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Meeting 2021 TMS Annual Meeting & Exhibition
Symposium Powder Materials for Energy Applications
Presentation Title Powder to Energy Application
Author(s) Jung Pyung Choi, John Hardy
On-Site Speaker (Planned) Jung Pyung Choi
Abstract Scope There are many energy sources in the world. Among them, we focus on solid oxide fuel cells (SOFCs), which is a very energy efficient energy generation technology. This energy conversion device is operating high-temperature; hence various fuel sources can be used. However, because of that high-temperature operation, interconnect material making chromium evaporation, and it makes cathode poisoning. To mitigate this issue, an alumina coating and a (Mn, Co)3O4-CeO spinel coating were developed at PNNL. For this work, we will show how we used powder processing technology to make excellent SOFC performance.
Proceedings Inclusion? Planned:
Keywords Powder Materials, Energy Conversion and Storage, Phase Transformations

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Conformal Coating of Powders by Physical Vapor Deposition
Development of Gas Atomization Processes for Production of Passivated Calcium Powders
Electric Current Effects in Spark Plasma Sintering: Heating Pathway Analysis
Electrochemical Deposition Synthesis of CeO2 Nanoarrays
High Temperature Corrosion and Irradiation Behavior of Silicon Carbide and Nanostructured Ferritic Alloy Composites
Introductory Comments: Powder Materials for Energy Applications
Mechanical Activation Enhanced Solid-state Synthesis of NaCrO2 Cathode Material for Na-ion Batteries
Oxidation Behaviors of Matrix-grade Graphite in Water Vapor Ingress Accidents for High Temperature Gas-cooled Reactors
Powder Characteristics of Perovskite Anodes on the Electrochemical Performance of Solid Oxide Fuel Cell: A Perspective
Powder to Energy Application
Simulation of C-SiOC Coatings on Yttria Stabilized Zirconia Microspheres in a Fluidized Bed Coater Based on Multiphase Flow with Interface Exchange
Structural Evolution and Electrical Conductivity of Ti3C2-SiOC Systems
Synthesis of Chicken Feather Fiber Bio-waste Derived Sustainable Nitrogen Doped-carbon Material
Utilizing Solid-state Grain Alignment to Bias Abnormal Grain Growth in Strategically Designed Alnico Alloys
Wear Resistant Powder Materials for Energy Applications

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