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Title:
STATIC REDOX BATTERY AND ENERGY STORAGE SYSTEM COMPRISING SAME
Document Type and Number:
WIPO Patent Application WO/2024/043637
Kind Code:
A1
Abstract:
A static redox battery comprises: a membrane with an ion-permeating function; a positive electrode electrolyte storage cell module located on one side of the membrane; a negative electrode electrolyte storage cell module located on the other side of the membrane; and a pair of bipolar plates located on the outermost sides of the positive electrode electrolyte storage cell module and the negative electrode electrolyte storage cell module. The positive electrode electrolyte storage cell module and the negative electrode electrolyte storage cell module each comprises: a plurality of felt electrodes storing an electrolyte; and a plurality of penetrating-type electrode support plates each located between the plurality of felt electrodes.

Inventors:
HWANG SEUNG HWAN (KR)
NA KYONG LOCK (KR)
Application Number:
PCT/KR2023/012327
Publication Date:
February 29, 2024
Filing Date:
August 21, 2023
Export Citation:
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Assignee:
XRB CO LTD (KR)
International Classes:
H01M8/18; H01M8/0289; H01M8/04082; H01M8/04186; H01M8/24; H02J3/32
Foreign References:
KR20220025562A2022-03-03
KR20140136656A2014-12-01
Other References:
SHIN KYUNGJAE, LEE JU-HYUK, HEO JIYUN, KIM HEE-TAK: "Current status and challenges for practical flowless Zn–Br batteries", CURRENT OPINION IN ELECTROCHEMISTRY, vol. 32, 1 April 2022 (2022-04-01), pages 100898, XP093143846, ISSN: 2451-9103, DOI: 10.1016/j.coelec.2021.100898
LEE JUHAN, SRIMUK PATTARACHAI, FLEISCHMANN SIMON, SU XIAO, HATTON T. ALAN, PRESSER VOLKER: "Redox-electrolytes for non-flow electrochemical energy storage: A critical review and best practice", PROGRESS IN MATERIALS SCIENCE., PERGAMON PRESS., GB, vol. 101, 1 April 2019 (2019-04-01), GB , pages 46 - 89, XP093143844, ISSN: 0079-6425, DOI: 10.1016/j.pmatsci.2018.10.005
JU‐HYUK LEE; YEARIN BYUN; GYOUNG HWA JEONG; CHANYONG CHOI; JIYUN KWEN; RIYUL KIM; IN HO KIM; SANG OUK KIM; HEE‐TAK KIM: "High‐Energy Efficiency Membraneless Flowless Zn–Br Battery: Utilizing the Electrochemical–Chemical Growth of Polybromides", ADVANCED MATERIALS, VCH PUBLISHERS, DE, vol. 31, no. 52, 25 October 2019 (2019-10-25), DE , pages n/a - n/a, XP071874765, ISSN: 0935-9648, DOI: 10.1002/adma.201904524
Attorney, Agent or Firm:
YOU ME PATENT AND LAW FIRM (KR)
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