Experimental investigationof water uptakes on modified AQSOA type zeolites under static and dynamic conditions

Global warming has become a serious threat due to the use of CFC and HCFC assisted refrigerants and large emission of CO2 into the atmosphere. Therefore, it is important to utilize renewable energy driven adsorption cooling system that reduces the electricity consumption and mitigates the global wa...

Full description

Saved in:
Bibliographic Details
Main Author: Shwun, Lai Win
Other Authors: Anutosh Chakraborty
Format: Final Year Project
Language:English
Published: 2018
Subjects:
Online Access:http://hdl.handle.net/10356/76296
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Nanyang Technological University
Language: English
id sg-ntu-dr.10356-76296
record_format dspace
spelling sg-ntu-dr.10356-762962023-03-04T19:09:04Z Experimental investigationof water uptakes on modified AQSOA type zeolites under static and dynamic conditions Shwun, Lai Win Anutosh Chakraborty School of Mechanical and Aerospace Engineering DRNTU::Engineering::Mechanical engineering Global warming has become a serious threat due to the use of CFC and HCFC assisted refrigerants and large emission of CO2 into the atmosphere. Therefore, it is important to utilize renewable energy driven adsorption cooling system that reduces the electricity consumption and mitigates the global warning effects. Hence, researches on adsorbent materials are carried on to improve the performances of absorption chiller system which may replace the conventional vapour compression system with the reduction of electricity consumption. However, the adsorption chiller needs large space due to large quantity of adsorbents required. Therefore, the improvement of water adsorption performance is essential to reduce the size of the chiller. In this report, different % weights of CaCl2 are impregnated into AQSOA-Z05 zeolite to enhance the water adsorption capacity. At first, nitrogen adsorption is conducted to measure the porous characteristics such as BET surface area, pore volume and pore size distributions. Later, the modified adsorbents undergo the gravimetric water adsorption experiment at the temperature of 25°C, 35°C, 45°C and 60°C with the relative pressures varying from Henry’s region up to the saturated pressure under static and dynamic conditions. Finally, Charkraborty-Sun adsorption isotherm model is fitted with experimentally measured water isotherms data to understand the interaction between the modified adsorbent and the water. The kinetics model based on Langmuir analogy is used to capture the kinetics parameters of modified zeolite-water system. Hence, the kinetics rates are found higher than the parent AQSOA-Z05 zeolite and the uptake-offtake difference per adsorption-cooling update is also found higher. Thus, impregnation CaCl2 in AQSOA is a potential solution for the improvement of adsorption chiller performances. Bachelor of Engineering (Mechanical Engineering) 2018-12-17T15:15:08Z 2018-12-17T15:15:08Z 2018 Final Year Project (FYP) http://hdl.handle.net/10356/76296 en Nanyang Technological University 58 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Mechanical engineering
spellingShingle DRNTU::Engineering::Mechanical engineering
Shwun, Lai Win
Experimental investigationof water uptakes on modified AQSOA type zeolites under static and dynamic conditions
description Global warming has become a serious threat due to the use of CFC and HCFC assisted refrigerants and large emission of CO2 into the atmosphere. Therefore, it is important to utilize renewable energy driven adsorption cooling system that reduces the electricity consumption and mitigates the global warning effects. Hence, researches on adsorbent materials are carried on to improve the performances of absorption chiller system which may replace the conventional vapour compression system with the reduction of electricity consumption. However, the adsorption chiller needs large space due to large quantity of adsorbents required. Therefore, the improvement of water adsorption performance is essential to reduce the size of the chiller. In this report, different % weights of CaCl2 are impregnated into AQSOA-Z05 zeolite to enhance the water adsorption capacity. At first, nitrogen adsorption is conducted to measure the porous characteristics such as BET surface area, pore volume and pore size distributions. Later, the modified adsorbents undergo the gravimetric water adsorption experiment at the temperature of 25°C, 35°C, 45°C and 60°C with the relative pressures varying from Henry’s region up to the saturated pressure under static and dynamic conditions. Finally, Charkraborty-Sun adsorption isotherm model is fitted with experimentally measured water isotherms data to understand the interaction between the modified adsorbent and the water. The kinetics model based on Langmuir analogy is used to capture the kinetics parameters of modified zeolite-water system. Hence, the kinetics rates are found higher than the parent AQSOA-Z05 zeolite and the uptake-offtake difference per adsorption-cooling update is also found higher. Thus, impregnation CaCl2 in AQSOA is a potential solution for the improvement of adsorption chiller performances.
author2 Anutosh Chakraborty
author_facet Anutosh Chakraborty
Shwun, Lai Win
format Final Year Project
author Shwun, Lai Win
author_sort Shwun, Lai Win
title Experimental investigationof water uptakes on modified AQSOA type zeolites under static and dynamic conditions
title_short Experimental investigationof water uptakes on modified AQSOA type zeolites under static and dynamic conditions
title_full Experimental investigationof water uptakes on modified AQSOA type zeolites under static and dynamic conditions
title_fullStr Experimental investigationof water uptakes on modified AQSOA type zeolites under static and dynamic conditions
title_full_unstemmed Experimental investigationof water uptakes on modified AQSOA type zeolites under static and dynamic conditions
title_sort experimental investigationof water uptakes on modified aqsoa type zeolites under static and dynamic conditions
publishDate 2018
url http://hdl.handle.net/10356/76296
_version_ 1759853638379896832