauer, S.; Cheremisin, A.N.: Effect of nanoparticles on viscosity and interfacial tension of aqueous surfactant solutions at high salinity and high temperature. J. Surfactants Deterg. 23, 327–338 (2019)CrossRef
9.
Zurück zum Zitat Zhu, W.; Zheng, X.; Shi, J.; Wang, Y.: A high-temperature resistant colloid gas aphron drilling fluid system prepared by using a novel graft copolymer xanthan gum-AA/AM/AMPS. J. Pet. Sci. Eng. 205, 108821 (2021)CrossRef Zhu, W.; Zheng, X.; Shi, J.; Wang, Y.: A high-temperature resistant colloid gas aphron drilling fluid system prepared by using a novel graft copolymer xanthan gum-AA/AM/AMPS. J. Pet. Sci. Eng. 205, 108821 (2021)CrossRef
10.
Zurück zum Zitat Sun, J.; Chang, X.; Zhang, F.; Bai, Y.; Lv, K.; Wang, J.; Zhou, X.; Wang, B.: Salt-responsive zwitterionic polymer brush based on modified silica nanoparticles as a fluid-loss additive in water-based drilling fluids. Energy Fuels 34, 1669–1679 (2020)CrossRef Sun, J.; Chang, X.; Zhang, F.; Bai, Y.; Lv, K.; Wang, J.; Zhou, X.; Wang, B.: Salt-responsive zwitterionic polymer brush based on modified silica nanoparticles as a fluid-loss additive in water-based drilling fluids. Energy Fuels 34, 1669–1679 (2020)CrossRef
11.
Zurück zum Zitat Balding, P.; Li, M.; Wu, Q.; Volkovinsky, R.; Russo, P.: Cellulose nanocrystal-polyelectrolyte hybrids for bentonite water based drilling fluids. ACS Appl. Bio Mater. 3, 3015–3027 (2020)CrossRef Balding, P.; Li, M.; Wu, Q.; Volkovinsky, R.; Russo, P.: Cellulose nanocrystal-polyelectrolyte hybrids for bentonite water based drilling fluids. ACS Appl. Bio Mater. 3, 3015–3027 (2020)CrossRef
12.
Zurück zum Zitat Plank, J.P.: Water-based muds using synthetic polymers developed for high temperature drilling. Oil Gas J. 90, 9 (1992) Plank, J.P.: Water-based muds using synthetic polymers developed for high temperature drilling. Oil Gas J. 90, 9 (1992)
13.
Zurück zum Zitat Al-Shargabi, M.; Davoodi, S.; Wood, D.A.; Al-Musai, A.; Rukavishnikov, V.S.; Minaev, K.M.: Nanoparticle applications as beneficial oil and gas drilling fluid additives: a review. J. Mol. Liq. 352, 118725 (2022)CrossRef Al-Shargabi, M.; Davoodi, S.; Wood, D.A.; Al-Musai, A.; Rukavishnikov, V.S.; Minaev, K.M.: Nanoparticle applications as beneficial oil and gas drilling fluid additives: a review. J. Mol. Liq. 352, 118725 (2022)CrossRef
14.
Zurück zum Zitat Beg, O.A.; Espinoza, D.E.S.; Kadir, A.; Shamshuddin, M.; Sohail, A.: Experimental study of improved rheology and lubricity of drilling fluids enhanced with nanoparticles. Appl. Nanosci. 8, 1069–1090 (2018)CrossRef Beg, O.A.; Espinoza, D.E.S.; Kadir, A.; Shamshuddin, M.; Sohail, A.: Experimental study of improved rheology and lubricity of drilling fluids enhanced with nanoparticles. Appl. Nanosci. 8, 1069–1090 (2018)CrossRef
15.
Zurück zum Zitat Wu, Y.; Wang, Z.; Yan, Z.; Zhang, T.; Bai, Y.; Wang, P.; Luo, P.; Gou, S.; Guo, Q.: Poly(2-acrylamide-2-methylpropanesulfonic acid)-modified SiO2 nanoparticles for water-based muds. Ind. Eng. Chem. Res. 56, 168–174 (2017)CrossRef Wu, Y.; Wang, Z.; Yan, Z.; Zhang, T.; Bai, Y.; Wang, P.; Luo, P.; Gou, S.; Guo, Q.: Poly(2-acrylamide-2-methylpropanesulfonic acid)-modified SiO2 nanoparticles for water-based muds. Ind. Eng. Chem. Res. 56, 168–174 (2017)CrossRef
16.
