IP Library Patent Application 18732435
Patent Application
App. No. 18/732,435

CONTROL OF PYROLYSIS CONDITIONS FOR THE PRODUCTION OF DESIRABLE COMPOUNDS

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Patent No.
US None
App. No.
18/732,435
Abstract

The present invention relates to (1) a method for producing biochar having bio stimulating effects, (2) biochar that has been produced to having increased bio stimulating effects, (3) a method for capturing material extracted from biochar and (4) biochar extracts, comprising desired compounds extracted from biochar and suspended in an extract solution. The methods above all involve obtaining a particular biomass source and pyrolyzing the biomass source under specific conditions to increase the bio stimulating effects of the biochar. The method for capturing the material extracted from the biochar produced to have such stimulating effects includes contacting the biochar with a treating liquid, separating the biochar from the biochar extract, collecting the biochar extract from which the biochar has been separated and resuspending the biochar extract in an modified aqueous solution for further use and/or processing separate from, or prior to, disposal. The biochar extract suspended in solution then includes desired compounds (a) at least 0.1 ppm of one or more of the following phenylpropanoid, phenylalanine, flavonoids, sterols, terpenes, terpenoids, tannins, coumarins, benzaldehydes and phenols; (b) at least 0.1 g/L of humics, fulvics or a combination of both humics and fulvics and/or (c) one or more of the following salicylic acid, jasmonic acid, abscisic acid, cytokinin, gibberellic acid and ethylene, by way of example.

Claims (55)

1 . A method for producing biochar having bio stimulating effects, the method comprising steps of:

obtaining a biomass source from the group consisting of woods, straw, corn stover, bagasse, and nut shells;

pyrolyzing the biomass source at two or more distinct heating temperatures where the first heating temperature results in a biomass surface temperature of at least 375° C. for a hold time that does not heat the center of biomass source above 250° C., and where at least one subsequent heating temperature results in the core of the biomass reaching no more than 350° C.

collecting biochar produced by pyrolyzing the biomass source.

2 . The method of claim 1 where pyrolyzing the biomass at the first heating temperature includes the step of placing the biomass source in a reactor at a temperature ranging from 400 to 600° C. and where in the at least one subsequent heating temperature the reactor temperature is cooler than the first heating temperature.

3 . The method of claim 2 , where the at least one subsequent heating temperature ranges from 200-500° C.

4 . The method of claim 1 further including the step of adding raw biomass to the biomass being pyrolyzed before heating the biomass source the at least one subsequent heating temperature.

5 . The method of claim 4 where the raw biomass is wood.

6 . The method of claim 1 where the obtained biomass source is coconut shells or wood.

7 . (canceled)

8 . The method of claim 1 where the collected biochar is oxidized after the biomass is pyrolyzed.

9 . The method of claim 8 where the biochar is oxidized through drying the biochar at temperatures of at least 100° C.

10 . The method of claim 1 where during the step of pyrolyzing the biomass source an inert sweep gas is introduced to reduce vapor residence time and dilute oxygen is added to assist with maintaining pyrolysis temperature.

11 . Biochar that has been produced in accordance with the method of claim 43 to have increased bio stimulating effects, the biochar comprising:

biochar that has been pyrolyzed from a selected biomass source from the group consisting of woods, straw, corn stover, bagasse, and nut shells and pyrolyzed to at conditions to engineer the biochar production to cause the biochar to have a total acid number of 1.0 to 100 mg KOH/g biochar.

12 . The biochar of claim 11 where the biochar has a total acid number of 10 to 50 mg KOH/g biochar.

13 . The biochar of claim 11 where more than 40% of the Total Acid Number of the provided biochar is attributed to carboxylic groups.

14 . The biochar of claim 11 where at least 50% of the Total Acid Number of the provided biochar is attributed to carboxylic groups.

15 . The biochar of claim 11 where at least 60% of the Total Acid Number of the provided biochar is attributed to carboxylic groups.

