IP Library Granted Patent US 9,594,070
Granted Patent B2
US 9,594,070 · App. 14/072,556 · Granted Mar 14, 2017

Method using halogenated benzoic acid esters and aldehydes for hydraulic fracturing and for tracing petroleum production

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Quick Facts
Patent No.
US 9,594,070
App. No.
14/072,556
Granted
Mar 14, 2017
Kind
B2
Abstract

A method of hydraulic fracturing, and tracer composites for use in the fracturing procedure, for tracing the production of crude oil or other hydrocarbon liquid products from one or more fractured zones. The tracer composites preferably include an oil soluble tracer adsorbed onto a solid carrier material. A non-water soluble coating is preferable also included on the composite over the tracer compound.

Claims (52)

1. A method of fracturing and tracing crude oil production from a subterranean formation, said method comprising the steps of:

(a) injecting an aqueous fracturing fluid into a fracturing zone of a subterranean formation wherein: at least a portion of said aqueous fracturing fluid includes an amount of a tracer composite material, said tracer composite material comprises a tracer on a solid carrier material, said carrier material is substantially non-soluble in water, said carrier material is activated charcoal, said aqueous fracturing fluid comprises water and a proppant material, said tracer composite material is different from said proppant material, said tracer is oil soluble, said tracer is substantially inert with respect to said aqueous fracturing fluid, said tracer is chemically stable under all conditions in said subterranean formation so that said tracer does not substantially react with other substances or form other products in said subterranean formation, and said tracer is a halogenated benzoic ester having a formula

wherein

each x in said formula is a chlorine, fluorine, bromine, or hydrogen atom,

at least one x in said formula is a chlorine, fluorine, or bromine atom, and

R is a straight chained, branched chained, or aromatic hydrocarbon constituent group having from 1 to 10 carbon atoms, and

(b) analyzing a crude oil product or a crude oil phase of a product recovered from a well associated with said subterranean formation for a presence of said tracer in said crude oil product or said crude oil phase of said product to determine whether said crude oil product or said crude oil phase of said product includes crude oil produced from said fracturing zone,

wherein step (b) comprises (i) adding a NaOH solution to said crude oil product or said crude oil phase of said product recovered from said well to hydrate said tracer to produce a halogenated benzoate which separates from said crude oil product or said crude oil phase of said product into an aqueous phase and then (ii) analyzing said aqueous phase for said halogenated benzoate.

2. The method of claim 1 wherein R is a methyl group.

3. The method of claim 1 wherein said tracer is methyl 2-fluorobenzoate, methyl 3-fluorobenzoate, or methyl 4-fluorobenzoate.

4. The method of claim 1 further comprising the step, prior to step (a), of injecting an initial pad material into said fracturing zone, wherein said tracer composite material is not included in said initial pad material.

5. The method of claim 1 further comprising the step, after step (a), of injecting a final flush material into said fracturing zone, wherein said tracer composite material is not included in said final flush material.

6. The method of claim 1 wherein said fracturing zone is a first fracturing zone, said tracer composite material is a first tracer composite material, said tracer is a first tracer, and said method further comprises the steps of:

(c) injecting, prior to step (b), an aqueous fracturing fluid into a second fracturing zone of said subterranean formation wherein: at least a portion of said aqueous fracturing fluid injected into said second fracturing zone includes an amount of a second tracer composite material, said second tracer composite material comprises a second tracer on a solid carrier material, said carrier material of said second tracer composite material is substantially non-soluble in water, said carrier material of said second tracer composite material is activated charcoal, said aqueous fracturing fluid injected into said second fracturing zone comprises water and a proppant material, said second tracer is oil soluble, said second tracer is substantially inert with respect to said aqueous fracturing fluid injected into said second fracturing zone, said second tracer is chemically stable under all conditions in said subterranean formation so that said second tracer does not substantially react with other substances or form other products in said subterranean formation, said second tracer is different from said first tracer, and said second tracer is a halogenated benzoic aldehyde or said second tracer is a halogenated benzoic ester having a formula

wherein

each x in said formula is a chlorine, fluorine, bromine, or hydrogen atom,

at least one x in said formula is a chlorine, fluorine, or bromine atom, and

R is a straight chained, branched chained, or aromatic hydrocarbon constituent group having from 1 to 10 carbon atoms, and

(d) analyzing said crude oil product or said crude oil phase of said product recovered from said well for a presence of said second tracer in said crude oil product or said crude oil phase of said product to determine whether said crude oil product or said crude oil phase of said product includes crude oil produced from said second fracturing zone.

