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- Computermodellierung und -simulation von FB unter Berücksichtigung quantenmechanischer Überlegungen, Zellen-, Stapel- und Systemmodellierung, Techno-Ökonomie und Netzverhalten
- Die ausgereifte Variante der Vanadium-Flussbatterie sowie die neu entwickelten FB mit unterschiedlichen chemischen Verfahren und deren Einfluss auf den Forschungsbereich
- Kommerziell erhältliche FB unterschiedlicher Hersteller, die darin verwendete Technologie und deren Anwendungsbereiche
- Die Rolle von FB bei der Bewältigung der globalen Energiekrise
Flow Batteries ist ein wertvolles Referenzwerk für Forscher und Ingenieure in Industrie und Wissenschaft, die sich mit dieser spannenden neuen Technologie befassen und den vollen Umfang der aktuellen und künftigen Anwendungsmöglichkeiten ergründen möchten.
- Computermodellierung und -simulation von FB unter Berücksichtigung quantenmechanischer Überlegungen, Zellen-, Stapel- und Systemmodellierung, Techno-Ökonomie und Netzverhalten
- Die ausgereifte Variante der Vanadium-Flussbatterie sowie die neu entwickelten FB mit unterschiedlichen chemischen Verfahren und deren Einfluss auf den Forschungsbereich
- Kommerziell erhältliche FB unterschiedlicher Hersteller, die darin verwendete Technologie und deren Anwendungsbereiche
- Die Rolle von FB bei der Bewältigung der globalen Energiekrise
Flow Batteries ist ein wertvolles Referenzwerk für Forscher und Ingenieure in Industrie und Wissenschaft, die sich mit dieser spannenden neuen Technologie befassen und den vollen Umfang der aktuellen und künftigen Anwendungsmöglichkeiten ergründen möchten.
Christina Roth is Full Professor at the University of Bayreuth (Germany), where she is the Chair of Electrochemical Process Engineering.
Jens Noack is Adjunct Associate Professor at the University of New South Wales in Sydney (Australia) and works at the German Fraunhofer Institute for Chemical Technology in the Department of Applied Electrochemistry.
Maria Skyllas-Kazacos is Professor Emeritus in the School of Chemical Engineering at the University of New South Wales in Sydney (Australia), where she has been a member of the academic staff since 1980.
PART 1: FUNDAMENTALS
The Need for Stationary Energy Storage
History of Flow Batteries
General Electrochemical Fundamentals of Batteries General Aspects and Fundamentals of Flow Batteries
Redox-mediated Processes
Membranes for Flow Batteries
Standards for Flow Batteries
Safety Considerations of the Vanadium Flow Battery
A Student Workshop in Sustainable Energy Technology: The Principles and Practice of a Rechargeable Flow Battery
PART 2: CHARACTERIZATION OF FLOW BATTERIES AND MATERIALS
Characterization Methods in Flow Batteries: A General Overview
Electrochemical Methods
Radiography and Tomography
Characterization of Carbon Materials
Characterization of Membranes for Flow Batteries
PART 3: MODELING AND SIMULATION
Quantum Mechanical Modeling of Flow Battery Materials
Mesoscale Modeling and Simulation for Flow Batteries
Continuum Modelling and Simulation of Flow Batteries
Pore-scale Modeling of Flow Batteries
Dynamic Modelling of Vanadium Flow Batteries for System Monitoring and Control
