Produktbild: Electrochemical Technologies for Energy Storage and Conversion, 2 Volumes

Electrochemical Technologies for Energy Storage and Conversion, 2 Volumes

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

28.11.2011

Abbildungen

324 SW-Abb., 12 Farbabb., 68 Tabellen

Herausgeber

Jiujun Zhang + weitere

Verlag

Wiley-VCH

Seitenzahl

792

Maße (L/B/H)

4.8/17.7/24.5 cm

Gewicht

1856 g

Sprache

Englisch

ISBN

978-3-527-32869-7

Beschreibung

Rezension

"In this handbook gives a comprehensive overview of electrochemical energy and conversion methods." (Energy Database, 2012)

Portrait

Lei Zhang is a Research Council Officer at the National Research Council of Canada Institute for Fuel Cell Innovation. She received her first M.Sc. in inorganic chemistry from Wuhan University in 1993, and her second in materials chemistry from Simon Fraser University, Canada in 2000. She is an adjunct professor at the Federal University of Maranhao, Brazil and at the Zhengzhou University, China, in addition to being an international advisory member of 7th IUPAC International Conference on Novel Materials and their Synthesis and an active member of the Electrochemical Society and the International Society of Electrochemistry. Ms. Zhang has co-authored over 90 publications and holds five US patent applications. Her main research interests include PEM fuel cell electrocatalysis, catalyst layer/electrode structure, metal-air batteries/fuel cells and supercapacitors.Ru-Shi Liu received his bachelor?s degree in chemistry from Shoochow University, Taiwan, in 1981, and his master's in nuclear science from the National Tsing Hua University, two years later. He gained one Ph.D. in chemistry from National Tsing Hua University in 1990, and one from the University of Cambridge in 1992. From 1983 to 1995 he worked as a researcher at the Industrial Technology Research Institute, before joining the Department of Chemistry at the National Taiwan University in 1995 where he became a professor in 1999. He is a recipient of the Excellent Young Person Prize, Excellent Inventor Award (Argentine Medal) and Excellent Young Chemist Award. Professor Liu has over 350 publications in scientific international journals as well as more than 80 patents to his name.Hansan Liu is a researcher at the Oak Ridge National Laboratory, US Department of Energy. He obtained his Ph.D. in electrochemistry from Xiamen University where he studied cathode materials for lithium ion batteries. After graduation, he worked at the Hong Kong Polytechnic University and the National Research Council Canada on electrophotocatalysis and fuel cell electrocatalysis, respectively. He is currently working on next generation high-energy density batteries at ORNL. Dr. Liu has 14 years of research experience in the field of electrochemical energy storage and conversion. His research interests mainly include battery and supercapacitor materials, fuel cell electrocatalysts, and synthesis and applications of high surface area materials. He has authored and co-authored over 70 publications, including 3 books, 4 book chapters and 3 patent applications relating to batteries and fuel cells. Dr. Liu is an active member of the Electrochemical Society and the International Society of Electrochemistry.Xueliang (Andy) Sun holds a Canada Research Chair in the development of nanomaterials for clean energy, and is Associate Professor at the University of Western Ontario, Canada. He received his Ph.D. in materials chemistry in 1999 from the University of Manchester, UK, after which he worked as a postdoctoral fellow at the University of British Columbia, and as a research associate at l'Institut national de la recherche scientifique, Canada. He is the recipient of a number of awards, including the Early Researcher award, Canada Research Chair award and University Faculty Scholar award, and has authored or co-authored over 100 papers, 3 book chapters and 8 patents. Over the past decade, Dr. Sun has established a remarkable track record in nanoscience and nanotechnology for clean energy, mainly in the synthesis and structure control of one-dimensional nanomaterials, as well as their applications for fuel cells and Li ion batteries.Currently a Senior Research Officer and PEM Catalysis Core Competency Leader at the National Research Council of Canada Institute for Fuel Cell Innovation, Jiujun Zhang received his B.Sc. andM.Sc. in electrochemistry from Beijing University, China, in 1982 and 1985, respectively, and his Ph.D. in electrochemistry from Wuhan University in 1988. After this, he took up a pos

