IP Library Granted Patent US 11,685,893
Granted Patent B2
US 11,685,893 · App. 17/201,910 · Granted Jun 27, 2023

System and method for biomass growth and processing

Inventors: Kevin C. Harmon (Duluth, GA); Shannon M. Johnson (Cumming, GA); Eugene T. Holmes (Cumming, GA)
Assignee: Brisa International, LLC
C12M43/04B01D53/1456B01D53/1493C02F3/34C12M21/04C12M23/36C12M23/44C12M43/02F23J15/02B01D53/04B01D53/1481B01D53/62B01D53/84B01D2252/103B01D2257/302B01D2257/404B01D2257/708B01D2258/0283Y02A50/20Y02E10/46Y02E20/32Y02E50/10Y02E50/30Y02P20/59Y02W10/37
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Quick Facts
Patent No.
US 11,685,893
App. No.
17/201,910
Granted
Jun 27, 2023
Kind
B2
Abstract

A system comprising a collocated thermal plant, water source, CO 2 source and biomass growth module is disclosed. A method of improving the environment by utilizing the system is disclosed.

Claims (111)

1. A method of using and reclaiming heat and/or cooling from a thermal plant module, the thermal plant module either a) being: a fossil fuel-fired plant, a nuclear plant, a solar thermal plant, a steel plant, a cement plant, a paper mill, a textile mill, a metal manufacturing plant, an incinerator, and/or a rotary kiln incinerator, and/or b) comprising: a cellulosic ethanol/isobutanol/butanol module, a hydrothermal processing module, a gasification module, a waste-to-energy module, a plasma gasification unit, and/or a desorber/condenser module, the method comprising:

generating heat and/or cooling at the thermal plant module;

transmitting the heat and/or the cooling to a biomass growth module (BGM); and

using all or a portion of the heat and/or cooling in the thermal plant module and/or in the BGM,

wherein the BGM does not include, nor is operatively connected to, an anaerobic bioreactor.

2. The method according to claim 1 wherein the method further comprises growing biomass in the BGM.

3. The method according to claim 1 wherein heat and/or cooling is further provided to and/or reclaimed from:

a. a refinery module;

b. a BPP module;

c. an air conditioning/heating module;

d. a recycling module;

e. a BBPP module;

f. a products storage module;

g. a desalination module;

h. a waste to energy module;

i. a biogas storage module;

j. a heat/cooling storage module;

k. a heat/cooling recovery module;

l. heating/cooling external to or apart from the method;

m. heating/cooling for discharge;

n. biomass products;

o. a gasification module;

p. processing of biofuel; and/or

q. systems optionally comprised by the thermal plant module selected from:

i. a pyrolysis processes module;

ii. a hydrothermal processing module;

iii. a cellulosic ethanol/butanol/isobutanol module; and/or

iv. a desorber/condenser module.

4. The method of claim 3 wherein heat and/or cooling reclaimed from any one or more of components a.-q. is provided to any one or more of components a.-q.

5. The method of claim 1 wherein the thermal plant module and the BGM are collocated.

6. The method of claim 3 wherein any two or more of components a.-q. are collocated.

7. The method of claim 1 wherein the step of transmitting includes transmitting heat from the thermal plant module as a heated fluid.

8. The method of claim 7 wherein the heated fluid is fed directly or in part as a water source and/or gas source to the BGM, a BGU, and/or any subunit of a BGU.

9. The method of claim 7 wherein the heated fluid is configured to provide heat transfer to the BGM, a BGU, and/or any subunit of a BGU without direct interaction with the BGM.

10. The method of claim 1 wherein heat is reclaimed from exhaust gases generated by the thermal plant module and/or from cooling fluid output from the thermal plant module.

11. The method of claim 10 wherein heat is reclaimed from cooling fluid output from the thermal plant module and the cooling fluid is cooling a power cycle comprising one or more of:

a. a Rankine cycle;

b. a Simple cycle;

c. a Combined cycle; and/or

d. an Open Rankine cycle.

12. The method of claim 1 wherein the method is performed in a system comprising the thermal plant module and the biomass growth module (BGM) that grows biomass.

13. A system configured to use and reclaim heat and/or cooling from a thermal plant module, the thermal plant module either a) being: a fossil fuel-fired plant, a nuclear plant, a solar thermal plant, a steel plant, a cement plant, a paper mill, a textile mill, a metal manufacturing plant, an incinerator, and/or a rotary kiln incinerator, and/or b) comprising: a cellulosic ethanol/isobutanol/butanol module, a hydrothermal processing module, a gasification module, a waste-to-energy module, a plasma gasification unit, and/or a desorber/condenser module, using the method of claim 1 , wherein the reclaimed heat and/or cooling is provided in whole or in part to a biomass growth module (BGM) that grows biomass,

wherein the BGM does not include, nor is operatively connected to, an anaerobic bioreactor.

