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Number of results
2012 | 121 | 2 | 566-570

Article title

Chemical, Magnetic and X-Ray Diffraction Studies of the Sediments from Oil Field in Argentina

Content

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Languages of publication

EN

Abstracts

EN
Chemical, magnetic, and phase composition analysis of deposits taken from sedimentation tank from oil plant in Argentina was carried out. Energy dispersive spectroscopy indicates iron as a main sediment component with the site dependent fraction ranging from 11% to 78% (weight percentage). Moreover, large fractions of sulfur (4%-33%), oxygen (8%-28%), calcium (1%-14%), and silicon (1%-11%) were found. The chemical analysis performed with wet chemical methods also indicated Fe as a main component (about 35%), additionally a large fraction ( ≈ 15%) of the sulfur and under 10% fractions of calcium ( ≈ 7%), carbon ( ≈ 6%), and silicon ( ≈ 5%) were found in the sample. The phase composition studies performed using X-ray diffraction showed magnetite - Fe_3O_4, goethite - α-FeOOH, lepidocrocite - γ-FeOOH, siderite - FeCO_3, and iron-sulfur compounds (mackinawite - FeS, stoichiometric FeS, greigite - Fe_3S_4) and other compounds like aragonite - CaCO_3, calcite - CaCO_3, anorthite - CaAl_2Si_2O_8, quartz - SiO_2 and barium sulphate Ba(SO_3)_{0.3}(SO_4)_{0.7}. Studies performed by the Mössbauer spectroscopy, confirmed presence of majority of compounds identified by X-ray diffraction. Magnetic AC susceptibility measurements show that magnetite is a main component of the studied deposit. High concentration of the magnetic compounds deposited in the sedimentation tank points to the advisability to install the magnetic device designed to support water treatment processes, i.e.: flocculation, coagulation, sedimentation, and filtration. This device could simultaneously inhibit microbiological and chemical corrosion.

Keywords

EN

Contributors

author
  • The Henryk Niewodniczański Institute of Nuclear Physics, Polish Academy of Sciences, Kraków, Poland
author
  • The Henryk Niewodniczański Institute of Nuclear Physics, Polish Academy of Sciences, Kraków, Poland
author
  • The Henryk Niewodniczański Institute of Nuclear Physics, Polish Academy of Sciences, Kraków, Poland
author
  • The Henryk Niewodniczański Institute of Nuclear Physics, Polish Academy of Sciences, Kraków, Poland
author
  • AGH - University of Science and Technology, Kraków, Poland
  • The Henryk Niewodniczański Institute of Nuclear Physics, Polish Academy of Sciences, Kraków, Poland
author
  • AGH - University of Science and Technology, Kraków, Poland

References

  • [1] L.L. Schramm, Emulsions, Foams and Suspensions. Fundamentals and Applications, Wiley-VCH, Weinheim 2005
  • [2] R. Cord-Ruwisch, W. Kleinitz, F. Widdel, J. Petrol. Technol. 39, 97 (1987)
  • [3] M. Amiri, J. Moghadasi, Asian J. Sci. Res. 3, 230 (2010)
  • [4] A. Szkatuła, M. Bałanda, M. Kopeć, Eur. J. Appl. Phys. 18, 41 (2002)
  • [5] M. Kopeć, A. Szkatuła, M. Kąc, Device for Fe compound removing from water by magnetic field, PL Patent No. P393467
  • [6] D.G. Rancourt, J.Y. Ping, Nucl. Instrum. Methods Phys. Res. B 58, 85 (1991)
  • [7] M.J. Dekkers, Geologie en Mijnbouw 76, 163 (1997)
  • [8] V. Skumryev, H.J. Blythe, J. Cullen, J.M.D. Coey, J. Magn. Magn. Mater. 196-197, 515 (1999)
  • [9] M. Bałanda, A. Wiecheć, Z. Kąkol, A. Kozłowski, D. Kim, J.M. Honig, Acta Phys. Pol. B 34, 1513 (2003)
  • [10] B. Handke, T. Ślęzak, M. Kubik, J. Korecki, J. Radioanal. Nucl. Chem. 246, 27 (2000)
  • [11] N.N. Greenwood, T.C. Gibb, Mössbauer Spectroscopy, Chapman and Hall, London 1971
  • [12] M. Saporoschenko, C.C. Hinckley, G.V. Smith, H. Twardowska, R.H. Shileyf, R.A. Griffint, S.J. Russell, Fuel 59, 567 (1980)
  • [13] H. Stanjek, E. Murads, Clays Clay Miner. 42, 451 (1994)
  • [14] A. Bustamante, D. Lovera, R. Quille, A.V. Arias, J. Quiñones, Hyperfine Interact. 195, 63 (2010)

Document Type

Publication order reference

Identifiers

YADDA identifier

bwmeta1.element.bwnjournal-article-appv121n286kz
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