Zurück zum Zitat Ngouangna, E.N.; Jaafar, M.D.; Norddin, M.N.A.M.; Augustine, A.; Risal, A.R.; Mamah, S.C.; Oseh, J.O.: The effect of hydroxyapatite nanoparticles on wettability and brine-oil interfacial tension as enhance oil recovery mechanisms. J. Pet. Sci. Eng. 218, 110941 (2022)CrossRef Ngouangna, E.N.; Jaafar, M.D.; Norddin, M.N.A.M.; Augustine, A.; Risal, A.R.; Mamah, S.C.; Oseh, J.O.: The effect of hydroxyapatite nanoparticles on wettability and brine-oil interfacial tension as enhance oil recovery mechanisms. J. Pet. Sci. Eng. 218, 110941 (2022)CrossRef
17.
Zurück zum Zitat Gbadamosi, A.O.; Junin, R.; Abdalla, Y.; Agi, A.; Oseh, J.O.: Experimental investigation of the effects of silica nanoparticles on hole cleaning efficiency of water-based drilling mud. J. Pet. Sci. Eng. 172, 1226–1230 (2018)CrossRef Gbadamosi, A.O.; Junin, R.; Abdalla, Y.; Agi, A.; Oseh, J.O.: Experimental investigation of the effects of silica nanoparticles on hole cleaning efficiency of water-based drilling mud. J. Pet. Sci. Eng. 172, 1226–1230 (2018)CrossRef
18.
Zurück zum Zitat Rezaei, A.; Nooripoor, V.; Shahbazi, K.: Applicability of Fe3O4 nanoparticles for improving rheological and filtration properties of bentonite-water drilling fluids in the presence of sodium, calcium, and magnesium chlorides. J. Pet. Explor. Prod. Technol. 10, 2453–2464 (2020). https://doi.org/10.1007/s13202-020-00920-6CrossRef Rezaei, A.; Nooripoor, V.; Shahbazi, K.: Applicability of Fe3O4 nanoparticles for improving rheological and filtration properties of bentonite-water drilling fluids in the presence of sodium, calcium, and magnesium chlorides. J. Pet. Explor. Prod. Technol. 10, 2453–2464 (2020). https://​doi.​org/​10.​1007/​s13202-020-00920-6CrossRef
19.
Zurück zum Zitat Sun, Y.; Sun, J.; Li, L.; Lv, K.; Zhang, X.; Wang, Z.; Dai, Z.; Xu, Z.; Zhang, T.; Liu, J.: Development of high-temperature and high-mineralization-resistant adaptive plugging agent and its performance evaluation. Energy Fuels 37(13), 8999–9010 (2023)CrossRef Sun, Y.; Sun, J.; Li, L.; Lv, K.; Zhang, X.; Wang, Z.; Dai, Z.; Xu, Z.; Zhang, T.; Liu, J.: Development of high-temperature and high-mineralization-resistant adaptive plugging agent and its performance evaluation. Energy Fuels 37(13), 8999–9010 (2023)CrossRef
20.
Zurück zum Zitat Liu, F.; Jiang, G.; Peng, S.; He, Y.; Wang, J.: Amphoteric copolymer as an Anti-calcium contamination fluid-loss additive in water-based drilling fluids. Energy Fuels 30, 7221–7228 (2016)CrossRef Liu, F.; Jiang, G.; Peng, S.; He, Y.; Wang, J.: Amphoteric copolymer as an Anti-calcium contamination fluid-loss additive in water-based drilling fluids. Energy Fuels 30, 7221–7228 (2016)CrossRef
21.
Zurück zum Zitat Li, M.; Wu, Q.; Han, J.; Mei, C.; Lei, T.; Lee, S.; Gwon, J.: Overcoming salt contamination of bentonite water-based drilling fluids with blended dual functionalized cellulose nanocrystals. ACS Sustain. Chem. Eng. 8, 11569–11578 (2020)CrossRef Li, M.; Wu, Q.; Han, J.; Mei, C.; Lei, T.; Lee, S.; Gwon, J.: Overcoming salt contamination of bentonite water-based drilling fluids with blended dual functionalized cellulose nanocrystals. ACS Sustain. Chem. Eng. 8, 11569–11578 (2020)CrossRef
22.
Zurück zum Zitat Zhu, W.; Zheng, X.: Effective modified xanthan gum fluid loss agent for high-temperature water-based drilling fluid and the filtration control mechanism. ACS Omega 6(37), 23788–23801 (2021)CrossRef Zhu, W.; Zheng, X.: Effective modified xanthan gum fluid loss agent for high-temperature water-based drilling fluid and the filtration control mechanism. ACS Omega 6(37), 23788–23801 (2021)CrossRef
23.
