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Solid-oxide fuel cell

High temperature fuel cells (solid oxide and molten carbonates) efforts must be guided to materials development (catalysts, electrodes, electrolytes, plates, seals, etc), fuel cells components development and its manufacturing methods and fuel cells prototypes development. [Pg.170]

Fig. 13.27. Potential vs. current density plots for state-of-the-art fuel cells, o, proton exchange membrane fuel cell , solid oxide fuel cell , pressurized phosphonic acid fuel cell (PAFC) a, direct methanol fuel cell, direct methanol PAFC , alkaline fuel cell. (Reprinted from M. A. Parthasarathy, S. Srinivasan, and A. J. Appleby, Electrode Kinetics of Oxygen Reduction at Carbon-Supported and Un-supported Platinum Microcrystal-lite/Nafion Interfaces, J. Electroanalytical Chem. 339 101-121, copyright 1992, p. 103, Fig. 1, with permission from Elsevier Science.)... Fig. 13.27. Potential vs. current density plots for state-of-the-art fuel cells, o, proton exchange membrane fuel cell , solid oxide fuel cell , pressurized phosphonic acid fuel cell (PAFC) a, direct methanol fuel cell, direct methanol PAFC , alkaline fuel cell. (Reprinted from M. A. Parthasarathy, S. Srinivasan, and A. J. Appleby, Electrode Kinetics of Oxygen Reduction at Carbon-Supported and Un-supported Platinum Microcrystal-lite/Nafion Interfaces, J. Electroanalytical Chem. 339 101-121, copyright 1992, p. 103, Fig. 1, with permission from Elsevier Science.)...
Solid oxide fuel cell Solid oxide electrolyte (yttria, zirconia) o2 1000°C H2, CO, CH4, other hydocarbons (tolerates co2) >50% 2 kW MW range... [Pg.167]

Solid oxide fuel cell — Solid oxide fuel cell (SOFC) is a device that converts the energy of combustion reactions (e.g., H2 + I/2O2, CO + I/2O2, CH4 + 2O2) into electrical energy. It is therefore called a fuel cell. It comprises two -> porous electrodes that sandwich -> solid... [Pg.617]

One of the more important fuel cells is the solid oxide fuel cell Solid oxide fuel cell (SOFC), since they offer a realistic opportunity for use in electric utility operations. A schematic of a fuel cell is shown in Figure 38. These can be developed in stacks having 5-10 kW capacity that would be suitable for both stationary and mobile power units. [Pg.3445]

SNG. See gas, natural, substitute SOFCs. See fuel, cells, solid oxide solvent... [Pg.531]

Evaluate the economic impact of the reversible solid oxide fuel cell /solid oxide electrolyzer system and consider applications where a competitive advantage may be achieved. [Pg.148]

The following sections consider the four most popular types of fuel cells solid oxide, molten carbonate, proton exchange membrane, and direct methanol. The net reactions are summarized in Tables 2-6 to give the reader an overview. [Pg.7]

High-temperature fuel cells solid oxide and proton conductor fuel cells... [Pg.573]

Since thin layers of materials are a necessary part of most fuel cell construction, tape casting has been used extensively in this field. There are two basic types of fuel cells solid oxide fuel cells (SOFC) and molten carbonate fuel cells (MCFC). [Pg.218]

P. loraa, P. Chiesab, High Efficiency Process for The Production of Pure Oxygen Based on Solid Oxide Fuel Cell-solid Oxide Electrolyte Technology, Journal of Power Sources, 190 (2009) 408 16. [Pg.64]

Sasaki K, Adachi S, Haga K, Uchikawa M, Yamamoto J, lyoshi A, Chou J-T, Shiratori Y, Itoh K (2007) Fuel impurity tolerance of solid oxide fuel cells. Solid oxide fuel cells 10 (SOFC-10). ECS Trans 7(1) 1675-1683... [Pg.176]

Zhou XD, Singhal SC, Fuel Cells—Solid Oxide Fuel Cells, pp 1-16... [Pg.75]

Figure 2.12 Ceramic Fuel Cells solid oxide fuel cell (SOFC) building block - schematic 19... Figure 2.12 Ceramic Fuel Cells solid oxide fuel cell (SOFC) building block - schematic 19...
Fuel cells can be classified into phosphoric acid fuel cells, molten carbonate fuel cells, solid oxide full cells, polymer electrolyte membrane fuel cells, and alkaline full cells according to the type of electrolyte used (150). All these fuel cells operate on the same principle, but the t) e of fuel used, operating speed, the catalyst used and the electrolyte used are different. In particular, pol5mier electrolyte membrane fuel cells can be used in small-sized stationary power generation equipment or transportation systems due to their high reaction speed, low operating temperature, high output density, rapid startup, and variation in the requested output. [Pg.124]

