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US Patent 11343979 Process and apparatus for producing mycelium biomaterial

Patent 11343979 was granted and assigned to Ecovative Design on May, 2022 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
Ecovative Design
Ecovative Design
Current Assignee
Ecovative Design
Ecovative Design
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
11343979
Date of Patent
May 31, 2022
Patent Application Number
16419868
Date Filed
May 22, 2019
Patent Citations
‌
US Patent 10407675 Method of fermenting mycelium composite material
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US Patent 10525662 Fabricated panel
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US Patent 10537070 Process for the production of mycelial composite surfaces in a roll-to-roll format
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US Patent 10583626 Method for producing grown materials
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US Patent 10589489 Composite material
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US Patent 10785925 Insulated shipping containers modified for high-yield fungi production capable in any environment
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US Patent 10687482 Method of producing fungal materials and objects made therefrom
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US Patent 10125347 Method for stimulating the expression of specific tissue morphologies in filamentous fungi
...
Patent Citations Received
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US Patent 11997956 Method for mycotecture
0
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US Patent 11920126 Bio-manufacturing process
0
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US Patent 11932584 Method of forming a mycological product
0
Patent Primary Examiner
‌
David J Parsley
CPC Code
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A01G 18/50
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A01G 18/00
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A01G 18/20
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A01G 18/10
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A01G 18/22
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A01G 18/40

The process for producing mycelium biomaterial provides fresh oxygen to the growing mycelium biomaterial while removing waste heat and waste carbon dioxide by forced aeration through large volumes of material. In a first phase of fungal expansion, humidified air at a programmed temperature is passed upwardly and through a fungal inoculated substrate of discrete particles to allow the fungal inoculum to expand and dominate the substrate. Nutrient is added to the inoculated mixture and a second phase of fungal expansion is performed wherein humidified air at a programmed temperature is passed upwardly and through the nutrient enriched fungal inoculated substrate to allow the fungal inoculum to bond the discrete particles into a self-supporting biocomposite. The process and apparatus of the invention allows for the processing of grown materials bound by mycelium at depths of greater than 6″ and particularly in the range of from 24″ to 28″.

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