Hybrid systems based on solid oxide fuel cells modelling and design First Edition by Damo Usman M., Ferrari Mario L., Sánchez, David, Turan Ali – Ebook PDF Instant Download/Delivery: 9781945291500, 1945291508
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Product details:
ISBN 10: 1945291508
ISBN 13: 9781945291500
Author: Damo Usman M., Ferrari Mario L., Sánchez, David, Turan Ali
Hybrid Systems Based on Solid Oxide Fuel Cells: Modelling and Design is a comprehensive textbook authored by Mario L. Ferrari, Usman M. Damo, and Ali Turan, first published in 2017 by Wiley. This work delves into the integration of Solid Oxide Fuel Cells (SOFCs) with other power generation systems, particularly micro gas turbines (mGTs), to enhance efficiency and performance.
Table of contents:
Literature Review on Lanthanum Chromites and Lanthanum Manganites
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Crystal Structure of La(Cr/Mn)O3
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Properties of La(Cr/Mn)O3
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Applications of La(Cr/Mn)O3
Literature Review on Doped Lanthanum Chromites and Lanthanum Manganites -
Properties of Doped La(Cr/Mn)O3
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Applications of Doped La(Cr/Mn)O3
Preparation of Manganite Structure Materials -
Solid State Reaction Method
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Synthesis
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(Co, Mn) Doped (La, Ca) Based Chromites (La0.8Ca0.2)(Cr0.9-xCo0.1Mnx)O3
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(Co, Fe) Doped (La, Ca) Based Chromites (La0.8Ca0.2)(Cr0.9-xCo0.1Fex)O3
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(Co, Cu) Doped (La, Ca) Based Chromites (La0.8Ca0.2)(Cr0.9-xCo0.1Cux)O3
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La1-xCaxMnO3 Manganites
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La1-xSrxMnO3 Manganites
Characterization Methods -
Powder X-ray Diffraction
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UV-Visible Spectrophotometry
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Scanning Electron Microscopy
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Energy Dispersive X-ray Spectroscopy
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Vibrating Sample Magnetometry
Methodologies Used for Analysis -
Structural Determination Using the Rietveld Refinement Technique
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Electron Density Distribution
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Charge Density Derived from Fourier Method
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Maximum Entropy Method
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Methodology for the Determination of Charge Density
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Optical Band Gap Determination
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Grain Size Determination
Chapter 2: Results
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Structural Characterization – Powder X-ray Diffraction
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(Co, Mn) Doped Chromites
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(Co, Fe) Doped Chromites
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(Co, Cu) Doped Chromites
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La1-xCaxMnO3 Manganites
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La1-xSrxMnO3 Manganites
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Morphological Characterization and Elemental Confirmation (SEM/EDS)
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Optical Characterization – UV-Visible Absorption Spectra
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Magnetic Characterization – Vibrating Sample Magnetometry
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Charge Density Distribution Studies by Maximum Entropy Method
Chapter 3: Discussion
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Introduction
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Synthesis of Manganite Structure Materials
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Grain Size Analysis
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Surface Morphology and Elemental Analysis (SEM/EDS)
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Optical Band Gap Analysis (UV-Visible Absorption Spectra)
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Magnetic Analysis (Vibrating Sample Magnetometer Measurements)
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Charge Density Distribution Analysis by Maximum Entropy Method
Chapter 4: Conclusion
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Structural Properties
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Surface Morphology and Elemental Compositions
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Optical Studies
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Magnetic Properties
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Charge Density Distribution Studies Using MEM
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Tags: Damo Usman, Ferrari Mario, Sánchez, David Turan Ali, Hybrid systems, solid oxide, modelling and design