Research has been conducted and is currently being conducted into several types of fuel cells, such as alkaline fuel cells, proton exchange membrane (PEM) fuel cells, phosphoric acid fuel cells, molten carbonate fuel cells, solid oxide fuel cells, and so forth. Some of them are already commercialized, whereas others are close to commercialization. They are expected to find applications in almost every energy utilizing plant and/or device, from power plants to cars and homes, from laptop computers to mobile phones. [Pg.438]

X.-D. Zhou, S.C. Singhal, Fuel cell solid oxide fuel cells overview. In Garche J, Dyer C, Moseley P, Ogumi Z, Rand D, Scrosati B (eds.). Encyclopedia of electrochemical power sources, Amsterdam, Elsevier 3, 1-16 (2009)... [Pg.24]


See other pages where Solid-oxide fuel cell is mentioned: [Pg.578]    [Pg.71]    [Pg.229]    [Pg.357]    [Pg.1781]    [Pg.373]   
See also in sourсe #XX -- [ Pg.181 ]

See also in sourсe #XX -- [ Pg.66 ]




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Advanced Inorganic Materials for Solid Oxide Fuel Cells

Anode for solid oxide fuel cells

Anodes solid oxide fuel cells

Bond Graph Modelling of a Solid Oxide Fuel Cell

Cathodes solid oxide fuel cells

Ceria in Solid Oxide Fuel Cell Electrodes

Compressive seals, for solid oxide fuel cells

Durability of solid oxide fuel cells

Early History of Solid Oxide Fuel Cell

Electrodes for solid oxide fuel cells

Electrolytes for solid oxide fuel cells

Energy conversion membranes solid oxide fuel cells

Fuel cell oxidants

Fuel cells high-pressure solid oxide

Fuel oxidation

Fuel solid oxide

G. Kaur, Solid Oxide Fuel Cell Components

General Electric, solid oxide fuel cell

Hammou Solid Oxide Fuel Cells

High power density solid oxide fuel cell

Hydrogen solid oxide fuel cell

Interconnectors for solid oxide fuel cell

Intermediate temperature solid oxide fuel cells

Intermediate temperature solid oxide fuel cells ITSOFC)

Intermediate-temperature solid oxide fuel cells IT-SOFCs)

Ionic conductivity solid oxide fuel cells

Japan solid oxide fuel cell development

Low-temperature solid oxide fuel cells

Micro-solid oxide fuel cells

On the Path to Practical Solid Oxide Fuel Cells

Overview of Intermediate-Temperature Solid Oxide Fuel Cells

Oxidants, solid

Oxidation cell

Oxidation solids

Oxide Fuel Cells

Oxide fuels

Oxides solid-oxide fuel cells

Oxidizing solid

Oxygen electrolytes, solid oxide fuel cell

Proton conducting solid oxide fuel cells

Research solid oxide fuel cells

SOFC cathodes Solid oxide fuel cells

Single-chamber solid oxide fuel cells

Single-chamber solid oxide fuel cells SC-SOFCs)

