Comparison of sintering condition and radio frequency plasma discharge on the conversion of coal/biomass fly ash into high-temperature thermal energy storage material

The management of solid waste has become increasingly challenging with the accelerated growth in residency in Singapore. Alternative utilization, such as high temperature thermal energy storage material, valorizes the waste to the status of a new resource, thereby reducing the need of virgin materia...

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Main Authors: Lin, Yvonne Wenlin, Li, Tao, Akasyah, Luqman, Lim, Mark Jian Wei, Xu, Haoxin, Py, Xavier, Rawat, Rajdeep Singh, Romagnoli, Alessandro
Other Authors: School of Mechanical and Aerospace Engineering
Format: Article
Language:English
Published: 2021
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Online Access:https://hdl.handle.net/10356/151536
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1515362021-06-29T00:46:53Z Comparison of sintering condition and radio frequency plasma discharge on the conversion of coal/biomass fly ash into high-temperature thermal energy storage material Lin, Yvonne Wenlin Li, Tao Akasyah, Luqman Lim, Mark Jian Wei Xu, Haoxin Py, Xavier Rawat, Rajdeep Singh Romagnoli, Alessandro School of Mechanical and Aerospace Engineering Energy Research Institute @ NTU (ERI@N) Singapore Institute of Manufacturing Technology Engineering::Mechanical engineering Thermal Energy Storage High Temperature Sensible Heat Storage The management of solid waste has become increasingly challenging with the accelerated growth in residency in Singapore. Alternative utilization, such as high temperature thermal energy storage material, valorizes the waste to the status of a new resource, thereby reducing the need of virgin material and ensuring sustainability. In Singapore, coal is co-fired with biomass and the coal/biomass fly ash is partially reused and the rest is landfilled. This research evaluated two different fabrication routes: conventional sintering and plasma processing. The novelty of this study is that unlike most studies whereby plasma arc is used to melt the ash at high temperature, in this study, a 13.56 MHz radio frequency plasma is used to control discharge parameters through in-situ diagnostics of active species density and temperatures. This allows for high throughput and uniform processing. An optimized plasma process could potentially reduce the total number of processing phases, with a lower energy budget for processing, while increasing the controllability of the processes to achieve the desired material properties. The chemical composition, and the thermal properties such as specific heat capacity, energy density and thermal conductivity of the ceramics made from coal/biomass fly ash were evaluated. Experimental evaluation shows that the radio frequency plasma processed coal/biomass fly ash samples were found to improve the thermal properties of coal/biomass fly ash in general. It is hypothesized that the mechanism of improvement from radio frequency plasma was due to the incorporation of hydrogen into the material and the conversion of mineralogical composition (i.e. quartz) which gave rise to the better performance. In conclusion, this study has shown the potential of using coal/biomass fly ash as thermal energy storage material through innovative process such as radio frequency plasma discharge. 2021-06-28T03:14:23Z 2021-06-28T03:14:23Z 2019 Journal Article Lin, Y. W., Li, T., Akasyah, L., Lim, M. J. W., Xu, H., Py, X., Rawat, R. S. & Romagnoli, A. (2019). Comparison of sintering condition and radio frequency plasma discharge on the conversion of coal/biomass fly ash into high-temperature thermal energy storage material. Energy Conversion and Management, 192, 180-187. https://dx.doi.org/10.1016/j.enconman.2019.03.076 0196-8904 0000-0003-1271-5479 https://hdl.handle.net/10356/151536 10.1016/j.enconman.2019.03.076 2-s2.0-85064434545 192 180 187 en Energy Conversion and Management © 2019 Elsevier Ltd. All rights reserved.
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Mechanical engineering
Thermal Energy Storage
High Temperature Sensible Heat Storage
spellingShingle Engineering::Mechanical engineering
Thermal Energy Storage
High Temperature Sensible Heat Storage
Lin, Yvonne Wenlin
Li, Tao
Akasyah, Luqman
Lim, Mark Jian Wei
Xu, Haoxin
Py, Xavier
Rawat, Rajdeep Singh
Romagnoli, Alessandro
Comparison of sintering condition and radio frequency plasma discharge on the conversion of coal/biomass fly ash into high-temperature thermal energy storage material
description The management of solid waste has become increasingly challenging with the accelerated growth in residency in Singapore. Alternative utilization, such as high temperature thermal energy storage material, valorizes the waste to the status of a new resource, thereby reducing the need of virgin material and ensuring sustainability. In Singapore, coal is co-fired with biomass and the coal/biomass fly ash is partially reused and the rest is landfilled. This research evaluated two different fabrication routes: conventional sintering and plasma processing. The novelty of this study is that unlike most studies whereby plasma arc is used to melt the ash at high temperature, in this study, a 13.56 MHz radio frequency plasma is used to control discharge parameters through in-situ diagnostics of active species density and temperatures. This allows for high throughput and uniform processing. An optimized plasma process could potentially reduce the total number of processing phases, with a lower energy budget for processing, while increasing the controllability of the processes to achieve the desired material properties. The chemical composition, and the thermal properties such as specific heat capacity, energy density and thermal conductivity of the ceramics made from coal/biomass fly ash were evaluated. Experimental evaluation shows that the radio frequency plasma processed coal/biomass fly ash samples were found to improve the thermal properties of coal/biomass fly ash in general. It is hypothesized that the mechanism of improvement from radio frequency plasma was due to the incorporation of hydrogen into the material and the conversion of mineralogical composition (i.e. quartz) which gave rise to the better performance. In conclusion, this study has shown the potential of using coal/biomass fly ash as thermal energy storage material through innovative process such as radio frequency plasma discharge.
author2 School of Mechanical and Aerospace Engineering
author_facet School of Mechanical and Aerospace Engineering
Lin, Yvonne Wenlin
Li, Tao
Akasyah, Luqman
Lim, Mark Jian Wei
Xu, Haoxin
Py, Xavier
Rawat, Rajdeep Singh
Romagnoli, Alessandro
format Article
author Lin, Yvonne Wenlin
Li, Tao
Akasyah, Luqman
Lim, Mark Jian Wei
Xu, Haoxin
Py, Xavier
Rawat, Rajdeep Singh
Romagnoli, Alessandro
author_sort Lin, Yvonne Wenlin
title Comparison of sintering condition and radio frequency plasma discharge on the conversion of coal/biomass fly ash into high-temperature thermal energy storage material
title_short Comparison of sintering condition and radio frequency plasma discharge on the conversion of coal/biomass fly ash into high-temperature thermal energy storage material
title_full Comparison of sintering condition and radio frequency plasma discharge on the conversion of coal/biomass fly ash into high-temperature thermal energy storage material
title_fullStr Comparison of sintering condition and radio frequency plasma discharge on the conversion of coal/biomass fly ash into high-temperature thermal energy storage material
title_full_unstemmed Comparison of sintering condition and radio frequency plasma discharge on the conversion of coal/biomass fly ash into high-temperature thermal energy storage material
title_sort comparison of sintering condition and radio frequency plasma discharge on the conversion of coal/biomass fly ash into high-temperature thermal energy storage material
publishDate 2021
url https://hdl.handle.net/10356/151536
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