Techno-economic Modelling and Evaluation of Flow Batteries
Machine Learning for FB Electrolyte Screening
VOLUME 2
PART 4: VANADIUM FLOW BATTERIES
The History of the UNSW All¿Vanadium Flow Battery Development
Vanadium Electrolytes and Related Electrochemical Reactions
Electrodes for Vanadium Flow Batteries (VFBs)
Membranes for Vanadium Flow Batteries
Advanced Flowfield Architecture for Vanadium Flow Batteries
State¿of¿Charge Monitoring for Vanadium Redox Flow Batteries
Rebalancing/Regeneration of Vanadium Flow Batteries
Life Cycle Analysis of Vanadium Flow Batteries
Next¿Generation Vanadium Flow Batteries
Asymmetric Vanadium¿based Aqueous Flow Batteries
PART 5: OTHER IMPORTANT INORGANIC FLOW BATTERY TECHNOLOGIES
Zn/Br Battery - Early Research and Development
An Overview of the Polysulfide/Bromine Flow Battery
Fe/Fe Flow Battery
Zinc-Cerium and Related Cerium¿Based Flow Batteries: Progress and Challenges
Undivided Copper-Lead Dioxide Flow Battery Based on Soluble Copper and Lead in Aqueous
All¿copper Flow Batteries
Hydrogen¿Based Flow Batteries
VOLUME 3
PART 6: ORGANIC FLOW BATTERIES
Aqueous Organic Flow Batteries
Metal Coordination Complexes for Flow Batteries
Organic Redox Flow Batteries: Lithium¿Ion¿based FBs
Nonaqueous Metal¿Free Flow Batteries
Polymeric Flow Batteries
PART 7: INDUSTRIAL AND COMMERCIALIZATION ASPECTS OF FLOW BATTERIES
Inverter Interfacing and Grid Behaviour
Flow¿Battery System Topologies and Grid Connection
Vanadium FBESs installed by Sumitomo Electric Industries, Ltd
Industrial Applications of Flow Batteries
Applications of VFB in Rongke Power
Metal¿Free Flow Batteries Based on TEMPO
Commercialization of All¿Iron Redox Flow¿Battery Systems
Application of Hydrogen-Bromine Flow Batteries: Technical Paper
Some Notes on Zinc/Bromine Flow Batteries
Mobile Applications of the ZBB
Erscheinungsjahr: | 2023 |
---|---|
Fachbereich: | Physikalische Chemie |
Genre: | Chemie, Mathematik, Medizin, Naturwissenschaften, Technik |
Rubrik: | Naturwissenschaften & Technik |
Medium: | Buch |
Inhalt: | 3 Audio-CDs |
ISBN-13: | 9783527349227 |
ISBN-10: | 3527349227 |
Sprache: | Englisch |
Herstellernummer: | 1134922 000 |
Einband: | Gebunden |
Redaktion: |
Roth, Christina
Noack, Jens Skyllas-Kazacos, Maria |
Herausgeber: | Christina Roth/Jens Noack/Maria Skyllas-Kazacos |
Hersteller: |
Wiley-VCH
Wiley-VCH GmbH |
Verantwortliche Person für die EU: | Wiley-VCH GmbH, Boschstr. 12, D-69469 Weinheim, wiley.buha@zeitfracht.de |
Abbildungen: | 5 schwarz-weiße und 98 farbige Abbildungen |
Maße: | 252 x 178 x 78 mm |
Von/Mit: | Christina Roth (u. a.) |
Erscheinungsdatum: | 18.01.2023 |
Gewicht: | 3,018 kg |
Christina Roth is Full Professor at the University of Bayreuth (Germany), where she is the Chair of Electrochemical Process Engineering.
Jens Noack is Adjunct Associate Professor at the University of New South Wales in Sydney (Australia) and works at the German Fraunhofer Institute for Chemical Technology in the Department of Applied Electrochemistry.
Maria Skyllas-Kazacos is Professor Emeritus in the School of Chemical Engineering at the University of New South Wales in Sydney (Australia), where she has been a member of the academic staff since 1980.
