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REACTION DEVICE, REACTION SYSTEM, MATERIAL PRODUCTION SYSTEM, BATTERY MATERIAL PRODUCTION SYSTEM, BATTERY PRODUCTION SYSTEM, REACTION PRODUCT PRODUCTION METHOD, BATTERY MATERIAL PRODUCTION METHOD, AND BATTERY PRODUCTION METHOD
A reaction furnace (100) in this reaction device (10) is cylindrical and has a supply port for receiving a supplied starting material on one end side and a delivery port for a reaction product on the other end side. A temperature control area (110) includes a heating device or a cooling device and controls the temperature of the reaction furnace at a predetermined position in an intermediate section between the supply port and the delivery port. A screw (120) extends from one end side to the other end side of the reaction furnace and thereby rotates so as to make it possible to convey the starting material supplied from the supply port toward the delivery port. A first fluid control area (130) includes a first fluid inlet and a first fluid outlet for causing a first fluid to pass through the reaction furnace in a predetermined area in the intermediate section. A second fluid control area (140) includes a second fluid inlet and a second fluid outlet for causing a second fluid to pass through an area different from the first fluid control area in the intermediate section.
REACTION DEVICE, REACTION SYSTEM, MATERIAL PRODUCTION SYSTEM, BATTERY MATERIAL PRODUCTION SYSTEM, BATTERY PRODUCTION SYSTEM, REACTION PRODUCT PRODUCTION METHOD, BATTERY MATERIAL PRODUCTION METHOD, AND BATTERY PRODUCTION METHOD
A reaction furnace (100) in this reaction device (10) is cylindrical and has a supply port for receiving a supplied starting material on one end side and a delivery port for a reaction product on the other end side. A temperature control area (110) includes a heating device or a cooling device and controls the temperature of the reaction furnace at a predetermined position in an intermediate section between the supply port and the delivery port. A screw (120) extends from one end side to the other end side of the reaction furnace and thereby rotates so as to make it possible to convey the starting material supplied from the supply port toward the delivery port. A first fluid control area (130) includes a first fluid inlet and a first fluid outlet for causing a first fluid to pass through the reaction furnace in a predetermined area in the intermediate section. A second fluid control area (140) includes a second fluid inlet and a second fluid outlet for causing a second fluid to pass through an area different from the first fluid control area in the intermediate section.
REACTION DEVICE, REACTION SYSTEM, MATERIAL PRODUCTION SYSTEM, BATTERY MATERIAL PRODUCTION SYSTEM, BATTERY PRODUCTION SYSTEM, REACTION PRODUCT PRODUCTION METHOD, BATTERY MATERIAL PRODUCTION METHOD, AND BATTERY PRODUCTION METHOD
REAKTIONSVORRICHTUNG, REAKTIONSSYSTEM, MATERIALHERSTELLUNGSSYSTEM, BATTERIEHERSTELLUNGSSYSTEM, REAKTIONSPRODUKTHERSTELLUNGSVERFAHREN, BATTERIEMATERIALHERSTELLUNGSVERFAHREN UND BATTERIEHERSTELLUNGSVERFAHREN
DISPOSITIF DE RÉACTION, SYSTÈME DE RÉACTION, SYSTÈME DE PRODUCTION DE MATÉRIAU, SYSTÈME DE PRODUCTION DE MATÉRIAU DE BATTERIE, SYSTÈME DE PRODUCTION DE BATTERIE, PROCÉDÉ DE PRODUCTION DE PRODUIT DE RÉACTION, PROCÉDÉ DE PRODUCTION DE MATÉRIAU DE BATTERIE, ET PROCÉDÉ DE PRODUCTION DE BATTERIE
UEDA NAOKI (author) / NAKAMURA SATORU (author) / FURUKI KENICHI (author)
2024-06-12
Patent
Electronic Resource
English
IPC:
B01J
Chemische oder physikalische Verfahren, z.B. Katalyse oder Kolloidchemie
,
CHEMICAL OR PHYSICAL PROCESSES, e.g. CATALYSIS OR COLLOID CHEMISTRY
/
B01F
MIXING, e.g. DISSOLVING, EMULSIFYING, DISPERSING
,
Mischen, z.B. Lösen, Emulgieren, Dispergieren
/
C04B
Kalk
,
LIME
/
H01M
Verfahren oder Mittel, z.B. Batterien, für die direkte Umwandlung von chemischer in elektrische Energie
,
PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
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