PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Carbon dioxide sequestration during shale gas recovery

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper presents literature on theoretical and practical aspects of gas production from shale using carbon dioxide fracturing. Development of technical and environmental aspects of carbon dioxide fracturing technologies is also considered. Patents applicable to carbon dioxide fracturing are reviewed. In this work experiments were also conducted to verify possibility of carbon dioxide sequestration in the shale gas reservoirs. Carbon dioxide and methane (CH4) storage capacity was measured as Langmuir volumes. The adsorption capacities depend on content of organic matter in the shale rocks and pressure. The obtained results indicate that developing of carbon dioxide fracturing is reasonable.
Rocznik
Strony
681--692
Opis fizyczny
Bibliogr. 32 poz., rys., tab.
Twórcy
autor
  • Chemical Technology Department, Chemical Faculty, Gdansk University of Technology, Gdansk, Poland
autor
  • Chemical Technology Department, Chemical Faculty, Gdansk University of Technology, Gdansk, Poland
autor
  • Chemical Technology Department, Chemical Faculty, Gdansk University of Technology, Gdansk, Poland
autor
  • Chemical Technology Department, Chemical Faculty, Gdansk University of Technology, Gdansk, Poland
Bibliografia
  • 1. AHN J.H., PEACOR D.R., 1986, Transmission electron microscope data for rectiorite: Implications for the origin and structure of “fundamental particles”, Clays and Clay Minerals, No. 34, 180–186
  • 2. ARNOLD D.L., 1998, Liquid CO2 – sand fracturing: the dry frac, Fuel and Energy Abstracts, Vol. 39, No. 3, 185–185
  • 3. BULLEN R.S., LILLIES A.T., 1982, Carbon dioxide fracturing process and apparatus, US Patent No. 4374545
  • 4. BULLEN R.S., MZIK J., RICHARD J.P., 1987, Novel compositions suitable for treating deep wells, US Patent No. 4701270
  • 5. ECONOMIDES M.J., NOLTE K. G., AHMED U., 2000, Reservoir stimulation, Chichester: Wiley
  • 6. ESLINGER E., PEVEAR D., 1988, Clay Minerals for Petroleum Geologists and Engineers, Society of Economic Paleontologists and Mineralogists, SEPM Short Course Notes, No. 22, (Tulsa, 1988)
  • 7. GINTY P.J., WHITAKER M.J., SHAKESHEFF K.M., HOWDLE S.M., 2005, Drug delivery goes supercritical, Materials today, Vol. 8, No. 8, 42–48
  • 8. GUPTA D.V. S., BOBIER D.M., 1998, The History and Success of Liquid CO2 and CO2/N2 Fracturing System, Canadian Fracmaster Ltd., SPE Gas Technology Symposium (Calgary, Alberta, Canada 15th–18th March 1998)
  • 9. GUPTA D.V.S., PIERCE R.G., SENGER ELSBERND C.L, 2004, Foamed nitrogen in liquid CO2 for fracturing, US Patent No. 6729409
  • 10. HARRIS P.C., KLEBENOW D.E., KUNDERT D.P., 1989, Constant internal phase design improves stimulation results, SPE Paper 17532
  • 11. HOWARD G. C., FAST C. R., 1970, Hydraulic Fracturing, SPE of AIME, pp. 210
  • 12. KARGBO D.M., WILHELM R.G., CAMPBELL D.J., 2010, Natural Gas Plays in the Marcellus Shale: Challenges and Potential Opportunities, Environmental Scientific Technology, No. 44, 5679–5684
  • 13. KRZYSIEK J., 2012, Is Polish Shale Gas posing challenge to players and researchers?, Workshop Abstract Proceedings, Interfacial Phenomena in Theory and Practice, VII Summer School (Sudomie June 24th- 30th 2012)
  • 14. KUBALA G., MACKAY B.A., 2010, Use of carbon-dioxide-based fracturing fluids, US Patent No. 7726404
  • 15. LAL M., 1999, Shale Stability: Drilling Fluid Interaction and Shale Strength, SPE Paper 54356, SPE Latin American and Caribbean Petroleum Engineering Conference (Caracas, Venezuela 21st - 23rd April 1999)
  • 16. LILLIES A. T., KING S.R., 1982, Sand Fracturing With Liquid Carbon, Publisher Society of Petroleum, DOI 10.2118/11341
  • 17. LOKHANDWALA K.A., JARIWALA A., 2005, Natural gas treatment process for stimulated well, US Patent No. 7537641
  • 18. LUK S. W. M., GRISDALE J. L., 1996, High proppant concentration/high CO2 ratio fracturing system, US Patent No. 5515920
  • 19. MADER D. et al., 1989, Hydraulic proppant fracturing and gravel packing, Elseviewer Science Publishers B. V., Vol. 26, 0-444-41625-0 (series)
  • 20. MACK D. J., 1991, Fracturing process using carbon dioxide and nitrogen, US Patent No. 5069283
  • 21. MARTIN P., DACY J., 2004, Effective Qv by NMR core tests, SPWLA 45th Annual Logging Symposium (June 6th - 9th 2004)
  • 22. MZIK J., 1989, Fracturing process for low permeability reservoirs employing a compatible hydrocarbon-liquid carbon dioxide mixture, US Patent No. 4825952
  • 23. PAGE J. C., MISKIMINS J.L., 2009, A Comparison of Hydraulic and Propellant Fracture Propagation in a Shale Gas Reservoir, Journal of Canadian Petroleum Technology, Vol. 48 No. 5, pp. 26 - 30
  • 24. PAP, 2013, Eksperci: PGNiG ma problemyze szczelinowaniem w poszukiwaniu gazu, [Online] <http://www.biznes.pl>Recovered: June 15th 2013
  • 25. REIDENBACH V. G., HARRIS P. C., LEE Y. N., LORD D. L., 1986, Rheological Study of Foam Fracturing Fluids Using Nitrogen and Carbon Dioxide, SPE, DOI 10.2118/12026-PA
  • 26. ROGALA A., KRZYSIEK J., BERNACIAK M., HUPKA J., 2013. Non-aqueous fracturing technologies for shale gas recovery, Physicochemical Problems of Mineral Processing, Vol. 49, No. 1, 313–322
  • 27. TUDOR R., 1999, Nitrogen/carbon dioxide combination fracture treatment, US Patent No. 5883053
  • 28. UNITED NATIONS FRAMEWORK CONVENTION ON CLIMATE CHANGE (UNFCCC), Doha Climate Gateway CMP8 Decisions (Doha 2012)
  • 29. UNITED NATIONS FRAMEWORK CONVENTION ON CLIMATE CHANGE (UNFCCC), The Kyoto Protocol(Kyoto 1997)
  • 30. United States Environmental Protection Agency (USEPA), 2011, Plan to Study the Potential Impacts of Hydraulic Fracturing on Drinking Water Resources
  • 31. Wright T.R., 1998, Frac technique minimizes formation damages Dry Frac, [Online] <http://findarticles.com/p/articles/mi_m3159/is_n1_v219/ai_20387355/>Recovered: June 20th 2013
  • 32. WAT (Wojskowa Akademia Techniczna), 2012, Sposób sprzężonego wydobycia węglowodorów gazo-wych i magazynowania CO2 z poziomych odwiertów małośrednicowych wykonanych w pojedynczym odwiercie pionowym, Patent Office of Poland, patent application No. P.398228
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-a6c75d39-5bae-4e1a-b415-265817ff3040
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.