Zurück zum Zitat Yang, L.; Jiang, G.; Shi, Y.; Lin, X.; Yang, X.: Application of ionic liquid to a high-performance calcium-resistant additive for filtration control of bentonite/water-based drilling fluids. J. Mater. Sci. 52, 6362–6375 (2017)CrossRef Yang, L.; Jiang, G.; Shi, Y.; Lin, X.; Yang, X.: Application of ionic liquid to a high-performance calcium-resistant additive for filtration control of bentonite/water-based drilling fluids. J. Mater. Sci. 52, 6362–6375 (2017)CrossRef
24.
Zurück zum Zitat Ghaderi, S.; Ramazani, A.; Haddadi, A.: Applications of highly salt and highly temperature resistance terpolymer of acrylamide/styrene/maleic anhydride monomers as a rheological modifier: rheological and corrosion protection properties studies. J. Mol. Liq. 294, 111635 (2019)CrossRef Ghaderi, S.; Ramazani, A.; Haddadi, A.: Applications of highly salt and highly temperature resistance terpolymer of acrylamide/styrene/maleic anhydride monomers as a rheological modifier: rheological and corrosion protection properties studies. J. Mol. Liq. 294, 111635 (2019)CrossRef
25.
Zurück zum Zitat Raheem, A.M.; Vipulanandan, C.: Salt contamination and temperature impacts on the rheological and electrical resistivity behaviors of water based drilling mud. Energy Sources Part A Recov. Util. Environ. Eff. 42(3), 344–364 (2020) Raheem, A.M.; Vipulanandan, C.: Salt contamination and temperature impacts on the rheological and electrical resistivity behaviors of water based drilling mud. Energy Sources Part A Recov. Util. Environ. Eff. 42(3), 344–364 (2020)
29.
Zurück zum Zitat Prasad, P.S.; Marupalli, B.C.G.; Das, S.; Das, K.: Surfactant-assisted synthesis of hydroxyapatite particles: a comprehensive review. J. Mater. Sci. 58, 6076–6105 (2023)CrossRef Prasad, P.S.; Marupalli, B.C.G.; Das, S.; Das, K.: Surfactant-assisted synthesis of hydroxyapatite particles: a comprehensive review. J. Mater. Sci. 58, 6076–6105 (2023)CrossRef
30.
Zurück zum Zitat Nakagawa, K.; Arai, Y.; Umezaki, Y.; Yoshida, A.; Kajiwara, Y.; Aoyagi, S.; Matsuyama, H.; Sugiyama, S.: Template effect of phosphate surfactant on formation of hydroxyapatite nanostructures with various shapes. Mater. Chem. Phys. 213, 183–190 (2018)CrossRef Nakagawa, K.; Arai, Y.; Umezaki, Y.; Yoshida, A.; Kajiwara, Y.; Aoyagi, S.; Matsuyama, H.; Sugiyama, S.: Template effect of phosphate surfactant on formation of hydroxyapatite nanostructures with various shapes. Mater. Chem. Phys. 213, 183–190 (2018)CrossRef
32.
Zurück zum Zitat Annisa, T.; Azkiya, A.; Fauzi, R.N.; Nandiyanto, A.B.D.; Hofifah, S.N.: Cost analysis and economic evaluation for manufacturing hydroxyapatite nanoparticles from eggshell waste. Int. J. Res. Appl. Technol. 1(1), 211–226 (2021)CrossRef Annisa, T.; Azkiya, A.; Fauzi, R.N.; Nandiyanto, A.B.D.; Hofifah, S.N.: Cost analysis and economic evaluation for manufacturing hydroxyapatite nanoparticles from eggshell waste. Int. J. Res. Appl. Technol. 1(1), 211–226 (2021)CrossRef
34.
Zurück zum Zitat Xu, Z.; Qian, G.; Feng, M.: Using polyacrylamide to control particle size and synthesize porous nano hydroxyapatite. Results Phys. 16, 102991 (2020)CrossRef Xu, Z.; Qian, G.; Feng, M.: Using polyacrylamide to control particle size and synthesize porous nano hydroxyapatite. Results Phys. 16, 102991 (2020)CrossRef
35.
