Experimental study of CO2 adsorption on various functional adsorbents

Global warming has been a worldwide concern in the recent years, as human continues to burn fossil fuel for energy. This is the result of high emission of greenhouse gases, especially CO2. As the increases of the CO2 emission, more methods of 5CO2 capture technologies are required to be investigate...

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Main Author: Tan, Boon Chiong
Other Authors: Anutosh Chakraborty
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2020
Subjects:
Online Access:https://hdl.handle.net/10356/141199
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-1411992023-03-04T19:42:19Z Experimental study of CO2 adsorption on various functional adsorbents Tan, Boon Chiong Anutosh Chakraborty School of Mechanical and Aerospace Engineering AChakraborty@ntu.edu.sg Engineering::Mechanical engineering Global warming has been a worldwide concern in the recent years, as human continues to burn fossil fuel for energy. This is the result of high emission of greenhouse gases, especially CO2. As the increases of the CO2 emission, more methods of 5CO2 capture technologies are required to be investigate and work on it. Therefore, methods like post-combustion, oxyfuel and pre-combustion are commonly used for the CO2 capture technologies. For the experimental purpose, we focus mostly on the post-combustion. The post-combustion is split into two different part of the capture technologies mainly the chemical and physical absorption. In this report, the CO2 adsorption on various porous materials such as metal organic frameworks (MOFs), zeolite and their composites are studied. The CO2 uptakes are measured at 298 K and pressures ranging from 1 bar to 7 bar. Hence the volumetric methodology is employed. The surface characteristics of these functional adsorbents are also evaluated by scanning electron micrography (SEM) and N2 adsorption analysis. Various isotherms and kinetics models are studied in this report with uncertainty analysis. Both volumetric and gravimetric uptakes are measured under low pressure conditions. It is found that MOFs are promising for CO2 storage under ambient temperature and low-pressure conditions. However, a detailed analysis is required. Bachelor of Engineering (Mechanical Engineering) 2020-06-05T01:35:40Z 2020-06-05T01:35:40Z 2020 Final Year Project (FYP) https://hdl.handle.net/10356/141199 en B249 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::Mechanical engineering
spellingShingle Engineering::Mechanical engineering
Tan, Boon Chiong
Experimental study of CO2 adsorption on various functional adsorbents
description Global warming has been a worldwide concern in the recent years, as human continues to burn fossil fuel for energy. This is the result of high emission of greenhouse gases, especially CO2. As the increases of the CO2 emission, more methods of 5CO2 capture technologies are required to be investigate and work on it. Therefore, methods like post-combustion, oxyfuel and pre-combustion are commonly used for the CO2 capture technologies. For the experimental purpose, we focus mostly on the post-combustion. The post-combustion is split into two different part of the capture technologies mainly the chemical and physical absorption. In this report, the CO2 adsorption on various porous materials such as metal organic frameworks (MOFs), zeolite and their composites are studied. The CO2 uptakes are measured at 298 K and pressures ranging from 1 bar to 7 bar. Hence the volumetric methodology is employed. The surface characteristics of these functional adsorbents are also evaluated by scanning electron micrography (SEM) and N2 adsorption analysis. Various isotherms and kinetics models are studied in this report with uncertainty analysis. Both volumetric and gravimetric uptakes are measured under low pressure conditions. It is found that MOFs are promising for CO2 storage under ambient temperature and low-pressure conditions. However, a detailed analysis is required.
author2 Anutosh Chakraborty
author_facet Anutosh Chakraborty
Tan, Boon Chiong
format Final Year Project
author Tan, Boon Chiong
author_sort Tan, Boon Chiong
title Experimental study of CO2 adsorption on various functional adsorbents
title_short Experimental study of CO2 adsorption on various functional adsorbents
title_full Experimental study of CO2 adsorption on various functional adsorbents
title_fullStr Experimental study of CO2 adsorption on various functional adsorbents
title_full_unstemmed Experimental study of CO2 adsorption on various functional adsorbents
title_sort experimental study of co2 adsorption on various functional adsorbents
publisher Nanyang Technological University
publishDate 2020
url https://hdl.handle.net/10356/141199
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