IP Library Patent Application 13418778
Patent Application
App. No. 13/418,778

COMPOSITION AND METHOD OF CONVERTING A FLUID FROM OIL EXTERNAL TO WATER EXTERNAL FOR CLEANING A WELLBORE

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Patent No.
US None
App. No.
13/418,778
Abstract

An environmentally acceptable water-in-oil microemulsion composition includes at least one emulsifying surfactant, at least one biodegradable hydrocarbon solvent, at least one co-solvent, at least one hydrocarbon co-surfactant, and water. The microemulsion composition may be used in a method for rendering fluids from oil external to water external. The microemulsion composition may be combined with water or a water based fluid to produce a spacer fluid utilized in removing oil and oil-residues from a surface, particularly that of wellbores in the drilling of oil and gas wells.

Claims (81)

1 . A microemulsion, comprising:

at least one emulsifying surfactant in a concentration from 0 to 40% by weight of the composition;

at least one biodegradable hydrocarbon solvent in a total concentration from 0 to 70% by weight of the composition;

at least one co-solvent in a concentration from 0 to 70% by weight of the composition;

at least one hydrocarbon co-surfactant in a concentration from 0 to 60% by weight of the composition; and

water in a concentration of 0 to 60% by weight of the composition.

2 . The composition of claim 1 , wherein the emulsifying surfactants are selected from the group consisting of polyoxyethylene sorbitan (20) monooleate and polyoxyetheylene sorbitan (20) monolaurate.

3 . The composition of claim 1 , wherein the biodegradable hydrocarbon solvents are selected from the group consisting of methyl caprylate, methyl caprate, methyl laurate, methyl myristate, methyl palmitate, methyl oleate, canola methyl ester, soya methyl ester and ethyl lactate.

4 . The composition of claim 1 , wherein the co-solvents are selected from the group consisting of alcohols, glycol ethers and mutual solvents.

5 . The composition of claim 1 , wherein the hydrocarbon co-surfactant are selected from the group consisting of cationic, anionic, amphoteric and nonionic surfactants.

6 . The composition of claim 1 , wherein water may be comprised of fresh water, salt water or brine.

7 . The composition of claim 1 , wherein:

the preferred emulsifying surfactants are sorbitan monoleate ethoxylate, polyoxyethylene 20, 1.79% by weight of the composition, and linear alcohol ethoxylate, 5.95% by weight of the composition;

the preferred biodegradable hydrocarbon solvent is methyl caprylate/caprate at 47.62% by weight of the composition;

the preferred co-solvent is Clariant Surftreat 9294, (CAS proprietary), 23.81% by weight of the composition;

the preferred hydrocarbon co-surfactant is 26% aqueous solution Sodium Lauryl Sulfate, 17.86% by weight of the composition; and

water, 16.19% by weight of the composition.

8 . A spacer fluid, comprising:

microemulsion in a concentration from 5 to 45% by weight of the spacer fluid; and

water or a water based fluid in a concentration from 55 to 95% by weight of the spacer fluid.

9 . The spacer fluid of claim 8 , wherein the microemulsion, comprises:

at least one emulsifying surfactant in a concentration from 0 to 40% by weight of the composition;

at least one biodegradable hydrocarbon solvent in a total concentration from 0 to 70% by weight of the composition;

at least one co-solvent in a concentration from 0 to 70% by weight of the composition;

at least one hydrocarbon co-surfactant in a concentration from 0 to 60% by weight of the composition; and

water in a concentration of 0 to 60% by weight of the composition.

10 . The composition of claim 9 , wherein the emulsifying surfactants are selected from the group consisting of polyoxyethylene sorbitan (20) monooleate and polyoxyetheylene sorbitan (20) monolaurate.

11 . The composition of claim 9 , wherein the biodegradable hydrocarbon solvents are selected from the group consisting of methyl caprylate, methyl caprate, methyl laurate, methyl myristate, methyl palmitate, methyl oleate, canola methyl ester, soya methyl ester and ethyl lactate.

12 . The composition of claim 9 , wherein the co-solvents are selected from the group consisting of alcohols, glycol ethers and mutual solvents.