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

28.11.2011

Abbildungen

324 SW-Abb., 12 Farbabb., 68 Tabellen

Herausgeber

Verlag

Wiley-VCH

Seitenzahl

792

Maße (L/B/H)

4.8/17.7/24.5 cm

Gewicht

1856 g

Sprache

Englisch

ISBN

978-3-527-32869-7

Herstelleradresse

Wiley-VCH GmbH
Boschstr. 12
69469 Weinheim
Deutschland
Email: trade@wiley.com
Url: www.wiley-vch.de
Fax: +49 6201 606328

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  • Produktbild: Electrochemical Technologies for Energy Storage and Conversion, 2 Volumes
  • Volume 1ELECTROCHEMICAL TECHNOLOGIES FOR ENERGY STORAGE AND CONVERSIONIntroductionGlobal Energy Status: Demands, Challenges, and Future PerspectivesDriving Forces behind Clean and Sustainable Energy SourcesGreen and Sustainable Energy Sources and Their Conversion: Hydro, Biomass, Wind, Solar, Geothermal, and BiofuelElectrochemistry: a Technological OverviewElectrochemical Rechargeable Batteries and Supercapacitors (Li Ion Batteries, Lead-Acid Batteries, NiMH Batteries, Zinc-Air Batteries, Liquid Redox Batteries)Light Fuel Generation and Storage: Water Electrolysis, Chloro-Alkaline Electrolysis, Photoelectrochemical and Photocatalytic H2 Generation, and Electroreduction of CO2Fuel Cells: Fundamentals to Systems (Phosphoric Acid Fuel Cells, PEM Fuel Cells, Direct Methanol Fuel Cells, Molten Carbon Fuel Cells, and Solid Oxide Fuel Cells)SummaryELECTROCHEMICAL ENGINEERING FUNDAMENTALSElectrical Current/Voltage, Faraday?s Laws, Electric Efficiency, and Mass BalanceElectrode Potentials and Electrode-Electrolyte InterfacesElectrode Kinetics (Charger Transfer (Butler-Volmer Equation) and Mass Transfer (Diffusion Laws))Porous Electrode Theory (Kinetic and Diffusion)Structure, Design, and Fabrication of Electrochemical DevicesNanomaterials in Electrochemical ApplicationsLITHIUM ION RECHARGEABLE BATTERIESIntroductionMain Types and Structures of Li Ion Rechargeable BatteriesElectrochemical Processes in Li Ion Rechargeable BatteriesBattery Components (Anode, Cathode, Separator, Endplates, and Current Collector)Assembly, Stacking, and Manufacturing of Li Ion Rechargeable BatteriesLi Ion Battery Performance, Testing, and DiagnosisDegradation Mechanisms and Mitigation StrategiesCurrent and Potential Applications of Secondary Li Ion BatteriesLEAD-ACID BATTERYGeneral Characteristics and Chemical/Electrochemical Processes in a Lead-Acid BatteryBattery Components (Anode, Cathode, Separator, Endplates (Current Collector), and Sealing)Main Types and Structures of Lead-Acid BatteriesCharging Lead-Acid BatteryMaintenance and Failure Mode of a Lead-Acid BatteryAdvanced Lead-Acid Battery TechnologyLead-Acid Battery MarketNICKEL-METAL HYDRIDE (Ni-MH) RECHARGEABLE BATTERIESIntroduction to NiMH Rechargeable BatteriesElectrochemical Processes in Rechargeable Ni-MH BatteriesBattery ComponentsAssembly, Stacking, Configuration, and Manufacturing of Rechargeable Ni-MH BatteriesNi-MH Battery Performance, Testing, and DiagnosisDegradation Mechanisms and Mitigation StrategiesApplications (Portable, Backup Power, and Transportation)Challenges and Perspectives of Ni-MH Rechargeable BatteriesMETAL-AIR TECHNOLOGYMetal-Air TechnologyIntroduction to Aluminum-Air TechnologyIntroduction to Lithium-Air TechnologyIntroduction to Zinc-Air TechnologyIntroduction to Magnesium-Air TechnologyStructure of Magnesium-Air CellComponentsManufacturingMagnesium-Air Battery PerformanceDegradation Mechanisms and Mitigation StrategiesApplicationsChallenges