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US Patent 10982161 Process for producing high-carbon biogenic reagents

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Is a
Patent
Patent
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Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
109821610
Patent Inventor Names
Daniel J. Despen0
James A. Mennell0
Date of Patent
April 20, 2021
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Patent Application Number
161996530
Date Filed
November 26, 2018
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Patent Citations
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US Patent 10174267 Process for producing high-carbon biogenic reagents
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Patent Citations Received
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US Patent 11753698 Bio-reduction of metal ores integrated with biomass pyrolysis
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US Patent 11987763 Processes for producing biocarbon pellets with high fixed-carbon content and optimized reactivity, and biocarbon pellets obtained therefrom
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US Patent 11851723 Carbon-negative metallurgical products
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US Patent 11879107 High-carbon biogenic reagents and uses thereof
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US Patent 11891582 High-carbon biogenic reagents and uses thereof
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US Patent 11959038 High-carbon biogenic reagents and uses thereof
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US Patent 11932814 Biocarbon blends with optimized fixed carbon content, and methods for making and using the same
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US Patent 11965139 Systems and apparatus for production of high-carbon biogenic reagents
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...
Patent Primary Examiner
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Cephia D. Toomer
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Patent abstract

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.

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