High-carbon biogenic reagents and uses thereof

US11891582B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11891582-B2
Application numberUS-202117390567-A
CountryUS
Kind codeB2
Filing dateJul 30, 2021
Priority dateApr 15, 2011
Publication dateFeb 6, 2024
Grant dateFeb 6, 2024

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

This invention provides processes and systems for converting biomass into high-carbon biogenic reagents that are suitable for a variety of commercial applications. Some embodiments employ pyrolysis in the presence of an inert gas to generate hot pyrolyzed solids, condensable vapors, and non-condensable gases, followed by separation of vapors and gases, and cooling of the hot pyrolyzed solids in the presence of the inert gas. Additives may be introduced during processing or combined with the reagent, or both. The biogenic reagent may include at least 70 wt %, 80 wt %, 90 wt %, 95 wt %, or more total carbon on a dry basis. The biogenic reagent may have an energy content of at least 12,000 Btu/lb, 13,000 Btu/lb, 14,000 Btu/lb, or 14,500 Btu/lb on a dry basis. The biogenic reagent may be formed into fine powders, or structural objects. The structural objects may have a structure and/or strength that derive from the feedstock, heat rate, and additives.

First claim

Opening claim text (preview).

We claim: 1. A biogenic furnace addition composition comprising, on a dry basis: at least about 80 wt % total carbon; at most about 5 wt % hydrogen; at most about 1 wt % nitrogen; at most about 0.035 wt % phosphorous; at most about 0.2 wt % sulfur; at most about 5 wt % of manganese; at most about 5 wt % of fluorospar; a heat value of at least about 11,000 BTU/lb; and an additive selected from a metal, a metal oxide, a metal hydroxide, a metal halide, or a combination thereof; wherein the biogenic furnace addition composition comprises a minimum dimension of about ¾ inches and a maximum dimension of about 2 inches; and wherein the biogenic furnace addition composition is substantially free of fossil fuel. 2. A biogenic furnace addition composition comprising, on a dry basis: at least about 55 wt % total carbon; at most about 5 wt % hydrogen; at most about 1 wt % nitrogen; at most about 0.5 wt % phosphorus; at most about 0.2 wt % sulfur; comprising at least about 5 wt % to at most about 10 wt % of dolomite; and an additive selected from a metal, a metal oxide, a metal hydroxide, a metal halide, or a combination thereof. 3. A biogenic furnace addition composition comprising, on a dry basis: at least about 55 wt % total carbon; at most about 5 wt % hydrogen; at most about 1 wt % nitrogen; at most about 0.5 wt % phosphorus; at most about 0.2 wt % sulfur; at least about 5 wt % to at most about 10 wt % of dolomitic lime; and an additive selected from a metal, a metal oxide, a metal hydroxide, a metal halide, or a combination thereof. 4. A biogenic furnace addition composition comprising, on a dry basis: at least about 55 wt % total carbon; at most about 5 wt % hydrogen; at most about 1 wt % nitrogen; at most about 0.5 wt % phosphorus; at most about 0.2 wt % sulfur; at least about 5 wt % to at most about 10 wt % of calcium oxide; and an additive selected from a metal, a metal oxide, a metal hydroxide, a metal halide, or a combination thereof. 5. A biogenic furnace addition composition comprising, on a dry basis: at least about 55 wt % total carbon; at most about 5 wt % hydrogen; at most about 1 wt % nitrogen; at most about 0.5 wt % phosphorus; at most about 0.2 wt % sulfur; at least about 0.5 wt % to at most about 50 wt % volatile matter and at least about 0.4 wt % to at most about 15 wt % moisture; and an additive selected from a metal, a metal oxide, a metal hydroxide, a metal halide, or a combination thereof. 6. A biogenic furnace addition composition comprising, on a dry basis: at least about 55 wt % total carbon; at most about 5 wt % hydrogen; at most about 1 wt % nitrogen; at most about 0.5 wt % phosphorus; at most about 0.2 wt % sulfur; at least about 5 wt. % to at most about 10 wt. % of dolomitic lime; at least about 5 wt. % to at most about 10 wt. % of calcium oxide; and an additive selected from a metal, a metal oxide, a metal hydroxide, a metal halide, or a combination thereof. 7. A biogenic furnace addition composition comprising, on a dry basis: at least about 55 wt % total carbon; at most about 5 wt % hydrogen; at most about 1 wt % nitrogen; at most about 0.5 wt % phosphorus; at most about 0.2 wt % sulfur; at least about 5 wt. % to at most about 10 wt. % of dolomite; at least about 5 wt. % to at most about 10 wt. % of dolomitic lime; at least about 5 wt. % to at most about 10 wt. % calcium oxide; and an additive selected from a metal, a metal oxide, a metal hydroxide, a metal halide, or a combination thereof. 