[EAN: 9783659137020], Neubuch, [PU: LAP Lambert Academic Publishing Jun 2012], This item is printed on demand - Print on Demand Neuware - Solid oxide fuel cells (SOFCs) are high temperatu… Mehr…
[EAN: 9783659137020], Neubuch, [PU: LAP Lambert Academic Publishing Jun 2012], This item is printed on demand - Print on Demand Neuware - Solid oxide fuel cells (SOFCs) are high temperature energy conversion devices with the advantages of fuel flexibility and high efficiency. Limitations of SOFC cermet anodes have been stimulating oxide anodes. Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells explores the materials property and electrochemical behavior of lanthanum strontium vanadate (LSV) for the purpose of SOFC anode application. Comprehensive studies demonstrate LSV as an efficient anode material with excellent sulfur tolerance and carbon resistance. LSV-based SOFCs have demonstrated with negligible performance degradation in carbon-forming and H2S-containing gases for more than 500 hours. The anode/electrolyte interface is simulated by Monte Carlo methods. The apparent double layer capacitance is measured by electrochemical impedance spectroscopy, while the intrinsic double layer capacitance is evaluated via a Stern s method in conjunction with the Volta potential analysis. An analytical three-phase boundary model is developed to bridge the anode/electrolyte interface with SOFC electrode performance. 216 pp. Englisch<
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Solid oxide fuel cells (SOFCs) are high temperature energy conversion devices with the advantages of fuel flexibility and high efficiency. Limitations of SOFC cermet anodes have been stim… Mehr…
Solid oxide fuel cells (SOFCs) are high temperature energy conversion devices with the advantages of fuel flexibility and high efficiency. Limitations of SOFC cermet anodes have been stimulating oxide anodes. Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells explores the materials property and electrochemical behavior of lanthanum strontium vanadate (LSV) for the purpose of SOFC anode application. Comprehensive studies demonstrate LSV as an efficient anode material with excellent sulfur tolerance and carbon resistance. LSV-based SOFCs have demonstrated with negligible performance degradation in carbon-forming and H2S-containing gases for more than 500 hours. The anode/electrolyte interface is simulated by Monte Carlo methods. The apparent double layer capacitance is measured by electrochemical impedance spectroscopy, while the intrinsic double layer capacitance is evaluated via a Stern s method in conjunction with the Volta potential analysis. An analytical three-phase boundary model is developed to bridge the anode/electrolyte interface with SOFC electrode performance. Bücher, Hörbücher & Kalender / Bücher / Sachbuch / Naturwissenschaften / Chemie / Physikalische Chemie<
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Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells:An efficient and robust SOFC oxide anode material Xiaoming Ge Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells:An efficient an… Mehr…
Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells:An efficient and robust SOFC oxide anode material Xiaoming Ge Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells:An efficient and robust SOFC oxide anode material Xiaoming Ge Bücher > Wissenschaft > Chemie, LAP Lambert Academic Publishing<
Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells ab 79 EURO An efficient and robust SOFC oxide anode material Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells ab 79 EURO An ef… Mehr…
Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells ab 79 EURO An efficient and robust SOFC oxide anode material Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells ab 79 EURO An efficient and robust SOFC oxide anode material Bücher > Wissenschaft > Chemie<
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[EAN: 9783659137020], Neubuch, [PU: LAP Lambert Academic Publishing Jun 2012], This item is printed on demand - Print on Demand Neuware - Solid oxide fuel cells (SOFCs) are high temperatu… Mehr…
[EAN: 9783659137020], Neubuch, [PU: LAP Lambert Academic Publishing Jun 2012], This item is printed on demand - Print on Demand Neuware - Solid oxide fuel cells (SOFCs) are high temperature energy conversion devices with the advantages of fuel flexibility and high efficiency. Limitations of SOFC cermet anodes have been stimulating oxide anodes. Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells explores the materials property and electrochemical behavior of lanthanum strontium vanadate (LSV) for the purpose of SOFC anode application. Comprehensive studies demonstrate LSV as an efficient anode material with excellent sulfur tolerance and carbon resistance. LSV-based SOFCs have demonstrated with negligible performance degradation in carbon-forming and H2S-containing gases for more than 500 hours. The anode/electrolyte interface is simulated by Monte Carlo methods. The apparent double layer capacitance is measured by electrochemical impedance spectroscopy, while the intrinsic double layer capacitance is evaluated via a Stern s method in conjunction with the Volta potential analysis. An analytical three-phase boundary model is developed to bridge the anode/electrolyte interface with SOFC electrode performance. 216 pp. Englisch<
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Solid oxide fuel cells (SOFCs) are high temperature energy conversion devices with the advantages of fuel flexibility and high efficiency. Limitations of SOFC cermet anodes have been stim… Mehr…
Solid oxide fuel cells (SOFCs) are high temperature energy conversion devices with the advantages of fuel flexibility and high efficiency. Limitations of SOFC cermet anodes have been stimulating oxide anodes. Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells explores the materials property and electrochemical behavior of lanthanum strontium vanadate (LSV) for the purpose of SOFC anode application. Comprehensive studies demonstrate LSV as an efficient anode material with excellent sulfur tolerance and carbon resistance. LSV-based SOFCs have demonstrated with negligible performance degradation in carbon-forming and H2S-containing gases for more than 500 hours. The anode/electrolyte interface is simulated by Monte Carlo methods. The apparent double layer capacitance is measured by electrochemical impedance spectroscopy, while the intrinsic double layer capacitance is evaluated via a Stern s method in conjunction with the Volta potential analysis. An analytical three-phase boundary model is developed to bridge the anode/electrolyte interface with SOFC electrode performance. Bücher, Hörbücher & Kalender / Bücher / Sachbuch / Naturwissenschaften / Chemie / Physikalische Chemie<
Nr. N0DIOM3DLTR. Versandkosten:, Lieferzeit: 5 Tage, DE. (EUR 0.00)
Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells:An efficient and robust SOFC oxide anode material Xiaoming Ge Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells:An efficient an… Mehr…
Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells:An efficient and robust SOFC oxide anode material Xiaoming Ge Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells:An efficient and robust SOFC oxide anode material Xiaoming Ge Bücher > Wissenschaft > Chemie, LAP Lambert Academic Publishing<
Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells ab 79 EURO An efficient and robust SOFC oxide anode material Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells ab 79 EURO An ef… Mehr…
Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells ab 79 EURO An efficient and robust SOFC oxide anode material Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells ab 79 EURO An efficient and robust SOFC oxide anode material Bücher > Wissenschaft > Chemie<
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Detailangaben zum Buch - Lanthanum Strontium Vanadate in Solid Oxide Fuel Cells
EAN (ISBN-13): 9783659137020 ISBN (ISBN-10): 3659137022 Gebundene Ausgabe Taschenbuch Erscheinungsjahr: 2012 Herausgeber: AV Akademikerverlag GmbH & Co. KG.
Buch in der Datenbank seit 2008-04-11T11:04:05+02:00 (Berlin) Detailseite zuletzt geändert am 2020-08-15T09:36:41+02:00 (Berlin) ISBN/EAN: 9783659137020
ISBN - alternative Schreibweisen: 3-659-13702-2, 978-3-659-13702-0 Alternative Schreibweisen und verwandte Suchbegriffe: Titel des Buches: strontium, fuel cells, material