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US Patent 8048528 Cellular coal products

Patent 8048528 was granted and assigned to TOUCHSTONE RESEARCH LABORATORY LTD (INC) on November, 2011 by the United States Patent and Trademark Office.

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Is a
Patent
Patent

Patent attributes

Current Assignee
TOUCHSTONE RESEARCH LABORATORY LTD (INC)
TOUCHSTONE RESEARCH LABORATORY LTD (INC)
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
8048528
Date of Patent
November 1, 2011
Patent Application Number
11142960
Date Filed
June 2, 2005
Patent Citations Received
‌
US Patent 12103892 Biocarbon compositions with optimized compositional parameters, and processes for producing the same
0
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US Patent 11965139 Systems and apparatus for production of high-carbon biogenic reagents
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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 12084623 High-carbon biogenic reagents and uses thereof
0
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US Patent 11674101 Process for producing high-carbon biogenic reagents
0
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US Patent 11753698 Bio-reduction of metal ores integrated with biomass pyrolysis
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US Patent 11851723 Carbon-negative metallurgical products
0
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US Patent 11879107 High-carbon biogenic reagents and uses thereof
0
...
Patent Primary Examiner
‌
David Sample
Patent abstract

According to the present invention there is provided coal-based cellular or porous products, also referred to herein as “carbon foams”, having a density of preferably between about 0.1 g/cm3 and about 0.8 g/cm3 and most preferably between about 0.3 and about 0.4 g/cm3 that are produced by the controlled heating of coal particulate preferably up to ¼ inch in diameter in a “mold” and under a non-oxidizing atmosphere. The coal-based cellular or porous products of the present invention have ash contents typically greater than about 1%. More typically these coal-based cellular or porous products have ash contents greater than about 3%, with ash contents in the range of about 7% to 15% being most typical. The ash residue remaining after essentially complete combustion/oxidation of these coal-based cellular or porous products is predominately composed of oxides of aluminum and silicon. Additionally, the cellular coal-based products of the present invention have relatively low overall B.E.T. surface areas. Such surface areas are typically less than about 5 m2/g and are commonly in the range of about 1 m2/g to about 2 m2/g.

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