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Nanotechnology for CO2 Utilization in Oilfield Applications

Om Nanotechnology for CO2 Utilization in Oilfield Applications

Nanotechnology for CO2 Utilization in Oilfield Applications delivers a critical reference for petroleum and reservoir engineers to learn the latest advancements of combining the use of CO2 and nanofluids to lower carbon footprint. Starting with the existing chemical and physical methods employed for synthesizing nanofluids, the reference moves into the scalability and fabrication techniques given for all the various nanofluids currently used in oilfield applications. This is followed by various, relevant characterization techniques. Advancing on, the reference covers nanofluids used in drilling, cementing, and EOR fluids, including their challenges and implementation problems associated with the use of nanofluids. Finally, the authors discuss the combined application of CO2 and nanofluids, listing challenges and benefits of CO2, such as carbonation capacity of nanofluids via rheological analysis for better CO2 utilization. Supported by visual world maps on CCS sites and case studies across the industry, this book gives today¿s engineers a much-needed tool to lower emissions.

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  • Språk:
  • Engelska
  • ISBN:
  • 9780323905404
  • Format:
  • Häftad
  • Sidor:
  • 330
  • Utgiven:
  • 17. juni 2022
  • Mått:
  • 227x152x23 mm.
  • Vikt:
  • 486 g.
  I lager
Leveranstid: 4-7 vardagar
Förväntad leverans: 8. januari 2025
Förlängd ångerrätt till 31. januari 2025
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Beskrivning av Nanotechnology for CO2 Utilization in Oilfield Applications

Nanotechnology for CO2 Utilization in Oilfield Applications delivers a critical reference for petroleum and reservoir engineers to learn the latest advancements of combining the use of CO2 and nanofluids to lower carbon footprint. Starting with the existing chemical and physical methods employed for synthesizing nanofluids, the reference moves into the scalability and fabrication techniques given for all the various nanofluids currently used in oilfield applications. This is followed by various, relevant characterization techniques. Advancing on, the reference covers nanofluids used in drilling, cementing, and EOR fluids, including their challenges and implementation problems associated with the use of nanofluids. Finally, the authors discuss the combined application of CO2 and nanofluids, listing challenges and benefits of CO2, such as carbonation capacity of nanofluids via rheological analysis for better CO2 utilization. Supported by visual world maps on CCS sites and case studies across the industry, this book gives today¿s engineers a much-needed tool to lower emissions.

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