IP Library Patent Application 16238995
Patent Application
App. No. 16/238,995

BIOCHAR AS A MICROBIAL CARRIER

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Patent No.
US None
App. No.
16/238,995
Abstract

The invention relates to a microbial delivery system where biochar acts as a carrier for microbes.

Claims (31)

1 . A microbial delivery system comprising:

biochar having pores; and

microbes retained on the surface or in the pores of the biochar.

2 . The delivery system of claim 1 , where at least some of the microbes are inoculated into the pores of the biochar.

3 . The delivery system of claim 2 , where the microbes are inoculated into the pores of the biochar using mechanical, chemical, or biological assistance to move the microbes either into the pores of the biochar or onto the surfaces of the biochar.

4 . The delivery system of claim 3 where the microbes are inoculated into the pores of the biochar using the application of positive or negative pressure.

5 . The delivery system of claim 3 where the microbes are inoculated into the pores of the biochar using a surfactant.

6 . The delivery system of claim 1 where the microbes are retained by the biochar through mixing the biochar and microbes together.

7 . The delivery system of claim 6 where the microbes are retained on the biochar by suspending the microbes in liquid and depositing the microbes on the biochar.

8 . The delivery system of claim 1 where the microbes retained by the biochar are selected from the group consisting of: Bacillus, Pseudomonas, Rhizobium, Burkholderia, Achromobacter, Agrobacterium, Microccocus, Aereobacter, Flavobacterium, Erwinia, Klebsiella , and Enterobacter , including Bacillus mucilaginosus, Bacillus edaphicus, Bacillus circulans, Paenibacillus spp., Acidothiobacillus ferrooxidans, Pseudomonas cepacia, Burkholderia cepacia, Klebsiella varticola, Pantoea aggioinerans ; fungi such as Glomus mosseae, Glomus intraradices, Aspergillus terreus and Aspergillus niger.

9 . The delivery system of claim 1 where the biochar is treated biochar.

10 . The delivery system of claim 9 where the biochar has been treated to alter one or more of the following properties of the biochar: pH; hydrophobicity; hydrophilicity; ability of the biochar to hold moisture; ability of the biochar to retain and exchange certain types of nutrients; ion exchange capacity; physical protection from environmental hazards or protozoa; presence or absence of nutrients, micronutrients, or sources of metabolic carbon; or ability of the biochar to host other symbiotic microbes or plant systems.

11 . The delivery system of claim 1 , where at least some of the microbes are retained on the biochar through integrated growth with the biochar.

12 . A method for delivering microbes into an environment, the method comprising combining biochar and microbes in the environment, where the biochar has been treated to have suitable properties for the microbes in the environment in which the biochar and microbes are combined.

13 . Biochar having pores where pores are filled with a media containing microbes, where the media is infused into the pores of the biochar.

14 . The biochar of claim 13 where the microbes includes microorganisms selected from the group consisting of: Bacillus, Pseudomonas, Rhizobium, Burkholderia, Achromobacter, Agrobacterium, Microccocus, Aereobacter, Flavobacterium, Erwinia, Klebsiella , and Enterobacter , including Bacillus mucilaginosus, Bacillus edaphicus, Bacillus circulans, Paenibacillus spp., Acidothiobacillus ferrooxidans, Pseudomonas cepacia, Burkholderia cepacia, Klebsiella variicola, Pantoea agglomerans ; fungi such as Glomus mosseae, Glomus intraradices, Aspergillus terreus and Aspergillus niger.

15 . The biochar of claim 13 where the media is infused into the pores of the biochar using positive or negative pressure.

16 . The biochar of claim 13 where the media is infused into the pores of the biochar using a surfactant.

17 . The biochar of claim 16 where the surfactant treatment comprises adding 1% surfactant to the media.

18 . The biochar of claim 13 where the pores of the biochar are treated prior to infusion with the media.

19 . The biochar of claim 13 where the moisture content of the pores of the biochar are adjusted prior to infusion with the media.

20 . Biochar for use in agricultural, remediation, public health, or animal application, the biochar comprising a porous carbonaceous particle that has been treated and/or mixed with media containing microbes, whereby the porous carbonaceous particle after treatment and/or mixing has retained the media in at least some of the pores of the porous carbonaceous particle.