7. The method of claim 6 wherein each of said first tracer and said second tracer is a halogenated benzoic ester having a formula

wherein

each x in said formula is a chlorine, fluorine, bromine, or hydrogen atom,

at least one x in said formula is a chlorine, fluorine, or bromine atom, and

R is a straight chained, branched chained, or aromatic hydrocarbon constituent group having from 1 to 10 carbon atoms.

8. The method of claim 6 further comprising the steps of:

prior to step (a), injecting an initial pad material into said first fracturing zone, wherein said first tracer composite material is not included in said initial pad material injected into said first fracturing zone and

prior to step (c), injecting an initial pad material into said second fracturing zone, wherein said second tracer composite material is not included in said initial pad material injected into said second fracturing zone.

9. The method of claim 6 further comprising the steps of:

after step (a), injecting a final flush material into said first fracturing zone, wherein said first tracer composite material is not included in said final flush material injected into said first fracturing zone and

after step (c), injecting a final flush material into said second fracturing zone, wherein said second tracer composite material is not included in said final flush material injected into said second fracturing zone.

10. The method of claim 1 wherein said carrier material has a pore size in a range of from 20 to 150 Å.

11. A method of fracturing and tracing crude oil production from a subterranean formation, said method comprising the steps of:

(a) injecting a first aqueous fracturing fluid into a first fracturing zone of a subterranean formation wherein: at least a portion of said first aqueous fracturing fluid includes an amount of a first tracer composite material, said first tracer composite material comprises a first tracer on a solid activated charcoal carrier material which is substantially non-soluble in water, said first aqueous fracturing fluid comprises water and a proppant material, and said first tracer is an oil soluble halogenated benzoic ester which (i) is substantially inert with respect to said first aqueous fracturing fluid and (ii) is chemically stable under all conditions in said subterranean formation so that said first tracer does not substantially react with other substances or form other products in said subterranean formation;

(b) injecting a second aqueous fracturing fluid into a second fracturing zone of said subterranean formation wherein: at least a portion of said second aqueous fracturing fluid includes an amount of a second tracer composite material, said second tracer composite material comprises a second tracer on a solid activated charcoal carrier material which is substantially non-soluble in water, said second aqueous fracturing fluid comprises water and a proppant material, and said second tracer is an oil soluble halogenated benzoic ester which (i) is substantially inert with respect to said second aqueous fracturing fluid, (ii) is chemically stable under all conditions in said subterranean formation so that said second tracer does not substantially react with other substances or form other products in said subterranean formation, and (iii) is different from said first tracer, wherein each of said first tracer and said second tracer is an oil soluble halogenated benzoic ester having a formula

 wherein each x in said formula is a chlorine, fluorine, bromine, or hydrogen atom, at least one x in said formula is a chlorine, fluorine, or bromine atom, and R is a methyl constituent group, and

(c) analyzing a crude oil product or a crude oil phase of a product recovered from a well associated with said subterranean formation for a presence of said first tracer and said second tracer in said crude oil product or said crude oil phase of said product to determine whether said crude oil product or said crude oil phase of said product includes crude oil produced from said first fracturing zone, said second fracturing zone, or both said first fracturing zone and said second fracturing zone,

wherein step (c) comprises (i) adding a NaOH solution to said crude oil product or said crude oil phase of said product recovered from said well to hydrate said first and said second tracers to produce halogenated benzoates which separate from said crude oil product or said crude oil phase of said product into an aqueous phase and (ii) then analyzing said aqueous phase for said halogenated benzoates.

12. A method of fracturing and tracing crude oil production from a subterranean formation, said method comprising the steps of:

(a) injecting an aqueous fracturing fluid into a fracturing zone of a subterranean formation wherein: at least a portion of said aqueous fracturing fluid includes an amount of a tracer composite material, said tracer composite material comprises a tracer on a solid carrier material, said carrier material is substantially non-soluble in water, said carrier material is activated charcoal, said aqueous fracturing fluid comprises water and a proppant material, said tracer composite material is different from said proppant material, said tracer is oil soluble, said tracer is substantially inert with respect to said aqueous fracturing fluid, said tracer is chemically stable under all conditions in said subterranean formation so that said tracer does not substantially react with other substances or form other products in said subterranean formation, and said tracer is a halogenated benzoic aldehyde and

(b) analyzing a crude oil product or a crude oil phase of a product recovered from a well associated with said subterranean formation for a presence of said tracer in said crude oil product or said crude oil phase of said product to determine whether said crude oil product or said crude oil phase of said product includes crude oil produced from said fracturing zone.

13. The method of claim 12 wherein step (b) comprises (i) adding Jones reagent to said crude oil or said crude oil phase of said product recovered from said well to react with said tracer to produce a halogenated benzoate which separates from said crude oil or said crude oil phase of said product into an aqueous phase and then (ii) analyzing said aqueous phase for said halogenated benzoate.