13 . The composition of claim 9 , wherein the hydrocarbon co-surfactant are selected from the group consisting of cationic, anionic, amphoteric and nonionic surfactants.

14 . The composition of claim 9 , wherein water may be comprised of fresh water, salt water or brine.

15 . The composition of claim 9 , wherein:

the preferred emulsifying surfactants are sorbitan monooleate ethoxylate, polyoxyethylene 20, 1.79% by weight of the composition, and a linear alcohol ethoxylate, 5.95% by weight of the composition;

the preferred biodegradable hydrocarbon solvent is methyl caprylate/caprate at 47.62% by weight of the composition;

the preferred co-solvent is Clariant Surftreat 9294, (CAS proprietary), 23.81% by weight of the composition;

the preferred hydrocarbon co-surfactant is 26% aqueous solution Sodium Lauryl Sulfate, 17.85714% by weight of the composition; and

water, 16.19% by weight of the composition.

16 . A method of converting a microemulsion to a spacer fluid, comprising:

preparing a microemulsion; and

combining the mircoemulsion in a concentration from 5 to 45% by weight with water or a water based fluid in a concentration from 55 to 95% by weight, thereby producing the spacer fluid.

17 . The method of converting a microemulsion to a spacer fluid of claim 16 , wherein preparing the micro emulsion, comprises:

providing at least one emulsifying surfactant in a concentration from 0 to 40% by weight of the composition;

providing at least one biodegradable hydrocarbon solvent in a total concentration from 0 to 70% by weight of the composition;

providing at least co-solvent in a concentration from 0 to 70% by weight of the composition;

providing at least one hydrocarbon co-surfactant in a concentration from 0 to 60% by weight of the composition;

providing water in a concentration of 0 to 60% by weight of the composition; and

combining the at least one emulsifying surfactant, the at least one biodegradable hydrocarbon solvent, the at least co-solvent, the at least one hydrocarbon co-surfactant, and the water, thereby producing the microemulsion.

18 . The method of converting a microemulsion to a spacer fluid of claim 17 , wherein the emulsifying surfactants are selected from the group consisting of polyoxyethylene sorbitan (20) monooleate and polyoxyetheylene sorbitan (20) monolaurate.

19 . The method of converting a microemulsion to a spacer fluid of claim 17 , wherein the biodegradable hydrocarbon solvents are selected from the group consisting of methyl caprylate, methyl caprate, methyl laurate, methyl myristate, methyl palmitate, methyl oleate, canola methyl ester, soya methyl ester and ethyl lactate.

20 . The method of converting a microemulsion to a spacer fluid of claim 17 , wherein the co-solvents are selected from the group consisting of alcohols, glycol ethers and mutual solvents.

21 . The method of converting a microemulsion to a spacer fluid of claim 17 , wherein the hydrocarbon co-surfactants are selected from the group consisting of cationic, anionic, amphoteric and nonionic surfactants.

22 . The method of converting a microemulsion to a spacer fluid of claim 17 , wherein water may be comprised of fresh water, salt water or brine.

23 . The method of converting a microemulsion to a spacer fluid of claim 17 , wherein:

the preferred emulsifying surfactants are sorbitan monooleate ethoxylate, polyoxyethylene 20, 1.79% by weight of the composition, and a linear alcohol ethoxylate, 5.95% by weight of the composition;

the preferred biodegradable hydrocarbon solvent is methyl caprylate/caprate at 47.62% by weight of the composition;

the preferred co-solvent is Clariant Surftreat 9294, (CAS proprietary), 23.81% by weight of the composition;

the preferred hydrocarbon co-surfactant is 26% aqueous solution Sodium Lauryl Sulfate, 17.86% by weight of the composition; and

water, 16.19% by weight of the composition.

24 . A method of cleaning a surface, comprising:

preparing a microemulsion;

combining the mircoemulsion in a concentration from 5 to 45% by weight with water or a water based fluid in a concentration from 55 to 95% to produce a spacer fluid; and

contacting the surface with the spacer fluid.