8. A biogenic furnace addition composition comprising, on a dry basis: at least about 80 wt % total carbon; at most about 5 wt % hydrogen; at most about 1 wt % nitrogen; at most about 0.035 wt % phosphorous; at most about 0.2 wt % sulfur; at most about 5 wt % of manganese; at most about 5 wt % of fluorospar; a heat value of at least about 11,000 BTU/lb; and an additive selected from an acid or a salt thereof, or a base or a salt thereof; wherein the biogenic furnace addition composition comprises a minimum dimension of about ¾ inches and a maximum dimension of about 2 inches; and wherein the biogenic furnace addition composition is substantially free of fossil fuel. 9. A biogenic furnace addition composition comprising, on a dry basis: at least about 55 wt % total carbon; at most about 5 wt % hydrogen; at most about 1 wt % nitrogen; at most about 0.5 wt % phosphorus; at most about 0.2 wt % sulfur at least about 5 wt % to at most about 10 wt % of dolomite; and an additive selected from an acid or a salt thereof, or a base or a salt thereof. 10. A biogenic furnace addition composition comprising, on a dry basis: at least about 55 wt % total carbon; at most about 5 wt % hydrogen; at most about 1 wt % nitrogen; at most about 0.5 wt % phosphorus; at most about 0.2 wt % sulfur; at least about 5 wt % to at most about 10 wt % of dolomitic lime; and an additive selected from an acid or a salt thereof, or a base or a salt thereof. 11. A biogenic furnace addition composition comprising, on a dry basis: at least about 55 wt % total carbon; at most about 5 wt % hydrogen; at most about 1 wt % nitrogen; at most about 0.5 wt % phosphorus; at most about 0.2 wt % sulfur; at least about 5 wt % to at most about 10 wt % of calcium oxide; and an additive selected from an acid or a salt thereof, or a base or a salt thereof. 12. A biogenic furnace addition composition comprising, on a dry basis: at least about 55 wt % total carbon; at most about 5 wt % hydrogen; at most about 1 wt % nitrogen; at most about 0.5 wt % phosphorus; at most about 0.2 wt % sulfur; at least about 0.5 wt % to at most about 50 wt % volatile matter; at least about 0.4 wt % to at most about 15 wt % moisture; and an additive selected from an acid or a salt thereof, or a base or a salt thereof. 13. A biogenic furnace addition composition comprising, on a dry basis: at least about 55 wt % total carbon; at most about 5 wt % hydrogen; at most about 1 wt % nitrogen; at most about 0.5 wt % phosphorus; at most about 0.2 wt % sulfur; at least about 5 wt. % to at most about 10 wt. % of dolomitic lime; at least about 5 wt. % to at most about 10 wt. % of calcium oxide; and an additive selected from an acid or a salt thereof, or a base or a salt thereof. 14. A biogenic furnace addition composition comprising, on a dry basis: at least about 55 wt % total carbon; at most about 5 wt % hydrogen; at most about 1 wt % nitrogen; at most about 0.5 wt % phosphorus; at most about 0.2 wt % sulfur; at least about 5 wt. % to at most about 10 wt. % of dolomite; at least about 5 wt. % to at most about 10 wt. % of dolomitic lime; at least about 5 wt. % to at most about 10 wt. % calcium oxide; and an additive selected from an acid or a salt thereof, or a base or a salt thereof.

Assignees

Inventors

Classifications

  • containing additives · CPC title

  • C10L5/447Primary

    Carbonized vegetable substances, e.g. charcoal, or produced by hydrothermal carbonization of biomass · CPC title

  • Carbon · CPC title

  • Preparation · CPC title

  • characterised by the starting materials · CPC title

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What does patent US11891582B2 cover?
This invention provides processes and systems for converting biomass into high-carbon biogenic reagents that are suitable for a variety of commercial applications. Some embodiments employ pyrolysis in the presence of an inert gas to generate hot pyrolyzed solids, condensable vapors, and non-condensable gases, followed by separation of vapors and gases, and cooling of the hot pyrolyzed solids in…
Who is the assignee on this patent?
Carbon Tech Holdings Llc
What technology area does this patent fall under?
Primary CPC classification C10L5/447. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Feb 06 2024 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).