14. The method of claim 12 wherein said fracturing zone is a first fracturing zone, said tracer composite material is a first tracer composite material, said tracer is a first tracer, and said method further comprises the steps of:

(c) injecting, prior to step (b), an aqueous fracturing fluid into a second fracturing zone of said subterranean formation wherein: at least a portion of said aqueous fracturing fluid injected into said second fracturing zone includes an amount of a second tracer composite material, said second tracer composite material comprises a second tracer on a solid carrier material, said carrier material of said second tracer composite material is substantially non-soluble in water, said carrier material of said second tracer composite material is activated charcoal, said aqueous fracturing fluid injected into said second fracturing zone comprises water and a proppant material, said second tracer is oil soluble, said second tracer is substantially inert with respect to said aqueous fracturing fluid injected into said second fracturing zone, said second tracer is chemically stable under all conditions in said subterranean formation so that said second tracer does not substantially react with other substances or form other products in said subterranean formation, said second tracer is different from said first tracer, and said second tracer is a halogenated benzoic aldehyde and

(d) analyzing said crude oil product or said crude oil phase of said product recovered from said well for a presence of said second tracer in said crude oil product or said crude oil phase of said product to determine whether said crude oil product or said crude oil phase of said product includes crude oil produced from said second fracturing zone.

15. A method of fracturing and tracing crude oil production from a subterranean formation, said method comprising the steps of:

(a) injecting an aqueous fracturing fluid into a fracturing zone of a subterranean formation wherein: at least a portion of said aqueous fracturing fluid includes an amount of a tracer composite material, said tracer composite material comprises a tracer on a solid carrier material, said carrier material is substantially non-soluble in water, said carrier material is activated charcoal, said aqueous fracturing fluid comprises water and a proppant material, said tracer composite material is different from said proppant material, said tracer is oil soluble, said tracer is substantially inert with respect to said aqueous fracturing fluid, said tracer is chemically stable under all conditions in said subterranean formation so that said tracer does not substantially react with other substances or form other products in said subterranean formation, and said tracer is a halogenated benzoic ester having a formula

wherein

each x in said formula is a chlorine, fluorine, bromine, or hydrogen atom,

at least one x in said formula is a chlorine, fluorine, or bromine atom, and

R is a straight chained, branched chained, or aromatic hydrocarbon constituent group having from 1 to 10 carbon atoms, and

(b) analyzing a crude oil product or a crude oil phase of a product recovered from a well associated with said subterranean formation for a presence of said tracer in said crude oil product or said crude oil phase of said product to determine whether said crude oil product or said crude oil phase of said product includes crude oil produced from said fracturing zone,

wherein step (b) comprises (i) hydrating said tracer in said crude oil product or said crude oil phase of said product to produce a halogenated benzoate which separates from said crude oil product or said crude oil phase of said product into an aqueous phase and then (ii) analyzing said aqueous phase for said halogenated benzoate.

Assignments (8)
CHANGE OF ADDRESS Recorded Jan 19, 2023
From: NCS MULTISTAGE, LLC
To: NCS MULTISTAGE, LLC
Reel/Frame 062435/0850 →
RELEASE OF LIEN - PATENT AND TRADEMARK Recorded Jul 28, 2022
From: WELLS FARGO BANK, NATIONAL ASSOCIATION
To: NCS MULTISTAGE, LLC; NCS MULTISTAGE INC.
Reel/Frame 061002/0587 →
PATENT SECURITY AGREEMENT Recorded Jul 28, 2022
From: NCS MULTISTAGE, LLC; NCS MULTISTAGE INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 061002/0734 →
SECURITY INTEREST Recorded Aug 17, 2020
From: NCS MULTISTAGE HOLDINGS, INC; NCS MULTISTAGE INC.
To: WELLS FARGO BANK NATIONAL ASSOCIATION
Reel/Frame 053520/0064 →
MERGER Recorded Feb 26, 2020
From: SPECTRUM TRACER SERVICES, LLC
To: NCS MULTISTAGE, LLC
Reel/Frame 051931/0569 →
SECURITY INTEREST Recorded May 3, 2019
From: NCS MULTISTAGE, LLC; SPECTRUM TRACER SERVICES, LLC
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 049075/0977 →
SECURITY INTEREST Recorded Sep 5, 2017
From: NCS MULTISTAGE HOLDINGS, INC.
To: WELLS FARGO BANK, N.A.
Reel/Frame 043492/0403 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 17, 2013
From: RULE, JEFFREY DAVID; FAUROT, STEVE ALLEN
To: SPECTRUM TRACER SERVICES, LLC
Reel/Frame 031797/0398 →