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Li-battery safety / edited by Jürgen Garche, Klaus Brandt

1.2.8 Reuse and Recycling1.2.9 Transportation and Storage; Abbreviations; References; 2 General Overview of Non-Lithium Battery Systems and their Safety Issues; 2.1 Introduction; 2.2 Battery Hazards and Incidents; 2.2.1 Battery Assemblies: Implications to Safety; 2.2.2 Classification of Hazards; 2.2... Full description

PPN (Catalogue-ID): 103990016X
Personen: Garche, Jürgen
Brandt, Klaus
Format: eBook eBook
Language: English
Published: San Diego, Elsevier, c2019
Series: Electrochemical power sources: fundamentals, systems, and applications
Subjects:

Lithium ion batteries (Safety measures)

Formangabe: Electronic books
Notes: Description based upon print version of record. - 3.3.6 Transition Metal Vanadates
Description based upon print version of record
Physical Description: Online Ressource (671 pages)
ISBN: 978-0-444-64008-6
0-444-64008-8
978-0-444-63777-2
Sekundärausgabe Online-Ausg.

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520 |a 1.2.8 Reuse and Recycling1.2.9 Transportation and Storage; Abbreviations; References; 2 General Overview of Non-Lithium Battery Systems and their Safety Issues; 2.1 Introduction; 2.2 Battery Hazards and Incidents; 2.2.1 Battery Assemblies: Implications to Safety; 2.2.2 Classification of Hazards; 2.2.3 Battery Safety -- Categories; 2.2.4 Safety under Incidents and Abusive Treatment; 2.3 Aqueous Electrolyte Batteries; 2.3.1 Cell Types and Internal Structure; 2.3.2 Active Materials: Health Aspects; 2.3.2.1 Lead-acid (LA) batteries; 2.3.2.2 Nickel-cadmium (NiCd) batteries 
520 |a 2.3.2.3 Nickel-metal hydride (NiMH) batteries2.3.3 Operational Safety of Aqueous Battery Systems; 2.3.3.1 Safety of lead-acid (LA) batteries; 2.3.3.2 Safety of nickel-cadmium batteries; 2.3.3.3 Safety of nickel-metal hydride batteries; 2.4 High-Temperature (HT) Batteries; 2.4.1 Materials and Design of HT cells (NaS, NaNiCl); 2.4.1.1 Sodium-sulfur; 2.4.1.2 Sodium-nickel chloride; 2.4.2 General System Aspects of HT Batteries; 2.4.3 Safety of Sodium-Sulfur Batteries; 2.4.4 Safety of Sodium-Nickel Chloride Batteries; 2.5 Redox Flow Battery Systems 
520 |a 2.5.1 Materials and Design of Redox Flow Battery Systems2.5.2 General Aspects of Redox Flow Battery Systems; 2.5.3 Safety of Redox Flow Battery Systems; Abbreviations; References; 3 Overview of Rechargeable Lithium Battery Systems; 3.1 Basic Cell Chemistry; 3.1.1 Lithium-Metal Systems; 3.1.2 Lithium-Ion Batteries; 3.2 Positive Electrode Materials; 3.2.1 Transition Metal Oxides; 3.2.1.1 Lithium cobalt oxide (LCO); 3.2.1.2 Lithium nickel oxide (LNO and NCA); 3.2.1.3 Layered oxide solid solutions Li(Ni, Mn, Co)O2 (NMC, NCM); 3.2.1.4 Lithium-rich manganese-based layered materials 
520 |a 3.2.1.5 Lithium manganese spinel (LMO)3.2.1.6 Redox active metal oxides; 3.2.2 Lithium Metal Phosphates and Polyoxyanion Structures; 3.2.2.1 Lithium iron phosphate (LFP); 3.2.2.2 Lithium iron phosphate fluoride; 3.2.2.3 Conducting silicates; 3.2.3 Transition Metal Sulfides; 3.3 Negative Electrode Materials; 3.3.1 Graphite and Amorphous Carbon; 3.3.1.1 Natural graphite; 3.3.1.2 Artificial graphite; 3.3.1.3 Amorphous carbons; 3.3.1.3 Nanocarbons; 3.3.2 Lithium Titanate (LTO); 3.3.3 Lithium Alloys; 3.3.4 Tin Composite Electrode (TCO); 3.3.5 Lithium Metal Nitrides 
520 |a Front Cover; Electrochemical Power Sources: Fundamentals, Systems, and Applications; Copyright Page; Contents; List of Contributors; Preface; References; 1 General Battery Safety Considerations; 1.1 General Safety Aspects; 1.1.1 Introduction; 1.1.2 Safety Integrity Level; 1.2 General Battery Safety Aspects; 1.2.1 Introduction; 1.2.2 Nature of Battery Safety Risks; 1.2.3 Triggers of Battery Safety Incidents; 1.2.4 Probabilty and Controlability of Safety Event Triggers; 1.2.5 Assessing and Reducing the Severity of Safety Events; 1.2.6 Holistic Concept of Safety; 1.2.7 Dealing With Safety Events 
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