IP Library Granted Patent US 7,407,809
Granted Patent B2
US 7,407,809 · App. 11/809,457 · Granted Aug 5, 2008

Method for determining asphaltenes contamination in used marine engine lubricants using UV-visible spectroscopy and chemometrics

Assignee: ExxonMobil Research and Engineering Company
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Quick Facts
Patent No.
US 7,407,809
App. No.
11/809,457
Granted
Aug 5, 2008
Kind
B2
Abstract

A method for determining contamination in marine diesel lubricating oils. The method has been found to have particular utility in estimating asphaltenes contamination in marine diesel lubricating oils. The method includes the steps of: (a) obtaining spectral raw data over a frequency range substantially equivalent to that of ultraviolet-visible light for reference lubricating oil samples with known properties and concentrations of asphaltenes; (b) performing chemometric techniques to the spectral raw data obtained in step (a) to develop a calibration model and calibrate the spectral data with actual values for parameters reflecting the level of asphaltenes contamination of the reference samples, the actual values determined by means of conventional analytical methods; (c) obtaining spectra of samples of marine diesel lubricating oil of unknown concentration of asphaltenes over a frequency range substantially equivalent to that of ultraviolet-visible light; and (d) processing the obtained spectral raw data of step (c) and applying the developed calibration model to the processed data in order to determine the parameters reflecting the level of asphaltenes present in the marine diesel lubricating oil.

Claims (13)

1. A method for determining contamination in marine diesel lubricating oils, comprising:

obtaining spectral raw data over a frequency range substantially equivalent to that of ultraviolet-visible light for reference lubricating oil samples with known properties and concentrations of asphaltenes;

performing chemometric techniques to the spectral raw data obtained in step (a) to develop a calibration model and calibrate the spectral data with actual values for parameters reflecting the level of asphaltenes contamination of the reference samples, said actual values determined by means of conventional analytical methods;

obtaining spectra of samples of marine diesel lubricating oil of unknown concentration of asphaltenes over a frequency range substantially equivalent to that of ultraviolet-visible light; and

processing the obtained spectral raw data of step (c) and applying the developed calibration model to the processed data in order to determine the parameters reflecting the level of asphaltenes present in the marine diesel lubricating oil.

2. The method of claim 1 , wherein the reference lubricating oil samples include both new and used lubricating oil samples.

3. The method of claim 1 , wherein the frequency range of steps (a) and (c) is 250 to 450 nm.

4. A method for determining asphaltenes in marine diesel lubricating oils, comprising:

obtaining spectral raw data over a frequency range substantially equivalent to that of ultraviolet-visible light for reference lubricating oil samples with known properties and concentrations of asphaltenes;

performing chemometric techniques to the spectral raw data obtained in step (a) to develop a calibration model and calibrate the spectral data with actual values for parameters reflecting the level of asphaltenes contamination of the reference samples, said actual values determined by means of conventional analytical methods;

obtaining spectra of samples of marine diesel lubricating oil of unknown concentration of asphaltenes over a frequency range substantially equivalent to that of ultraviolet-visible light; and

processing the obtained spectral raw data of step (c) and applying the developed calibration model to the processed data in order to determine the parameters reflecting the level of asphaltenes present in the marine diesel lubricating oil.

5. The method of claim 4 , wherein the reference lubricating oil samples include both new and used lubricating oil samples.

Continuity (3)
Continuation 1027407000 · Oct 18, 2002
Provisional Application 6033999400 · Nov 30, 2001
Related Publication 20070231912A1 · Oct 4, 2007