IP Library Granted Patent US 9,909,069
Granted Patent B2
US 9,909,069 · App. 14/540,976 · Granted Mar 6, 2018

Process for recycling oil-sorbing polymeric media

Inventor: Chad A. Rogers (Phoenix, AZ)
Assignee: AbTech Industries, Inc.
C10G1/00B01J20/264B01J20/3425B01J20/3475C02F1/285C10G1/002C10G1/065C10G1/10C10G9/00C10G11/00C02F2101/32C02F2103/10
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Quick Facts
Patent No.
US 9,909,069
App. No.
14/540,976
Granted
Mar 6, 2018
Kind
B2
Abstract

Recycling spent hydrophobic polymeric media can beneficially utilize waste oil to dissolve the media. The method employs simple equipment and materials, many or all of which are already on location in various industrial operations such as fracking operations or food production factories. The method does not call for landfilling spent media, thus reducing the environmental impact and reducing expense. Transport costs for spent media and disposal fees can likely decrease. The resulting product can be sold to refineries for further processing and repurposing, thus generating additional revenue.

Claims (28)

1. A substantially homogeneous fluid hydrocarbon composition produced in the absence of additional heat comprising:

a. a dissolved hydrophobic oleophilic hydrocarbon polymer or copolymer comprising 10%-90% by weight styrene and having oil-sorbing properties;

b. oil sorbed by the polymer or copolymer; and

c. waste oil, wherein the combined weight of the sorbed oil and the waste oil is between approximately four and approximately fifteen times the weight of the polymer or copolymer.

2. The composition of claim 1 further comprising a complementary solvent different from the part c waste oil.

3. A process comprising:

a. combining in the absence of additional heat the following reactants:

i. a hydrophobic oleophilic hydrocarbon polymer or copolymer comprising 10%-90% by weight styrene and having oil-sorbing properties, further comprising oil sorbed thereon; and

ii. waste oil as a solvent, wherein the combined weight of the sorbed oil and the waste oil is between approximately four and approximately fifteen times the weight of the hydrophobic oleophilic hydrocarbon polymer or copolymer; and

b. allowing the reactants to react for an amount of time sufficient to produce a substantially homogeneous fluid hydrocarbon composition.

4. The process of claim 3 , wherein the polymer or copolymer is substantially free from inorganic components.

5. The process of claim 4 , wherein the polymer or copolymer has a backbone comprising double bonds and lacks attached benzyl rings.

6. The process of claim 3 wherein the polymer or copolymer is selected from the group consisting of styrene-butadiene-styrene (SBS), styrene-ethylene-butylene-styrene (SEGS), styrene-isoprene-styrene (SIS), styrene-isobutylene-styrene (SIBS), and combinations thereof.

7. The process of claim 3 , wherein the polymer or copolymer is a copolymer of styrene-butadiene-styrene block copolymer and ethylene-propylene-diene monomer (SBS-EPDM).

8. The process of claim 3 further comprising rending at least the polymer or copolymer.

9. The process of claim 3 further comprising thermal or catalytic cracking of the substantially homogeneous fluid hydrocarbon composition.

10. The process of claim 3 , wherein the resulting product is a gel.

11. The process of claim 3 , wherein the resulting product is a non-Newtonian fluid.

12. The process of claim 3 , wherein the substantially homogeneous fluid hydrocarbon composition is substantially free from inorganic components.

13. The process of claim 3 , wherein the reactants further comprise a complementary solvent different from the part (a)(ii) waste oil.

14. The process of claim 13 , wherein the part (a)(ii) waste oil and complementary solvent are combined sequentially for a multistage process.

15. The process of claim 13 , wherein the complementary solvent comprises a second waste oil having a lower specific gravity than the part (a)(ii) waste oil.

16. The process of claim 15 , wherein the complementary solvent is a nonpolar hydrocarbon-based solvent substantially free from inorganic components and having a greater number of benzyl rings than the part (a)(ii) waste oil.

17. The process of claim 16 , wherein the complementary solvent is a non-polyaromatic hydrocarbon.

18. The process of claim 17 , wherein the polymer or copolymer has a backbone comprising double bonds and lacks attached benzyl rings.

19. The process of claim 9 further comprising maceration of the hydrophobic oleophilic hydrocarbon polymer or copolymer.

20. The process of claim 3 , further comprising removing sediment or undissolved media from the substantially homogeneous fluid hydrocarbon composition.

21. The process of claim 3 , further comprising rending at least the polymer or copolymer, removing sediment or undissolved media from the substantially homogeneous fluid hydrocarbon composition, and thermally or catalytically cracking the substantially homogeneous fluid hydrocarbon composition.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded Jul 27, 2026
From: TILLY LLC
To: ABTECH INDUSTRIES, INC.
Reel/Frame 075410/0814 →
SECURITY INTEREST Recorded Jan 19, 2024
From: HUGO NEU CORPORATION
To: TILLY LLC
Reel/Frame 066184/0294 →
SECURITY INTEREST Recorded Dec 21, 2023
From: ABTECH INDUSTRIES, INC.
To: HUGO NEU CORPORATION
Reel/Frame 065927/0664 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 13, 2014
From: ROGERS, CHAD A
To: ABTECH INDUSTRIES, INC.
Reel/Frame 034168/0358 →
Continuity (1)
Related Publication 20160137925A1 · May 19, 2016