WO2023199217 - AMMONIA CARRIER AND METHODS FOR STORING AND RELEASING OF AMMONIA

National phase entry is expected:
Publication Number WO/2023/199217
Publication Date 19.10.2023
International Application No. PCT/IB2023/053690
International Filing Date 11.04.2023
Title **
[English] AMMONIA CARRIER AND METHODS FOR STORING AND RELEASING OF AMMONIA
[French] SUPPORT D'AMMONIAC ET PROCÉDÉS DE STOCKAGE ET DE LIBÉRATION D'AMMONIAC
Applicants **
KING ABDULLAH UNIVERSITY OF SCIENCE AND TECHNOLOGY
Inventors
BENDJERIOU-SEDJERARI, Anissa
PANDEY, Swechchha
RUEPING, Magnus
Priority Data
63/330,351   13.04.2022   US
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Quotation for National Phase entry

Country StagesTotal
China Filing, Examination, Granting2415
EPO Filing, Examination, Granting11587
Japan Filing, Examination, Granting2315
South Korea Filing, Examination, Granting2366
USA Filing, Examination, Granting4740
MasterCard Visa
Total: 23,423

The term for entry into the National Phase has expired. This quotation is for informational purposes only

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Abstract[English] An amine-loaded carrier (500, 700, 1000, 1200) is loaded with silyl amine groups (510, 520), and the amine loaded carrier (500, 700, 1000, 1200) includes a non-porous silica substrate (100) dehydrated or dehydroxylated at a first temperature and the silyl amine groups (510, 520) attached to the dehydrated, non-porous silica substrate (100) at a second temperature, different from the first temperature, so that covalent bonds are formed between a surface of the non-porous silica substrate (100) and the silyl amine groups (510, 520). The covalent bonds are formed due to a chemisorption process, and the covalent bonds are stronger than van der Waals bonds formed due to a physisorption process.[French] Un support chargé d'amine (500, 700, 1000, 1200) est chargé de groupes silylamine (510, 520), et le support chargé d'amine (500, 700, 1000, 1200) comprend un substrat de silice non poreux (100) déshydraté ou déshydroxylé à une première température et les groupes silylamine (510, 520) fixés au substrat de silice non poreux (100) déshydraté à une seconde température, différente de la première, de telle sorte que des liaisons covalentes sont formées entre une surface du substrat de silice non poreux (100) et les groupes silylamine (510, 520). Les liaisons covalentes sont formées en raison d'un processus de chimisorption, et les liaisons covalentes sont plus fortes que les liaisons de van der Waals formées en raison d'un processus de physisorption.

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