Sites solid oxide fuel cells

Solid Oxide Fuel Cell Electrode Fabrication by Infiltration

Solid Oxide Fuel Cell Materials and Performance

Solid Oxide Fuel Cell Maximum Voltage

Solid Oxide Fuel Cell alternative concepts

Solid Oxide Fuel Cell electrode

Solid Oxide Fuel Cell electrolyte, alternative

Solid Oxide Fuel Cells Past, Present and Future

Solid Oxide Fuel Cells: Materials Properties and Performance

Solid fuel cell

Solid fuels

Solid oxide

Solid oxide cells

Solid oxide fuel cell Carbonate

Solid oxide fuel cell Direct conversion

Solid oxide fuel cell Future directions

Solid oxide fuel cell Introduction

Solid oxide fuel cell active parts

Solid oxide fuel cell anode materials

Solid oxide fuel cell anodes ceramic

Solid oxide fuel cell anodes conventional

Solid oxide fuel cell anodes perovskite-type materials

Solid oxide fuel cell carbon

Solid oxide fuel cell cathode materials

Solid oxide fuel cell cathodes conventional

Solid oxide fuel cell cathodes perovskite-type materials

Solid oxide fuel cell chromium

Solid oxide fuel cell companies

Solid oxide fuel cell competitiveness

Solid oxide fuel cell components

Solid oxide fuel cell conductor

Solid oxide fuel cell configurations

Solid oxide fuel cell contamination

Solid oxide fuel cell degradation

Solid oxide fuel cell deposition

Solid oxide fuel cell devices

Solid oxide fuel cell different types

Solid oxide fuel cell electrochemical reaction

Solid oxide fuel cell electrolyte

Solid oxide fuel cell electrolytes ceria-based

Solid oxide fuel cell electrolytes conventional

Solid oxide fuel cell electrolytes materials

Solid oxide fuel cell electrolytes perovskite-type materials

Solid oxide fuel cell electrolytes zirconia-based

Solid oxide fuel cell gadolinium-doped ceria

Solid oxide fuel cell interconnects

Solid oxide fuel cell issues

Solid oxide fuel cell membrane reactors

Solid oxide fuel cell performance

Solid oxide fuel cell reduction potential

Solid oxide fuel cell type membrane

Solid oxide fuel cell type membrane reactor

Solid oxide fuel cells -based

Solid oxide fuel cells Ceria-based materials

Solid oxide fuel cells PEMFCs, working with

Solid oxide fuel cells SOFCs)

Solid oxide fuel cells Westinghouse tubular cell

Solid oxide fuel cells Zirconia-based materials

Solid oxide fuel cells advantages

Solid oxide fuel cells and membranes

Solid oxide fuel cells apatites

Solid oxide fuel cells basic components

Solid oxide fuel cells cathode, electrochemical reactions

Solid oxide fuel cells cell design

Solid oxide fuel cells cell interconnection

Solid oxide fuel cells chemical thermodynamics

Solid oxide fuel cells combined cycle systems

Solid oxide fuel cells combined cycles

Solid oxide fuel cells conductivity

Solid oxide fuel cells development

Solid oxide fuel cells disadvantages

Solid oxide fuel cells drawbacks

Solid oxide fuel cells durability

Solid oxide fuel cells fabrication techniques

Solid oxide fuel cells finite element analysis

Solid oxide fuel cells first generation

Solid oxide fuel cells heat generation from

Solid oxide fuel cells high power

Solid oxide fuel cells high-temperature environment

Solid oxide fuel cells hybrid systems

Solid oxide fuel cells interconnection

Solid oxide fuel cells introduced

Solid oxide fuel cells manufacture

Solid oxide fuel cells manufacturing

Solid oxide fuel cells membrane

Solid oxide fuel cells merits

Solid oxide fuel cells metallic

Solid oxide fuel cells metallic interconnectors

Solid oxide fuel cells methane steam reforming

Solid oxide fuel cells methods

Solid oxide fuel cells modeling

Solid oxide fuel cells monolithic

Solid oxide fuel cells nanostructured materials

Solid oxide fuel cells operating principle

Solid oxide fuel cells operating temperature

Solid oxide fuel cells operation

Solid oxide fuel cells other materials

Solid oxide fuel cells overall chemical reaction

Solid oxide fuel cells oxygen reduction

Solid oxide fuel cells planar design

Solid oxide fuel cells potential application

Solid oxide fuel cells power plant, components

Solid oxide fuel cells power systems

Solid oxide fuel cells pressure

Solid oxide fuel cells reducing operation temperature

Solid oxide fuel cells requirements

Solid oxide fuel cells reversible

Solid oxide fuel cells schematic

Solid oxide fuel cells sealant

Solid oxide fuel cells stack design

Solid oxide fuel cells stationary

Solid oxide fuel cells stationary power generation, application

Solid oxide fuel cells structure

Solid oxide fuel cells systems

Solid oxide fuel cells temperature

Solid oxide fuel cells thickness

Solid oxide fuel cells thin-film

Solid oxide fuel cells tubular design

Solid oxide fuel cells tubular-type

Solid oxide fuel cells zirconia-based

Solid oxide fuel cells, SOFC

Solid oxide fuel cells, vii

Solid oxide fuel cells, viii

Solid oxidizers

Solid-oxide fuel cells electrical conductivity

Solid-oxide fuel cells fluorite

Solid-oxide fuel cells materials challenges

Solid-oxide fuel cells perovskite

Solid-oxide fuel cells reactions between

Solid-oxide fuel cells temperature stability

Solid-oxide fuel-cell applications

Solide fuel cell

The High-Temperature Solid-Oxide (HTSO) Fuel Cell

The Solid Oxide Fuel Cell

Thermal-Hydraulic Model of a Monolithic Solid Oxide Fuel Cell

Tubular solid oxide fuel cell

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