and Perspectives of Magnesium-Air CellsLIQUID REDOX RECHARGEABLE BATTERIESIntroductionElectrochemical Processes in a Redox Flow BatteryMaterials and Properties of Redox Flow BatteryRedox Flow Battery SystemPerformance Evaluation of Redox Flow BatteryDegradation Mechanisms and Mitigation StrategiesApplications of Redox Flow BatteriesPerspectives and Challenges of RFBELECTROCHEMICAL SUPERCAPACITORSIntroduction to Supercapacitors (Current Technology State and Literature Review)Main Types and Structures of SupercapacitorsPhysical/Electrochemical Processes in SupercapacitorsSupercapacitor ComponentsAssembly and Manufacturing of SupercapacitorsSupercapacitors Stacking and SystemsSupercapacitor Performance, Testing, and DiagnosisSupercapacitor ConfigurationsApplicationsChallenges and Perspectives of Electrochemical SupercapacitorsVolume 2WATER ELECTROLYSIS FOR HYDROGEN GENERATIONIntroduction to Water ElectrolysisThermodynamicsKineticsAlkaline Water ElectrolysisPEM Water ElectrolysisHigh Temperature Water ElectrolysisConclusionHYDROGEN COMPRESSION, PURIFICATION, AND STORAGEIntroductionPressurized Water ElectrolysisHydrogen Electrochemical CompressionHydrogen Electrochemical Extraction and PurificationHydrogen Storage in Hydride-Forming MaterialsConclusion and PerspectivesSOLAR CELL AS AN ENERGY HARVESTING DEVICEIntroductionSolar Radiation and AbsorptionFundamentals of Solar CellsSilicon Solar CellOther High-Efficiency Solar CellsDye-Sensitized Solar CellRoutes to Boost the Efficiency of Solar CellsCurrent Ideas for Future Solar CellSummaryPHOTOELECTROCHEMICAL CELLS FOR HYDROGEN GENERATIONIntroductionMain Types and Structures of Photoelectrochemical CellsElectrochemical Processes in Photoelectrochemical CellsPhotoelectrochemical Cell ComponentsAssembly of Photoelectrochemical CellsPhotoelectrochemical Cell Performance, Testing, and DiagnosisDegradation Mechanisms and Mitigation StrategiesApplications (Portable, Stationary, and Transportation)ConclusionsPOLYMER ELECTROLYTE MEMBRANE FUEL cellsIntroduction to PEMFCsMain Types and Structures of PEMFCsElectrochemical Processes in PEMFCsPEMFCs ComponentsAssembly and Manufacture of PEMFCsPEMFC Stacking and SystemPEM Performance, Testing, and DiagnosisDegradation Mechanisms and Mitigation StrategiesApplicationsChallenges and PerspectivesSOLID OXIDE FUEL CELLSIntroductionFuel Cell ComponentsAssembly and ManufacturingStacking and Balance of the PlantPerformance, Testing, and DiagnosisDegradation Mechanisms and Mitigation StrategiesApplicationsChallenges and PerspectivesDIRECT METHANOL FUEL CELLSIntroduction to Direct Methanol Fuel CellsMain Types and Structures of Direct Methanol Fuel CellsElectrochemical Processes in Direct Methanol Fuel CellsFuel Cell ComponentsAssembly and Manufacturing of Direct Methanol Fuel CellsDirect Methanol Fuel Cell Stacking and SystemsDirect Methanol Fuel Cells: Performance, Testing, and DiagnosisDegradation Mechanisms and Mitigation StrategiesApplicationsChallenges and Perspectives of Direct Methanol Fuel CellsMOLTEN CARBONATE FUEL CELLSIntroduction to Molten Carbonate Fuel CellsCurrent Technologic Status of Molten Carbonate Fuel CellsElectrochemical Processes in Molten Carbonate Fuel CellsComponents of Molten Carbonate Fuel CellsStructure and Performance of MCFCsSchematic of MCFC Power Generation SystemsFabrication and Operation of MCFCsMCFC Power PlantMajor Factors Affecting the Performance and Lifetime of MCFCsChallenges and Perspectives of MCFCs