Zurück zum Zitat Ungureanu, D.N.; Angelescu, N.; Tsakiris, V.; Marinescu, V.: Investigations regarding chemical synthesis of calcium hydroxyapatite. Romanian J. Mater. 42(1), 52–60 (2012) Ungureanu, D.N.; Angelescu, N.; Tsakiris, V.; Marinescu, V.: Investigations regarding chemical synthesis of calcium hydroxyapatite. Romanian J. Mater. 42(1), 52–60 (2012)
36.
Zurück zum Zitat Elochukwu, H.; Gholami, R.; Dol, S.S.: An approach to improve the cuttings carrying capacity of nano silica-based muds. J. Pet. Sci. Eng. 152, 210–216 (2017)CrossRef Elochukwu, H.; Gholami, R.; Dol, S.S.: An approach to improve the cuttings carrying capacity of nano silica-based muds. J. Pet. Sci. Eng. 152, 210–216 (2017)CrossRef
37.
Zurück zum Zitat Wang, Y.J.; Chen, J.D.; Wei, K.; Zhang, S.H.; Wang, X.D.: Surfactant assisted synthesis of hydroxyapatite particles. Mater. Lett. 60, 3227–3231 (2006)CrossRef Wang, Y.J.; Chen, J.D.; Wei, K.; Zhang, S.H.; Wang, X.D.: Surfactant assisted synthesis of hydroxyapatite particles. Mater. Lett. 60, 3227–3231 (2006)CrossRef
38.
Zurück zum Zitat Sabry, A.A.; Salih, N.A.: Synthetic properties of hydroxyapatite powder prepared from natural eggs shell. J. Green Eng. 10(7), 3498–3507 (2020) Sabry, A.A.; Salih, N.A.: Synthetic properties of hydroxyapatite powder prepared from natural eggs shell. J. Green Eng. 10(7), 3498–3507 (2020)
39.
Zurück zum Zitat Oseh, J.O.; Norddin, M.N.A.M.; Ismail, I.; Duru, U.I.; Gbadamosi, A.O.; Agi, A.; Ngouangna, E.N.; Blkoor, S.O.; Yahya, M.N.; Risal, A.R.: Rheological and filtration control performance of water-based drilling muds at different temperatures and salt contaminants using surfactant-assisted novel nanohydroxyapatite. Geoenergy Sci. Eng. 228, 1–18 (2023). https://doi.org/10.1016/j.geoen.2023.211994CrossRef Oseh, J.O.; Norddin, M.N.A.M.; Ismail, I.; Duru, U.I.; Gbadamosi, A.O.; Agi, A.; Ngouangna, E.N.; Blkoor, S.O.; Yahya, M.N.; Risal, A.R.: Rheological and filtration control performance of water-based drilling muds at different temperatures and salt contaminants using surfactant-assisted novel nanohydroxyapatite. Geoenergy Sci. Eng. 228, 1–18 (2023). https://​doi.​org/​10.​1016/​j.​geoen.​2023.​211994CrossRef
40.
Zurück zum Zitat API RP 13B-2: Recommended Practice for Field Formulation of Water-Based Drilling Fluids, 5th edn. API, Washington (2019) API RP 13B-2: Recommended Practice for Field Formulation of Water-Based Drilling Fluids, 5th edn. API, Washington (2019)
41.
Zurück zum Zitat API RP 13B-1: Recommended Practice for Field Testing Water-Based Drilling Fluids, 5th edn. API, Washington (2019) API RP 13B-1: Recommended Practice for Field Testing Water-Based Drilling Fluids, 5th edn. API, Washington (2019)
42.
Zurück zum Zitat Ngouangna, E.N.; Jaafar, M.D.; Mohd Norddin, M.N.A.; Agi, A.; Oseh, J.O.; Mamah, S.: Surface modification of nanoparticles to improve oil recovery mechanisms: a critical review of the methods, influencing Parameters, advances and prospects. J. Mol. Liq. 360, 119502 (2022)CrossRef Ngouangna, E.N.; Jaafar, M.D.; Mohd Norddin, M.N.A.; Agi, A.; Oseh, J.O.; Mamah, S.: Surface modification of nanoparticles to improve oil recovery mechanisms: a critical review of the methods, influencing Parameters, advances and prospects. J. Mol. Liq. 360, 119502 (2022)CrossRef
43.
Zurück zum Zitat Merlo, A.; Maglione, R.; Piatti, C.: An innovative model for drilling fluid hydraulics. In: Paper SPE 29259 Presented at SPE Oil and Gas Conference, 20–22 March, Kuala Lumpur (1995) Merlo, A.; Maglione, R.; Piatti, C.: An innovative model for drilling fluid hydraulics. In: Paper SPE 29259 Presented at SPE Oil and Gas Conference, 20–22 March, Kuala Lumpur (1995)
44.
