IP Library Granted Patent US 9,637,760
Granted Patent B2
US 9,637,760 · App. 13/805,368 · Granted May 2, 2017

Process for producing a biocrude employing microalgae

Inventor: Bernard A. J. Stroïazzo Mougin (Alicante, ES)
C12P5/02C10G1/02C10L1/00C12N1/12C12P1/00C12P5/023C12P39/00C10G2300/1014Y02E50/343Y02P30/10Y02P30/20
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Quick Facts
Patent No.
US 9,637,760
App. No.
13/805,368
Granted
May 2, 2017
Kind
B2
Abstract

This invention refers to a procedure for obtaining a biocrude from greenhouse gases, a procedure which is advantageous industrially and continuous. By means of said procedure it is possible to capture, convert and revalue CO 2 , among other greenhouse gases, in an efficient manner, in such a way that a net negative balance is obtained, which in other words means that with this procedure it is possible to capture more CO 2 than is generated which makes it beneficial and sustainable in the environment.

Claims (30)

1. Procedure for obtaining a biocrude from a gas comprising CO 2 , procedure which comprises the steps of:

a. supply of the gas which comprises CO 2 to a reactor containing a culture which comprises at least one species of microalga which is capable of photosynthesis;

b. photosynthesis carried out by the species of microalga using the CO 2 supplied to produce a biomass;

c. anaerobic fermentation of the biomass obtained;

d. thermochemical decomposition of the biomass fermented at a pressure between 0 and 20 MPa and a temperature between 200 and 420° C. in order to obtain a biocrude mixed with water and gases, and

e. separation of the biocrude obtained,

characterised in that following the photosynthesis stage, between 5 and 100% of the culture is removed from the reactor which is subsequently separated into a solid fraction which contains biomass, which solid fraction will subsequently be subjected to the stage of anaerobic fermentation, and a liquid fraction containing carbonates and/or bicarbonates, which are separated from the liquid fraction, and which liquid fraction is returned at least partially to the reactor devoid of carbonates and bicarbonates.

2. Procedure according to claim 1 , in which in the step of at least partial removal from the reactor, between 5 and 50% of culture is removed.

3. Procedure according to claim 2 , in which in the step of at least partial removal from the reactor, approximately 10% of culture is removed.

4. Procedure according to claim 1 , wherein prior to the step of supply of a gas comprising CO 2 to the reactor, said gas is pre-treated by at least one of the following treatments: a) substantial elimination of SO x , NO x , (b) substantial elimination of humidity and (c) adaptation of the gas temperature to between 30 and 40° C.

5. Procedure according to claim 1 , wherein the photosynthesis step is carried out in a turbulent regime and exposed to natural and/or artificial light.

6. Procedure according to claim 1 , wherein following the step of at least partial removal of the culture from the reactor, the removed culture is acidified to a pH between 3.5 and 8.

7. Procedure according to claim 6 , wherein the removed culture is acidified to a pH between 6 and 8.

8. Procedure according to claim 6 , wherein the acidification is carried out by adding to the culture at least one acidifying agent selected from the group consisting of CO 2 , mixture of CO 2 and air, strong or weak acids or any combination thereof.

9. Procedure according to claim 8 , wherein the acidification is carried out by adding to the culture a mixture of CO 2 and air.

10. Procedure according to claim 1 , wherein following the step of at least partial removal of the culture from the reactor, separation of the solid fraction which contains biomass and the liquid fraction which contains carbonates and/or bicarbonates is carried out through at least one technique selected from the group consisting of filtration, centrifugation, flocculation, electro coagulation, ultrasound, evaporation, decantation or any combination thereof.

11. Procedure according to claim 1 , wherein the separation of carbonates and/or bicarbonates from the liquid fraction resulting from the at least partial removal of the culture from the reactor is carried out through precipitation of the corresponding carbonated salts deriving from the addition of at least one alkali.

12. Procedure according to claim 1 , wherein the anaerobic fermentation step comprises anaerobic fermentation of a biomass in which the concentration of solids is from 1 to 50% and which is carried out at a temperature between 10 and 165° C.

13. Procedure according to claim 12 , wherein the biomass has a 5 to 12% concentration of solids and the anaerobic fermentation is carried out at a temperature between 30 and 75° C.

14. Procedure according to claim 13 , wherein the anaerobic fermentation is carried out at a temperature of approximately 38° C.

15. Procedure according to claim 1 , wherein previously or subsequent to the anaerobic fermentation step, a sub step of homogenisation or cavitation of the biomass is carried out during which it is subjected to pressure between 1 bar and 2,500 bar.

16. Procedure according to claim 15 , in which the biomass is subjected to pressure between 250 and 1,200 bar.

17. Procedure according to claim 15 , which is repeated between 1 and 5 times.

18. Procedure according to claim 1 , wherein the thermo-chemical decomposition step of the fermented biomass is carried out by heating the mass to a temperature between 240 to 340° C. and a pressure of 10 to 20 MPa.

19. Procedure according to claim 1 , wherein following the step of anaerobic fermentation and prior to the step of thermo-chemical decomposition, an aqueous fraction containing ammonium salts is separated from the biomass resulting from the anaerobic fermentation, which aqueous fraction is then returned to the reactor again.

20. Procedure according to claim 1 , wherein the species of micro alga which carries out the photosynthesis is selected from the group consisting of Chlorophyceae, Bacillariophyceae, Dinophyceae, Cryptophyceae, Chrysophyceae, Haptophyceae, Prasinophyceae, Raphidophyceae, Eustigmatophyceae, or any combination thereof.

21. Procedure according to claim 1 , wherein the gas which comprises CO 2 and which is supplied to the reactor proceeds in an exogenous way from the atmosphere or from any industry and/or in an endogenous way from the gases generated in the actual procedure, in any combination thereof.

22. Procedure according to claim 21 , in which the exogenous component of the gas containing CO 2 proceeds from a cement works or similar industry.

23. Procedure according to claim 1 , wherein the gas comprising CO 2 further comprises other greenhouse gases selected from the group consisting of NO x CH 4 and mixtures thereof.

24. Procedure according to claim 1 , which includes a final step of refining of the biocrude obtained.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2020
From: STROIAZZO MOUGIN, BERNARD A.J
To: BRACKENIERS, THIERRY
Reel/Frame 054626/0419 →
SECURITY INTEREST Recorded Nov 19, 2020
From: STROIAZZO MOUGIN, BERNARD
To: BRACKENIERS, THIERRY
Reel/Frame 054477/0480 →
Continuity (1)
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