PART 1: FUNDAMENTALS
The Need for Stationary Energy Storage
History of Flow Batteries
General Electrochemical Fundamentals of Batteries General Aspects and Fundamentals of Flow Batteries
Redox-mediated Processes
Membranes for Flow Batteries
Standards for Flow Batteries
Safety Considerations of the Vanadium Flow Battery
A Student Workshop in Sustainable Energy Technology: The Principles and Practice of a Rechargeable Flow Battery
PART 2: CHARACTERIZATION OF FLOW BATTERIES AND MATERIALS
Characterization Methods in Flow Batteries: A General Overview
Electrochemical Methods
Radiography and Tomography
Characterization of Carbon Materials
Characterization of Membranes for Flow Batteries
PART 3: MODELING AND SIMULATION
Quantum Mechanical Modeling of Flow Battery Materials
Mesoscale Modeling and Simulation for Flow Batteries
Continuum Modelling and Simulation of Flow Batteries
Pore-scale Modeling of Flow Batteries
Dynamic Modelling of Vanadium Flow Batteries for System Monitoring and Control
Techno-economic Modelling and Evaluation of Flow Batteries
Machine Learning for FB Electrolyte Screening
VOLUME 2
PART 4: VANADIUM FLOW BATTERIES
The History of the UNSW All¿Vanadium Flow Battery Development
Vanadium Electrolytes and Related Electrochemical Reactions
Electrodes for Vanadium Flow Batteries (VFBs)
Membranes for Vanadium Flow Batteries
Advanced Flowfield Architecture for Vanadium Flow Batteries
State¿of¿Charge Monitoring for Vanadium Redox Flow Batteries
Rebalancing/Regeneration of Vanadium Flow Batteries
Life Cycle Analysis of Vanadium Flow Batteries
Next¿Generation Vanadium Flow Batteries
Asymmetric Vanadium¿based Aqueous Flow Batteries
PART 5: OTHER IMPORTANT INORGANIC FLOW BATTERY TECHNOLOGIES
Zn/Br Battery - Early Research and Development
An Overview of the Polysulfide/Bromine Flow Battery
Fe/Fe Flow Battery
Zinc-Cerium and Related Cerium¿Based Flow Batteries: Progress and Challenges
Undivided Copper-Lead Dioxide Flow Battery Based on Soluble Copper and Lead in Aqueous
All¿copper Flow Batteries
Hydrogen¿Based Flow Batteries
VOLUME 3
PART 6: ORGANIC FLOW BATTERIES
Aqueous Organic Flow Batteries
Metal Coordination Complexes for Flow Batteries
Organic Redox Flow Batteries: Lithium¿Ion¿based FBs
Nonaqueous Metal¿Free Flow Batteries
Polymeric Flow Batteries
PART 7: INDUSTRIAL AND COMMERCIALIZATION ASPECTS OF FLOW BATTERIES
Inverter Interfacing and Grid Behaviour
Flow¿Battery System Topologies and Grid Connection
Vanadium FBESs installed by Sumitomo Electric Industries, Ltd
Industrial Applications of Flow Batteries
Applications of VFB in Rongke Power
Metal¿Free Flow Batteries Based on TEMPO
Commercialization of All¿Iron Redox Flow¿Battery Systems
Application of Hydrogen-Bromine Flow Batteries: Technical Paper
Some Notes on Zinc/Bromine Flow Batteries
Mobile Applications of the ZBB
Erscheinungsjahr: | 2023 |
---|---|
Fachbereich: | Physikalische Chemie |
Genre: | Chemie, Mathematik, Medizin, Naturwissenschaften, Technik |
Rubrik: | Naturwissenschaften & Technik |
Medium: | Buch |
Inhalt: | 3 Audio-CDs |
ISBN-13: | 9783527349227 |
ISBN-10: | 3527349227 |
Sprache: | Englisch |
Herstellernummer: | 1134922 000 |
Einband: | Gebunden |
Redaktion: |
Roth, Christina
Noack, Jens Skyllas-Kazacos, Maria |
Herausgeber: | Christina Roth/Jens Noack/Maria Skyllas-Kazacos |
Hersteller: |
Wiley-VCH
Wiley-VCH GmbH |
Verantwortliche Person für die EU: | Wiley-VCH GmbH, Boschstr. 12, D-69469 Weinheim, wiley.buha@zeitfracht.de |
Abbildungen: | 5 schwarz-weiße und 98 farbige Abbildungen |
Maße: | 252 x 178 x 78 mm |
Von/Mit: | Christina Roth (u. a.) |
Erscheinungsdatum: | 18.01.2023 |
Gewicht: | 3,018 kg |