Zurück zum Zitat Zamora, M.; Roy, S.; Slater, K.: Comparing a basic set of drilling fluid pressure-loss relationships to flow-loop and field data. In: Paper AADE-05-NTCE-27 Presented at the AADE National Technical Conference and Exhibition, 5–7 April, Houston, USA (2005) Zamora, M.; Roy, S.; Slater, K.: Comparing a basic set of drilling fluid pressure-loss relationships to flow-loop and field data. In: Paper AADE-05-NTCE-27 Presented at the AADE National Technical Conference and Exhibition, 5–7 April, Houston, USA (2005)
46.
Zurück zum Zitat Chernikov, O.I.; Glagolev, R.V.; Zvyagina, T.I.: Thermostability of surfactants having various chemical structures. J. Appl. Chem. 56(6), 1347–1349 (2019) Chernikov, O.I.; Glagolev, R.V.; Zvyagina, T.I.: Thermostability of surfactants having various chemical structures. J. Appl. Chem. 56(6), 1347–1349 (2019)
47.
Zurück zum Zitat Córdova-Udaeta, M.; Kim, Y.; Yasukawa, K.; Kato, Y.; Fujita, T.; Dodbiba, G.: Study on the synthesis of hydroxyapatite under highly alkaline conditions. Ind. Eng. Chem. Res. 60, 4385–4396 (2021)CrossRef Córdova-Udaeta, M.; Kim, Y.; Yasukawa, K.; Kato, Y.; Fujita, T.; Dodbiba, G.: Study on the synthesis of hydroxyapatite under highly alkaline conditions. Ind. Eng. Chem. Res. 60, 4385–4396 (2021)CrossRef
50.
Zurück zum Zitat Lidén, A.; Naidjonoka, P.; Karna, N.K.; Theliander, H.: Structure of filter cakes during the electroassisted filtration of microfibrillated cellulose. Ind. Eng. Chem. Res. 61(43), 16247–16256 (2022) Lidén, A.; Naidjonoka, P.; Karna, N.K.; Theliander, H.: Structure of filter cakes during the electroassisted filtration of microfibrillated cellulose. Ind. Eng. Chem. Res. 61(43), 16247–16256 (2022)
51.
Zurück zum Zitat Yao, R.; Jiang, G.; Li, W.; Deng, T.; Zhang, H.: Effect of water-based drilling fluid components on filter cake structure. Powder Technol. 262, 51–61 (2014)CrossRef Yao, R.; Jiang, G.; Li, W.; Deng, T.; Zhang, H.: Effect of water-based drilling fluid components on filter cake structure. Powder Technol. 262, 51–61 (2014)CrossRef
52.
Zurück zum Zitat Grover, I.S.; Singh, S.; Pal, B.: The preparation, surface structure, zeta potential, surface charge density and photocatalytic activity of TiO2 nanostructures of different shapes. Appl. Surf. Sci. 280, 366–372 (2013)CrossRef Grover, I.S.; Singh, S.; Pal, B.: The preparation, surface structure, zeta potential, surface charge density and photocatalytic activity of TiO2 nanostructures of different shapes. Appl. Surf. Sci. 280, 366–372 (2013)CrossRef
Metadaten
Titel
Effect of Modified Hydroxyapatite Nanoparticles on Sodium and Calcium Cation-Contaminated Bentonite-Water Solutions at High Temperatures
verfasst von
Jeffrey O. Oseh
M. N. A. M. Norddin
Afeez O. Gbadamosi
Issham Ismail
Eugene N. Ngouangna
Ugochukwu I. Duru
Abdul R. Risal
Muftahu N. Yahya
Augustine Agi
Publikationsdatum
04.10.2023
Verlag
Springer Berlin Heidelberg
Erschienen in
Arabian Journal for Science and Engineering / Ausgabe 12/2023
Print ISSN: 2193-567X
Elektronische ISSN: 2191-4281
DOI
https://doi.org/10.1007/s13369-023-08304-8

Weitere Artikel der Ausgabe 12/2023

Arabian Journal for Science and Engineering 12/2023 Zur Ausgabe

    Marktübersichten

    Die im Laufe eines Jahres in der „adhäsion“ veröffentlichten Marktübersichten helfen Anwendern verschiedenster Branchen, sich einen gezielten Überblick über Lieferantenangebote zu verschaffen.