21 . The biochar of claim 20 where the microbes are microorganisms selected from the group consisting of: Bacillus, Pseudomonas, Rhizobium, Burkholderia, Achromobacter, Agrobacterium, Microccocus, Aereobacter, Flavobacterium, Erwinia, Klebsiella , and Enterobacter , including Bacillus mucilaginosus, Bacillus edaphicus, Bacillus circulans, Paenibacillus spp., Acidothiobacillus ferrooxidans, Pseudomonas cepacia, Burkholderia cepacia, Klebsiella variicola, Pantoea agglomerans ; fungi such as Glomus mosseae, Glomus intraradices, Aspergillus terreus and Aspergillus niger.

22 . A method for creating enhanced biochar, the method comprising the steps of infusing media containing microbes into the pores of biochar.

23 . The method of claim 22 where the media is infused into the pores of the biochar using positive or negative pressure.

24 . The method of claim 22 where the media is infused into the pores of the biochar using a surfactant.

25 . The method of claim 22 where the media includes microorganisms selected from the group consisting of: Bacillus, Pseudomonas, Rhizobium, Burkholderia, Achromobacter, Agrobacterium, Microccocus, Aereobacter, Flavobacterium, Erwinia, Klebsiella , and Enterobacter , including Bacillus mucilaginosus, Bacillus edaphicus, Bacillus circulans, Paenibacillus spp., Acidothiobacillus ferrooxidans, Pseudomonas cepacia, Burkholderia cepacia, Klebsiella variicola, Pantoea agglomerans ; fungi such as Glomus mosseae, Glomus intraradices, Aspergillus terreus and Aspergillus niger.

26 . A methods for integrating a microbial community with a biochar particle, the method selected from the group consisting of: while under vacuum, pulling the microbial solution through a treated biochar bed that is resting on a membrane filter; spraying a microbial solution on top of a treated biochar bed; lyophilizing a microbial solution and then blending the freeze dried solution with the treated biochar; again infusing, the treated biochar with a microbial solution; adding treated biochar to a growth medium, inoculating with the microbe, and incubating to allow the microbe to grow in said biochar containing medium; infusing, as defined previously, the biochar with a food source and then introducing the substrate infused biochar to a microbe and incubating to allow the microbes to grow; blending commercially available strains in dry form with treated biochar; adding the treated biochar to a microbial solution and then centrifuging at a high speed, potentially with a density gradient in order to promote the biochar to spin down with the microbes; densely packing a column with treated biochar and then gravity flowing a microbial solution through the column and possibly repeating this multiple times; or adding the microbe to a solution based binder that is well known to enter the treated biochar pores and then adding said solution to the treated biochar.

27 . The method of claim 26 where biochar is sterilized before being infused with the microbial community.

28 . The method of claim 26 where the microbial community includes a microorganism selected from the group consisting of: Bacillus, Pseudomonas, Rhizobium, Burkholderia, Achromobacter, Agrobacterium, Microccocus, Aereobacter, Flavobacterium, Erwinia, Klebsiella , and Enterobacter , including Bacillus mucilaginosus, Bacillus edaphicus, Bacillus circulans, Paenibacillus spp., Acidothiobacillus ferrooxidans, Pseudomonas cepacia, Burkholderia cepacia, Klebsiella variicola, Pantoea agglomerans ; fungi such as Glomus mosseae, Glomus intraradices, Aspergillus terreus and Aspergillus niger.

29 . The biochar of claim 20 where the biochar has been treated to alter one or more of the following properties of the biochar: pH; hydrophobicity; hydrophilicity; ability of the biochar to hold moisture; ability of the biochar to retain and exchange certain types of nutrients; ion exchange capacity; physical protection from environmental hazards or protozoa; presence or absence of nutrients, micronutrients, or sources of metabolic carbon; or ability of the biochar to host other symbiotic microbes or plant systems.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE SECTION 1 OF THE PATENT ASSIGNMENT PREVIOUSLY RECORDED ON REEL 52680 FRAME 328. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Dec 16, 2024
From: COOL PLANET ENERGY SYSTEMS, INC.
To: CARBON TECHNOLOGY HOLDINGS, LLC
Reel/Frame 069713/0092 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2020
From: COOL PLANET ENERGY SYSTEMS, INC.
To: CARBON TECHNOLOGY HOLDINGS, LLC
Reel/Frame 052680/0328 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2020
From: CHEIKY, MICHAEL
To: COOL PLANET BIOFUELS, INC.
Reel/Frame 052530/0387 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 4, 2019
From: BELCHER, RICHARD WILSON; KIM, HAN SUK; BUEGE, BRIAN; JARAND, MARK L.; SILLS, RONALD A
To: COOL PLANET ENERGY SYSTEMS, INC.
Reel/Frame 050910/0732 →