25 . The method of cleaning a surface of claim 24 , wherein contacting the surface with the spacer fluid transitions fluid on the surface from oil-external to water external.

26 . The method of cleaning a surface of claim 24 , wherein preparing the microemulsion, comprises:

providing at least one emulsifying surfactant in a concentration from 0 to 40% by weight of the composition;

providing at least one biodegradable hydrocarbon solvent in a total concentration from 0 to 70% by weight of the composition;

providing at least co-solvent in a concentration from 0 to 70% by weight of the composition;

providing at least one hydrocarbon co-surfactant in a concentration from 0 to 60% by weight of the composition;

providing water in a concentration of 0 to 60% by weight of the composition; and

combining the at least one emulsifying surfactant, the at least one biodegradable hydrocarbon solvent, the at least co-solvent, the at least one hydrocarbon co-surfactant, and the water, thereby producing the microemulsion.

27 . The method of cleaning a surface of claim 26 , wherein the emulsifying surfactants are selected from the group consisting of polyoxyethylene sorbitan (20) monooleate and polyoxyetheylene sorbitan (20) monolaurate.

28 . The method of cleaning a surface of claim 26 , wherein the biodegradable hydrocarbon solvents are selected from the group consisting of methyl caprylate, methyl caprate, methyl laurate, methyl myristate, methyl palmitate, methyl oleate, canola methyl ester, soya methyl ester and ethyl lactate.

29 . The method of cleaning a surface of claim 26 , wherein the co-solvents are selected from the group consisting of alcohols, glycol ethers and mutual solvents.

30 . The method of cleaning a surface of claim 26 , wherein the hydrocarbon co-surfactant are selected from the group consisting of cationic, anionic, amphoteric and nonionic surfactants.

31 . The method of cleaning a surface of claim 26 , wherein water may be comprised of fresh water, salt water or brine.

32 . The method of cleaning a surface of claim 26 , wherein:

the preferred emulsifying surfactants are sorbitan monooleate ethoxylate, polyoxyethylene 20, 1.79% by weight of the composition, and alinear alcohol ethoxylate, 5.95% by weight of the composition;

the preferred biodegradable hydrocarbon solvent is methyl caprylate/caprate at 47.62% by weight of the composition;

the preferred co-solvent is Clariant Surftreat 9294, (CAS proprietary), 23.81% by weight of the composition;

the preferred hydrocarbon co-surfactant is 26% aqueous solution Sodium Lauryl Sulfate, 17.86% by weight of the composition; and

water, 16.19% by weight of the composition.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Jan 18, 2018
From: WELLS FARGO BANK, NATIONAL ASSOCIATION
To: ROCKWATER ENERGY SOLUTIONS, INC.; BENCHMARK ENERGY PRODUCTS, LLC; BENCHMARK PERFORMANCE GROUP, INC.; BENCHMARK RESEARCH & TECHNOLOGY, LLC; REEF SERVICES, LLC; ROCKWATER ENERGY SOLUTIONS WATER MANAGEMENT, LLC; ROCKWATER ROCKIES, LLC; ROCKWATER WEST TX, LLC; TECHNOLOGY MANAGEMENT, LLC
Reel/Frame 045093/0201 →
AMENDED AND RESTATED SECURITY AGREEMENT Recorded May 5, 2015
From: ROCKWATER ENERGY SOLUTIONS, INC.; BENCHMARK ENERGY PRODUCTS, LLC; BENCHMARK PERFORMANCE GROUP, INC.; BENCHMARK RESEARCH & TECHNOLOGY, LLC; REEF SERVICES, LLC; ROCKWATER ENERGY SOLUTIONS WATER MANAGEMENT, LLC; ROCKWATER ROCKIES, LLC; ROCKWATER WEST TX, LLC; TECHNOLOGY MANAGEMENT, LLC
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 035581/0665 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2012
From: MABERRY L. JACK; MALEKAHMADI, FATI; HARRY, DAVID N.
To: BENCHMARK PERFORMANCE GROUP INC.
Reel/Frame 027952/0362 →