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Advanced Formation Evaluation

Mass Spectrometer

Mass Spectrometer

Mass Spectrometer

  It analyzes C1-C10 petroleum species, and inorganic compounds such as CO2, He, N2, O2 and sulfur bearing volatiles.  It can discriminate among paraffins, naphthenes and aromatics, BTEX compounds (Benzene, Toluene, Xylene).

Main contributions are:

  • Geochemical profile to help steer within formation.
  • Highlight potential fracture/fault zones.
  • H

  It analyzes C1-C10 petroleum species, and inorganic compounds such as CO2, He, N2, O2 and sulfur bearing volatiles.  It can discriminate among paraffins, naphthenes and aromatics, BTEX compounds (Benzene, Toluene, Xylene).

Main contributions are:

  • Geochemical profile to help steer within formation.
  • Highlight potential fracture/fault zones.
  • H2S tracking.
  • Highlight Frac Boundaries and best zones to perforate.
  • Identify water contact, & bit wear.
  • Hydrocarbon compartmentalization. 

XRF

Mass Spectrometer

Mass Spectrometer

X-ray fluorescence (XRF) is a non-destructive analytical technique used to determine the elemental composition of materials. XRF analyzers determine the chemistry of a sample by measuring the fluorescent (or secondary) X-ray emitted from a sample when it is excited by a primary X-ray source. Each of the elements present in a sample produc

X-ray fluorescence (XRF) is a non-destructive analytical technique used to determine the elemental composition of materials. XRF analyzers determine the chemistry of a sample by measuring the fluorescent (or secondary) X-ray emitted from a sample when it is excited by a primary X-ray source. Each of the elements present in a sample produces a set of characteristic fluorescent X-rays that is unique for that specific element. 

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