IP Library › Granted Patent US 12,650,420
Granted Patent B2
US 12,650,420 · App. 18/480,346 · Granted Jun 9, 2026

Lubricating oil analysis

Inventor: Andrew Satterfield (Furlong, PA)
Assignee: ExxonMobil Technology and Engineering Company
G01N33/2888G01N23/223G01N2223/076G01N2223/1016G01N2223/637G01N2223/652
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Quick Facts
Patent No.
US 12,650,420
App. No.
18/480,346
Granted
Jun 9, 2026
Kind
B2
Abstract

A method of analyzing a lubricating oil may include: measuring a first concentration of components in a lubricating oil prior to introduction into a cylinder in a two-stroke engine using x-ray fluorescence, the components comprising: sulfur and total calcium; collecting a scrape-down lubricating oil that corresponds to the lubricating oil after having been passed through the cylinder during fuel combustion of a fuel comprising 0.5 wt % or less sulfur; measuring a second concentration of the components in the scrape-down lubricating oil using the x-ray fluorescence; and calculating an amount of acid neutralized during combustion based on the first and second concentration of the components. Based on said analysis a change to a property of the scrape-down lubricating oil and/or changing a feed rate of the lubricating oil into the cylinder based on the amount of acid neutralized may be implemented.

Claims (47)

1 . A method comprising:

measuring a first concentration of components in a lubricating oil prior to introduction into a cylinder in a two-stroke engine using x-ray fluorescence, the components comprising: sulfur and total calcium;

collecting a scrape-down lubricating oil that corresponds to the lubricating oil after having been passed through the cylinder during fuel combustion of a fuel comprising 0.5 wt % or less sulfur;

measuring a second concentration of the components in the scrape-down lubricating oil using the x-ray fluorescence; and

calculating an amount of acid neutralized during combustion based on the first and second concentration of the components.

2 . The method of claim 1 further comprising:

implementing a change to a property of the scrape-down lubricating oil and/or changing a feed rate of the lubricating oil into the cylinder based on the amount of acid neutralized.

3 . The method of claim 1 , wherein the measuring of the second concentration of the components is within about 4 hours of the collecting of the scrape-down lubricating oil.

4 . The method of claim 1 , wherein the implanting of the change to the property and/or the changing of the feed rate is further based on a remaining useful base number that equals a total base number of the lubricating oil prior to introduction into the cylinder (TBN fresh ) minus the amount of acid neutralized.

5 . The method of claim 1 , wherein the fuel comprises 0.1 wt % or less of sulfur.

6 . The method of claim 1 further comprising:

measuring a concentration of one or more elements of: iron, chromium, or vanadium; and

wherein the implanting of the change to the property and/or the changing of the feed rate is further based on the concentration of the one or more elements.

7 . A method comprising:

measuring a first concentration of components in a lubricating oil prior to introduction into a cylinder in an engine using x-ray fluorescence, the components comprising: sulfur and total calcium;

collecting a scrape-down lubricating oil that corresponds to the lubricating oil after having been passed through the cylinder during fuel combustion of a fuel comprising 0.5 wt % or less sulfur;

measuring a second concentration of the components in the scrape-down lubricating oil using the x-ray fluorescence;

calculating an amount of acid neutralized during combustion based on the first and second concentration of the components; and

calculating (a) a remaining useful base number for the scrape-down lubricating oil and/or (b) a total base number for the scrape-down lubricating oil.

8 . The method of claim 7 further comprising:

implementing a change to a property of the scrape-down lubricating oil and/or changing a feed rate of the lubricating oil into the cylinder based on (a) the remaining useful base number and/or (b) a correlation between the amount of acid neutralized during combustion and the total base number for the scrape-down lubricating oil.

9 . The method of claim 7 , wherein the measuring of the second concentration of the components is within about 4 hours of the collecting of the scrape-down lubricating oil.

10 . The method of claim 7 , wherein the fuel comprises 0.1 wt % or less of sulfur.

11 . The method of claim 7 further comprising:

measuring a concentration of one or more elements of: iron, chromium, or vanadium; and

wherein the implanting of the change to the property and/or the changing of the feed rate is further based on the concentration of the one or more elements.

12 . A method comprising:

measuring a first metal concentration in a marine lubricating oil prior to introduction into a cylinder in an engine using x-ray fluorescence, wherein the first metal concentration includes a concentration of soluble metal and a concentration of insoluble metal;

collecting a scrape-down marine lubricating oil that corresponds to the marine lubricating oil after having been passed through the cylinder during fuel combustion of a fuel comprising 0.5 wt % or less sulfur;

measuring a second metal concentration in the scrape-down marine lubricating oil using the x-ray fluorescence;

calculating a change in metal concentration during combustion based on the first and second metal concentration; and

when the change in metal concentration is an increase in the metal concentration that is above a threshold, implementing a change to a property of the scrape-down marine lubricating oil and/or changing a feed rate of the lubricating oil into the cylinder to cause a reduction in a base number of the lubricating oil in the engine.

13 . The method of claim 12 , wherein the fuel contains 0.1 wt % sulfur or less.

14 . The method of claim 12 , wherein the fuel contains no sulfur.

15 . The method of claim 12 , wherein the metal is selected from the group consisting of: iron, chromium, vanadium, magnesium, phosphorus, chlorine, potassium, manganese, aluminum, silicon, titanium, copper, nickel, zinc, lead, tin, or other elements.

16 . The method of claim 12 , wherein the metal is calcium.

17 . The method of claim 16 further comprising:

measuring a first concentration of sulfur in the lubricating oil;

measuring a second concentration of sulfur in the scrape-down lubricating oil; and

calculating an amount of acid neutralized during combustion based on the first and second concentration of the components; and

wherein the implanting of the change to the property and/or the changing of the feed rate is further based on the amount of acid neutralized.

18 . The method of claim 17 further comprising:

calculating a remaining useful base number for the scrape-down marine lubricating oil; and

wherein the implanting of the change to the property and/or the changing of the feed rate is further based on the remaining useful base number.

19 . The method of claim 17 further comprising:

calculating a total base number for the scrape-down lubricating oil; and

wherein the implanting of the change to the property and/or the changing of the feed rate is further based on a correlation between the amount of acid neutralized during combustion and the total base number for the scrape-down lubricating oil.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 3, 2023
From: SATTERFIELD, ANDREW
To: EXXONMOBIL TECHNOLOGY AND ENGINEERING COMPANY
Reel/Frame 065111/0555 →
Continuity (2)
Provisional Application 63379245 · Oct 12, 2022
Related Publication 20240133859A1 · Apr 25, 2024
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