14. The system according to claim 13 wherein the system is further configured to provide heat and/or cooling to and/or to reclaim heat and/or cooling from:

a. a refinery module;

b. a BPP module;

c. an air conditioning/heating module;

d. a recycling module;

e. a BBPP module;

f. a products storage module;

g. a desalination module;

h. a waste to energy module;

i. a biogas storage module;

j. a heat/cooling storage module;

k. a heat/cooling recovery module;

l. offsite heating/cooling;

m. heating/cooling for discharge;

n. biomass products;

o. a gasification module;

p. processing of biofuel; and/or

q. systems optionally comprised by the thermal plant module selected from:

i. a pyrolysis processes module;

ii. a hydrothermal processing module;

iii. a cellulosic ethanol/butanol/isobutanol module; and/or

iv. a desorber/condenser module.

15. The system of claim 14 wherein heat and/or cooling reclaimed from any one or more of components a.-q. as described is provided to any one or more of components a.-q.

16. The system of claim 14 wherein any two or more of components a.-q. are collocated.

17. The system of claim 14 , wherein outputs of heat and/or cooling from any one of components a.-q. share heating and/or cooling transmission modules and/or technologies, and/or heat and/or cooling storage module(s) and/or unit(s).

18. The system of claim 14 wherein the thermal plant module is configured to discharge waste heat as a heated fluid to heat the BGM.

19. The system of claim 18 wherein the heated fluid is fed directly or in part as a water source and/or gas source to the BGM, a BGU, and/or any subunit of a BGU and/or any of the other components a.-q.

20. The system of claim 18 wherein the heated fluid is configured to provide heat transfer to the BGM, a BGU, and/or any subunit of a BGU without direct interaction with the BGM and/or any of the other components a.-q.

21. The system of claim 14 in which cooling is provided to the BGM, wherein the cooling is provided by a cogenerated cooling module which uses heat from the thermal plant module to provide cooling to the BGM and/or the other components a.-q.

22. The system of claim 13 wherein the thermal plant module and the BGM are collocated.

23. The system of claim 13 wherein the thermal plant module is configured to supply waste heat to heat the BGM.

24. The system of claim 23 wherein the thermal plant module is configured to discharge waste heat as a heated fluid.

25. The system of claim 24 wherein the heated fluid is fed directly or in part as a water source and/or gas source to the BGM, a BGU, and/or any subunit of a BGU.

26. The system of claim 24 wherein the heated fluid is configured to provide heat transfer to the BGM, a BGU, and/or any subunit of a BGU without direct interaction with the BGM.

27. The system of claim 13 in which cooling is provided to the BGM, wherein the cooling is provided by a cogenerated cooling module which uses heat from the thermal plant module to provide cooling to the BGM.

28. The system of claim 13 wherein heat is reclaimed from either exhaust gases generated by the thermal plant module and/or from cooling fluid output from the thermal plant module.

29. The system of claim 28 wherein heat is reclaimed from cooling fluid output from the thermal plant module and the cooling fluid is cooling a power cycle comprising one or more of:

a. a Rankine cycle;

b. a Simple cycle;

c. a Combined cycle; and/or

d. an Open Rankine cycle.

30. A method of using and reclaiming heat and/or cooling from a thermal plant module, the method comprising: generating heat and/or cooling at the thermal plant module; transmitting heat and/or cooling to a biomass growth module (BGM);

and

using all or a portion of the heat and/or cooling in the thermal plant module and/or in the BGM,

wherein heat and/or cooling is further provided to and/or reclaimed from:

a. a refinery module;

b. a BPP module;

c. an air conditioning/heating module;

d. a recycling module;

e. a BBPP module;

f. a products storage module;

g. a desalination module;

h. a waste to energy module;

i. a biogas storage module;

j. a heat/cooling storage module;

k. a heat/cooling recovery module;

l. heating/cooling external to or apart from the method;

m. heating/cooling for discharge;

n. biomass products;

o. a gasification module;

p. processing of biofuel; and/or

q. systems optionally comprised by the thermal plant module selected from:

i. a pyrolysis processes module;

ii. a hydrothermal processing module;

iii. a cellulosic ethanol/butanol/isobutanol module; and/or

a desorber/condenser module,

wherein any two or more of components a.-q. are collocated and wherein outputs of heat and/or cooling from any one of components a.-q. share heating and/or cooling transmission modules and/or technologies, and/or heat and/or cooling storage module(s) and/or unit(s).

31. A method of using and reclaiming heat and/or cooling from a thermal plant module, the method comprising: generating cooling at the thermal plant module by cogenerating cooling using heat from the thermal plant module; transmitting the cogenerated cooling to a biomass growth module (BGM); and using all or a portion of the cogenerated cooling in the BGM.

Continuity (6)
Continuation 15396634 · Dec 31, 2016
Continuation PCTUS2016037002 · Jun 10, 2016
Provisional Application 62255331 · Nov 13, 2015
Provisional Application 62242984 · Oct 16, 2015
Provisional Application 62173905 · Jun 10, 2015
Related Publication 20210198615A1 · Jul 1, 2021