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Meeting 2022 TMS Annual Meeting & Exhibition
Symposium Composites for Energy Applications: Materials for Renewable Energy Applications 2022
Presentation Title D-18: Preparation of Coal Liquefaction Residue/PAN Composite Carbon Nanofibers by Electrostatic Spinning
Author(s) Xiao-Yan Zhang, Tong-Xin Qiao, Peng Li
On-Site Speaker (Planned) Xiao-Yan Zhang
Abstract Scope Preparation of coal liquefaction residue/polyacrylonitrile (PAN) composite carbon nanofibers using extract from coal liquefaction residue (CLRE) and PAN. The structure and morphology of composite carbon nanofibers was analyzed by SEM and FT-IR. Due to the analysis on the properties of composite carbon fibers with different additive amounts, 10% of CLRE in the solution was considered as the optimized additive amounts, as integrated fiber morphology and homogeneous structure. With the increase of the additive amount of CLRE, the spinnability decreases, and reticular and foam-like structures were formed. However, the diameter of the obtained CLRE-PAN composite carbon fibers was smaller. Therefore, the optimization additive amount is 30%, carbonization temperature is 400℃, and fiber diameter ranges from 210 nm to 450 nm. The composite carbon nanofiber has good reversibility in the process of charge and discharge.
Proceedings Inclusion? Planned:
Keywords Electronic Materials, Energy Conversion and Storage, Recycling and Secondary Recovery

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

A Review on Epoxy Filled Metallurgical Dust- phase change materials Systems for Enhanced Thermal Energy Storage
Aperiodic Three-dimensional Tricontinuous Conductor-insulator-conductor Nanocomposite for Use as High Energy Density Nanocapacitor
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D-17: Fabrication of Novel LiCrTiO4-MWCNTS Based Composite Electrodes for Flexible Li Ion Batteries
D-18: Preparation of Coal Liquefaction Residue/PAN Composite Carbon Nanofibers by Electrostatic Spinning
Densification and Microstructure Features of Lithium Hydride Fabrication
Design of Novel Composites by Using Bioplastics and Biomass
Development and Characterization of High Capacity Hydrogen Energy Storage Materials
Development of Hydrogen Storage and Gas Purification Materials for Renewable Energy Applications
Energetics of the Reversible Dehydrogenation of Magnesium Borohydride and Mg(BH4)2-THF Composite to Magnesium Boranes
Eutectic Electrolytes for Lithium Ion Batteries
Genetic Manipulation of M13 Bacteriophage for Enhancing the Efficiency of Virus-inoculated Perovskite Solar Cells with a Certified Efficiency of 22.3%
Nanocomposites for Gel and Solid Polymer Electrolytes in Lithium Batteries
Nanoconfined Metal Hydrides as Solid-State Electrolytes and as Reversible Hydrogen Storage Materials
NOW ON-DEMAND ONLY – D-20: Seebeck Analysis of ALD Synthesized Thermoelectric Thin Films
NOW ON-DEMAND ONLY - Polymer Templating Method for the Formation of Hierarchically Porous Nitrogen-rich Tin-carbon Composite Anodes
Plasmon-initiated Hydrogen Desorption
Spectroscopic Investigation of the Electronic and Excited State Properties of Para-substituted Tetraphenyl Porphyrins and Their Electrochemically Generated Ions
Sulfur-based High Temperature Thermal Energy Storage
System Modeling of Metal Hydrides for Fuel Cell Vehicles

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