Membranes used for generating oxygen-enriched gas and carbon dioxide separation during waste-to-energy (WTE) conversion

The challenges of sustainable waste management and greenhouse gas emissions have led to the exploration of membrane technology as a viable solution for generating oxygen-enriched gas (OEG) and separating carbon dioxide in waste-to-energy (WTE) conversion processes. While previous research has shown...

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Main Author: Lin, YangLei
Other Authors: Wang Rong
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2023
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Online Access:https://hdl.handle.net/10356/168214
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spelling sg-ntu-dr.10356-1682142023-06-09T15:34:58Z Membranes used for generating oxygen-enriched gas and carbon dioxide separation during waste-to-energy (WTE) conversion Lin, YangLei Wang Rong School of Civil and Environmental Engineering Singapore Membrane Technology Centre RWang@ntu.edu.sg Engineering::Environmental engineering The challenges of sustainable waste management and greenhouse gas emissions have led to the exploration of membrane technology as a viable solution for generating oxygen-enriched gas (OEG) and separating carbon dioxide in waste-to-energy (WTE) conversion processes. While previous research has shown the potential of membrane technology in various industrial processes, its application in WTE conversion is still limited due to the permeability-selectivity trade-off. This study aims to evaluate the performance of polyethersulfone (PES) hollow fibre membrane with polydimethylsiloxane (PDMS) coating and Matrimid hollow fibre membrane for possible application in WTE technology. The results show that membrane-based OEG production and carbon-capturing processes in WTE plants are technically feasible and highly competitive. Lab-scale and scaled-up efficiency evaluations of PES hollow fibre membrane with PDMS coating, in ½ inch and 4-inch modules, achieved oxygen purity of approximately 35% and an OEG flow rate of approximately 25 L/min. However, the PES hollow fibre membrane exhibited limited to no selectivity for CO2/N2 separation. In contrast, the use of commercially established Matrimid hollow fibre membranes in small-scale testing proved to be very effective in achieving excellent CO2/N2 separation results. Bachelor of Engineering (Environmental Engineering) 2023-06-08T13:05:34Z 2023-06-08T13:05:34Z 2022 Final Year Project (FYP) Lin, Y. (2022). Membranes used for generating oxygen-enriched gas and carbon dioxide separation during waste-to-energy (WTE) conversion. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/168214 https://hdl.handle.net/10356/168214 en EN-22 application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Environmental engineering
spellingShingle Engineering::Environmental engineering
Lin, YangLei
Membranes used for generating oxygen-enriched gas and carbon dioxide separation during waste-to-energy (WTE) conversion
description The challenges of sustainable waste management and greenhouse gas emissions have led to the exploration of membrane technology as a viable solution for generating oxygen-enriched gas (OEG) and separating carbon dioxide in waste-to-energy (WTE) conversion processes. While previous research has shown the potential of membrane technology in various industrial processes, its application in WTE conversion is still limited due to the permeability-selectivity trade-off. This study aims to evaluate the performance of polyethersulfone (PES) hollow fibre membrane with polydimethylsiloxane (PDMS) coating and Matrimid hollow fibre membrane for possible application in WTE technology. The results show that membrane-based OEG production and carbon-capturing processes in WTE plants are technically feasible and highly competitive. Lab-scale and scaled-up efficiency evaluations of PES hollow fibre membrane with PDMS coating, in ½ inch and 4-inch modules, achieved oxygen purity of approximately 35% and an OEG flow rate of approximately 25 L/min. However, the PES hollow fibre membrane exhibited limited to no selectivity for CO2/N2 separation. In contrast, the use of commercially established Matrimid hollow fibre membranes in small-scale testing proved to be very effective in achieving excellent CO2/N2 separation results.
author2 Wang Rong
author_facet Wang Rong
Lin, YangLei
format Final Year Project
author Lin, YangLei
author_sort Lin, YangLei
title Membranes used for generating oxygen-enriched gas and carbon dioxide separation during waste-to-energy (WTE) conversion
title_short Membranes used for generating oxygen-enriched gas and carbon dioxide separation during waste-to-energy (WTE) conversion
title_full Membranes used for generating oxygen-enriched gas and carbon dioxide separation during waste-to-energy (WTE) conversion
title_fullStr Membranes used for generating oxygen-enriched gas and carbon dioxide separation during waste-to-energy (WTE) conversion
title_full_unstemmed Membranes used for generating oxygen-enriched gas and carbon dioxide separation during waste-to-energy (WTE) conversion
title_sort membranes used for generating oxygen-enriched gas and carbon dioxide separation during waste-to-energy (wte) conversion
publisher Nanyang Technological University
publishDate 2023
url https://hdl.handle.net/10356/168214
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