16 . (canceled)

17 . (canceled)

18 . (canceled)

19 . Biochar that has been produced in accordance with the method of claim 43 to have increased bio stimulating effects, the biochar comprising:

biochar that has been pyrolyzed from a selected biomass source from the group consisting of woods, straw, corn stover, bagasse, and nut shells and pyrolyzed to at conditions to engineer the biochar production to cause the biochar, based upon the deconvolution of a TGA spectrum to contain volatile matter content ranging from 20-40% of the biochar.

20 . The biochar of claim 19 where the volatile matter content ranges from 25-35% of the biochar.

21 . The biochar of claim 19 where the percentage of the volatile matter content in the biochar is composed of the following:

10-35% of volatile mater as cellulose/hemicellulose

10-35% of volatile matter as Lignin

10-35% of highly volatile biochar

<15% volatile biochar

Less than 5% low molecular weight volatile compounds.

22 . The biochar of claim 21 where the percentage of the volatile matter content in the biochar is composed of the following:

15-30% cellulose/hemicellulose

15-30% Lignin

15-30% highly volatile biochar

<10% Volatile biochar

And less than 3% as low molecular weight volatile compounds.

23 . Biochar that has been produced in accordance with the method of claim 43 to have increased bio stimulating effects, the biochar comprising:

biochar that has been pyrolyzed from a selected biomass source from the group consisting of woods, straw, corn stover, bagasse, and nut shells and pyrolyzed to at conditions to engineer the biochar production to cause the biochar to having levels of heavy metals, heavy metals, polycyclic aromatic hydrocarbons (PAHs), and polychlorinated biphenyls (PCBs) at or below regulatory limits.

24 . Biochar that has been produced in accordance with the method of claim 43 to have increased bio stimulating effects, the biochar comprising:

biochar that has been pyrolyzed from a selected biomass source from the group consisting of woods, straw, corn stover, bagasse, and nut shells and pyrolyzed to at conditions to engineer the biochar production to cause the biochar to have one or more of the following compounds: salicylic acid, jasmonic acid, abscisic acid, cytokinins, auxins, gibberellic acids and ethylene.

25 . The biochar of claim 24 , where the biochar is used for one of more of the following: seed treatment, particle coating, agricultural applications and horticultural applications.

26 - 42 . (canceled)

43 . A method for producing biochar having bio stimulating effects, the method comprising steps of:

obtaining a biomass source from the group consisting of woods, straw, corn stover, bagasse, and nut shells;

pyrolyzing the biomass source at at least a first and second distinct heating temperature where raw biomass is added to the biomass source pyrolized at a first heating temperature before heating the biomass source at the second distinct heating temperature; and

collecting biochar produced by pyrolyzing the biomass source.

44 . The method of claim 43 , where the raw biomass is wood.

45 . The method of claim 43 where the obtained biomass source is coconut shells or wood.

46 . (canceled)

47 . Biochar that has been produced in accordance with the method of claim 43 to having increased bio stimulating effects, the biochar comprising:

biochar that has been pyrolyzed from a selected biomass source from the group consisting of woods, straw, corn stover, bagasse, and nut shells and pyrolyzed to at conditions to engineer the biochar production to cause the biochar to have one or more of the following compounds: butenolides, anhydrosugars, carboxylic acids, fatty acids, alkanes, phenols, ketones, aldehydes, phenylpropanoids, phenylalanine, coumarins, flavonoids, sterols, terpenes, terpenoids, and tannins⋅salicylic acid, jasmonic acid, abscisic acid, cytokinins, auxins, gibberellic acids and ethylene.

48 . The biochar of claim 47 , where the biochar is used for one of more of the following: seed treatment, particle coating, agricultural applications and horticultural applications.

49 . (canceled)

50 . (canceled)

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 5, 2024
From: SMITH, MATTHEW WILLIAM; WAN, HAIJUN; DOLINAR, KEVIN DANIEL; MACKAY, JULIETTE
To: TALIPOT COOL EXTRACT (IP), LLC
Reel/Frame 069502/0369 →