[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

Zornitta et al., 2022 - Google Patents

High-performance carbon electrodes modified with polyaniline for stable and selective anion separation

Zornitta et al., 2022

View HTML
Document ID
12196421071057854827
Author
Zornitta R
Ruotolo L
de Smet L
Publication year
Publication venue
Separation and Purification Technology

External Links

Snippet

Capacitive deionization (CDI) is a technology used for water desalination and ion recovery based on the use of capacitive electrodes. Typically, the porous carbon electrodes used for CDI display limited ion storage capacity and selectivity due to the mechanism of ion storage …
Continue reading at www.sciencedirect.com (HTML) (other versions)

Classifications

    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/46Treatment of water, waste water, or sewage by electrochemical methods
    • C02F1/461Treatment of water, waste water, or sewage by electrochemical methods by electrolysis
    • C02F1/46104Devices therefor; Their operating or servicing
    • C02F1/46109Electrodes
    • C02F2001/46152Electrodes characterised by the shape or form
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/46Treatment of water, waste water, or sewage by electrochemical methods
    • C02F1/469Treatment of water, waste water, or sewage by electrochemical methods by electrochemical separation, e.g. by electro-osmosis, electrodialysis, electrophoresis
    • C02F1/4691Capacitive deionisation
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F2201/00Apparatus for treatment of water, waste water or sewage
    • C02F2201/46Apparatus for electrochemical processes
    • C02F2201/461Electrolysis apparatus
    • C02F2201/46105Details relating to the electrolytic devices
    • C02F2201/46115Electrolytic cell with membranes or diaphragms
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F2201/00Apparatus for treatment of water, waste water or sewage
    • C02F2201/46Apparatus for electrochemical processes
    • C02F2201/461Electrolysis apparatus
    • C02F2201/46105Details relating to the electrolytic devices
    • C02F2201/4612Controlling or monitoring

Similar Documents

Publication Publication Date Title
Zornitta et al. High-performance carbon electrodes modified with polyaniline for stable and selective anion separation
Lu et al. Optimization of the voltage window for long-term capacitive deionization stability
Chang et al. Superiority of a novel flow-electrode capacitive deionization (FCDI) based on a battery material at high applied voltage
Ma et al. Development of redox-active flow electrodes for high-performance capacitive deionization
Cho et al. Flow-electrode capacitive deionization with highly enhanced salt removal performance utilizing high-aspect ratio functionalized carbon nanotubes
Li et al. Resin-enhanced rolling activated carbon electrode for efficient capacitive deionization
Wu et al. Surface-treated carbon electrodes with modified potential of zero charge for capacitive deionization
Nie et al. Electrophoretic deposition of carbon nanotubes–polyacrylic acid composite film electrode for capacitive deionization
Ahn et al. High performance electrochemical saline water desalination using silver and silver-chloride electrodes
Tian et al. Capacitive deionization with MoS2/g-C3N4 electrodes
Srimuk et al. Low voltage operation of a silver/silver chloride battery with high desalination capacity in seawater
Ma et al. Enhancing the water desalination and electricity generation of a microbial desalination cell with a three-dimensional macroporous carbon nanotube-chitosan sponge anode
Kim et al. Improvement of desalination efficiency in capacitive deionization using a carbon electrode coated with an ion-exchange polymer
Liu et al. Enhanced desalination efficiency in modified membrane capacitive deionization by introducing ion-exchange polymers in carbon nanotubes electrodes
Gao et al. Polymer-coated composite anodes for efficient and stable capacitive deionization
Chen et al. A study of electrosorption selectivity of anions by activated carbon electrodes in capacitive deionization
Liu et al. Porous carbon spheres via microwave-assisted synthesis for capacitive deionization
Choi Determination of the electrode potential causing Faradaic reactions in membrane capacitive deionization
Zhao et al. Performance comparison and energy consumption analysis of capacitive deionization and membrane capacitive deionization processes
Cai et al. Nafion-AC-based asymmetric capacitive deionization
Yang et al. Ion-selective carbon nanotube electrodes in capacitive deionisation
Lado et al. Evaluation of operational parameters for a capacitive deionization reactor employing asymmetric electrodes
Liu et al. Carbon aerogels electrode with reduced graphene oxide additive for capacitive deionization with enhanced performance
Wang et al. The optimized flow-electrode capacitive deionization (FCDI) performance by ZIF-8 derived nanoporous carbon polyhedron
Kim et al. Enhanced desalination via cell voltage extension of membrane capacitive deionization using an aqueous/organic bi-electrolyte