IP Library Granted Patent US 11,459,590
Granted Patent B2
US 11,459,590 · App. 16/710,516 · Granted Oct 4, 2022

Polyhydroxyalkanoate production methods and systems for same

Inventors: Markus Donald Herrema (Venice, CA); Kenton Kimmel (Dana Point, CA)
Assignee: Newlight Technologies, Inc.
C12P7/625A61K38/05C08G63/06C10L3/10C12M1/04C12M47/18C12N1/30C12P7/42C12P7/62F02D17/02
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Quick Facts
Patent No.
US 11,459,590
App. No.
16/710,516
Granted
Oct 4, 2022
Kind
B2
Abstract

Several embodiments of the invention relate generally to a system and methods for the treatment of gaseous emissions comprising methane and one or more non-methane compounds that can influence the metabolism of methane-oxidizing microorganisms. In several embodiments, there is provided a system and methods for the treatment of methane emissions through the use of methanotrophic microorganisms to generate functionally consistent and harvestable products. Certain embodiments of the invention are particularly advantageous because they reduce environmentally-destructive methane emissions and produce harvestable end-products.

Claims (24)

1. A method for producing a polyhydroxyalkanoate (PHA) in a culture of methanotrophic microorganisms, the method comprising:

a) providing a gas comprising methane and one or more non-methane substances;

b) providing a culture of methanotrophic microorganisms;

c) providing a microorganism culture medium comprising copper and at least-one additional essential nutrient;

d) exposing said culture to said gas;

e) allowing the depletion of copper from said culture medium due to metabolization of the copper by the culture of methanotrophic microorganisms, wherein the methanotrophic microorganisms express soluble methane monooxygenase (sMMO) and also express particulate methane monooxygenase (pMMO); and

f) decreasing the concentration of at least one of said additional essential nutrients, causing said methanotrophic microorganisms to produce said PHA.

2. The method of claim 1 , wherein said PHA is selected from the group consisting of polyhydroxybutyrate, polyhydroxybutyrate-covalerate (PHBV), poly-4-hydroxybutyrate (P4HB), polyhydroxyhexanoate (PHHx), and polyhydroxyoctanoate (PHO).

3. The method of claim 1 , wherein said step e) is followed by said step f), and wherein step f) followed by step e) comprises a production cycle.

4. The method of claim 3 , further comprising repeating step e) followed by step f) one or more times, thereby resulting in at least a first production cycle and a second production cycle.

5. The method of claim 4 , wherein the molecular weight of said PHA produced in said first production cycle differs from the molecular weight of said PHA produced in said second production cycle by less than 50%.

6. The method of claim 5 , wherein said molecular weight ranges from about 100 to about 5,000,000 Daltons.

7. The method of claim 5 , wherein said molecular weight distribution ranges from about 100,000 to about 2,500,000 Daltons.

8. The method of claim 4 , wherein the polydispersity of said PHA produced in said first production cycle differs from the polydispersity of said PHA produced in said second production cycle by less than 75%.

9. The method of claim 4 , wherein the polydispersity of said PHA produced in said first production cycle differs from the polydispersity of said PHA produced in said second production cycle by less than 50%.

10. The method of claim 8 , wherein said polydispersity ranges from about 0.1 to about 5.0.

11. The method of claim 1 , wherein said one or more non-methane substances are selected from the group consisting of methanol, acetone, acetate, formate, formaldehyde, hydroxyalkanoates, hydroxybutyrate, octanoic acid, octanol, carbon dioxide, nitrogen, oxygen, di-oxygen, di-nitrogen, water, water vapor, argon, ethane, propane, butyrate, butyric acid, hexanoic acid, hexanol, heptanoic acid, heptanol, pentane, pentanoic acid, and volatile organic compounds.

12. The method of claim 1 , wherein said culture comprises two or more species of methanotrophic microorganisms.

13. The method of claim 1 , wherein said culture medium further comprises one or more of carbon, hydrogen, oxygen, phosphorus, potassium, calcium, sodium, chlorine, methane, carbon dioxide, magnesium, iron, sulfate, manganese, boron, zinc, aluminum, nickel, chromium, cobalt, or molybdenum.

14. The method of claim 4 , wherein the concentration of said pMMO and said sMMO produced in said microorganisms in said first production cycle differs by less than 75% from the total concentration of said pMMO and said sMMO produced in said microorganisms in said second production cycle.

15. The method of claim 1 , wherein said gas comprising methane is produced from a landfill, wherein the polyhydroxyalkanoate produced is PHB, wherein said culture of microorganisms is exposed to said gas comprising methane in a bioreactor, and wherein said culture of methanotrophic microorganisms comprises a non-specified consortium of methanotrophic microorganisms.

16. The method of claim 1 , wherein said pMMO expressed by said methanotrophic microorganisms represents greater than 80% of said MMO and said sMMO expressed by said methanotrophic microorganisms represent less than 20% of said MMO.

17. The method of claim 1 , wherein said pMMO expressed by said methanotrophic microorganisms represents greater than 85% of said MMO and said sMMO expressed by said methanotrophic microorganisms represents less than 15% of said MMO.

18. The method of claim 1 , wherein said pMMO expressed by said methanotrophic microorganisms represents greater than 95% of said total MMO and said sMMO expressed by said methanotrophic microorganisms represents less than 5% of said MMO.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 11, 2019
From: HERREMA, MARKUS DONALD; KIMMEL, KENTON
To: NEWLIGHT TECHNOLOGIES, LLC
Reel/Frame 051253/0583 →
CHANGE OF NAME Recorded Dec 11, 2019
From: NEWLIGHT TECHNOLOGIES, LLC
To: NEWLIGHT TECHNOLOGIES, INC.
Reel/Frame 051258/0860 →
Continuity (5)
Continuation 15849193 · Dec 20, 2017
Continuation 14526228 · Oct 28, 2014
Continuation 14286274 · May 23, 2014
Continuation 13310542 · Dec 2, 2011
Related Publication 20200190544A1 · Jun 18, 2020
Cited By (2)
US 12,312,629 US 12,571,012