HYDROGEN FILLING STATION WITH AUTONOMOUS HYDROGEN PRODUCTION MODULE Russian patent published in 2023 - IPC F17C5/00 

Abstract RU 2803371 C1

FIELD: energy.

SUBSTANCE: energy complexes that produce hydrogen by the hydrolysis method. A hydrogen filling station with an autonomous hydrogen production module includes a storage unit (I) for storing components in the form of aluminum powder and water, connected to an autonomous hydrogen production module (II) and a boehmite aqueous suspension collector (IV); autonomous module (II) for hydrogen production, containing a unit for mixing aluminum powder and purified water, a hydrothermal oxidation reactor (5), a steam-hydrogen mixture output line (18) and an aqueous boehmite suspension output line (19), a steam-hydrogen mixture separation unit, a receiver (13) hydrogen, turbine power plant; a collector (IV) of an aqueous suspension of boehmite connected by a line (19) for withdrawing an aqueous suspension of boehmite with an autonomous module (II) for producing hydrogen; a compressor-filling module (III) connected to a hydrogen receiver (13) of an autonomous module (II) for producing hydrogen; unit (V) for remote monitoring and control of a hydrogen filling station with a starting power module and a system for matching power supply parameters, while the turbine power plant has an independent circuit (20) with a coolant, on which a heat exchanger (8) is installed, configured to remove heat from the line ( 18) the output of the steam-hydrogen mixture and the line (19) of the output of the aqueous suspension of boehmite, and the turbine (14) with an electric generator connected to the unit (V) for remote monitoring and control of the hydrogen filling station with the possibility of supplying electricity to it, and as a hydrogen receiver (13), a high-pressure hydrogen receiver was used.

EFFECT: increasing the autonomy of the hydrogen filling station, reducing the power consumption for hydrogen compression, improving safety by eliminating hydrogen leaks in the hydrogen production process, and increasing the hydrogen production capacity.

8 cl, 2 dwg

Similar patents RU2803371C1

Title Year Author Number
METHOD FOR HYDROGEN PRODUCTION 2021
  • Volkov Eduard Petrovich
  • Vlaskin Mikhail Sergeevich
  • Volkov Konstantin Eduardovich
RU2793817C1
HYBRID POWER PLANT 2016
  • Bulat Pavel Viktorovich
  • Prodan Nikolaj Vasilevich
  • Volobuev Igor Alekseevich
RU2636599C1
SELF-CONTAINED COMBINED POWER PLANT 2008
  • Dmitriev Aleksej Leonidovich
  • Ikonnikov Valerij Konstantinovich
  • Rumjantsev Aleksandr Igorevich
  • Ryzhkin Vladimir Jur'Evich
RU2388649C1
SUBMARINE POWER PLANT 2003
  • Nikiforov B.V.
  • Rubal'Skij D.M.
  • Sokolov V.S.
  • Chigarev A.V.
  • Davydov V.N.
  • Dmitriev A.L.
  • Prokhorov N.S.
  • Ryzhkin V.Ju.
  • Ikonnikov V.K.
  • Zhukov N.N.
RU2236984C1
METHOD OF OBTAINING HIGH PURITY CORUNDUM 2012
  • Shkol'Nikov Evgenij Iosifovich
  • Lisitsyn Aleksej Viktorovich
  • Vlaskin Mikhail Sergeevich
  • Zhuk Andrej Zinov'Evich
  • Shejndlin Aleksandr Efimovich
RU2519450C1
METHOD FOR BOEHMITE AND HYDROGEN PREPARATION 2007
  • Bersh Aleksandr Valentinovich
  • Ivanov Jurij Leonidovich
  • Mazalov Jurij Aleksandrovich
  • Kormanova Svetlana Ivanovna
  • Lisitsyn Aleksej Viktorovich
RU2363659C1
POWER INSTALLATION BUILT AROUND ELECTROCHEMICAL GENERATORS 2004
  • Glukhikh Igor' Nikolaevich
  • Cheljaev Vladimir Filippovich
  • Starostin Aleksandr Nikolaevich
RU2301480C2
ALUMINIUM AND HYDROGEN PRODUCTION PLANT 2007
  • Mogilevskij Igor' Nikolaevich
RU2350563C2
POWER PLANT OF SUBMARINE 2008
  • Prokhorov Nikolaj Sergeevich
  • Sokolov Vladimir Sergeevich
  • Chentsov Mikhail Sergeevich
  • Jankevich Aleksandr Ivanovich
RU2381951C1
HYDRO-REACTION COMPOSITION FOR PRODUCING HYDROGEN 2007
  • Milinchuk Viktor Konstantinovich
  • Merkov Sergej Mikhajlovich
RU2371382C2

RU 2 803 371 C1

Authors

Boreisho Anatolii Sergeevich

Boreisho Aleksei Anatolevich

Klimenko Vadim Valerevich

Ryzhkin Vladimir Iurevich

Sirotin Sergei Aleksandrovich

Dates

2023-09-12Published

2023-04-13Filed