Aquaporin based biomimetic membrane for water reuse and desalination

Water resources have become a scarcity in the world. As a result of that, reverse osmosis (RO) membrane based desalination has experienced a remarkable growth. However, current existing RO membranes are still less permeable. After millions of years of evolution, aquaporins, the large family of wa...

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Main Author: Zhao, Yang
Other Authors: Wang, Rong
Format: Theses and Dissertations
Language:English
Published: 2014
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Online Access:http://hdl.handle.net/10356/61526
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-615262023-03-03T19:07:46Z Aquaporin based biomimetic membrane for water reuse and desalination Zhao, Yang Wang, Rong School of Civil and Environmental Engineering Singapore Membrane Technology Centre DRNTU::Engineering::Environmental engineering::Water treatment Water resources have become a scarcity in the world. As a result of that, reverse osmosis (RO) membrane based desalination has experienced a remarkable growth. However, current existing RO membranes are still less permeable. After millions of years of evolution, aquaporins, the large family of water transport proteins in cell membranes, are nature’s own water channels with high water permeability and excellent salt rejection combined together. It is estimated that an aquaporin-based biomimetic membrane (ABM) can potentially achieve a water permeability two orders of magnitude higher compared to existing commercial RO membranes. So far, several conceptual designs for producing the AqpZ based biomimetic membrane have been proposed. Nevertheless, in terms of producing the large area defects-free biomimetic membrane, the successes of those concepts have not been reported yet. The target of this study is, mainly, the synthesizing of the first generation ABM. Three parts of work are presented in three chapters. First of all, the effects of proteoliposomes compositions on separation properties of proteoliposomes are systematically studied. Secondly, the first generation ABM, with a defect-free and large membrane area, is successfully prepared by a combined proteoliposome and interfacial polymerization method. Last, and not least, a further systematic study of these ABM was carried out, with ABM performance suitable for both forward osmosis (FO) and High-pressure RO. Doctor of Philosophy (CEE) 2014-06-11T04:24:02Z 2014-06-11T04:24:02Z 2014 2014 Thesis Zhao, Y. (2014). Aquaporin based biomimetic membrane for water reuse and desalination. Doctoral thesis, Nanyang Technological University, Singapore. http://hdl.handle.net/10356/61526 en 130 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::Environmental engineering::Water treatment
spellingShingle DRNTU::Engineering::Environmental engineering::Water treatment
Zhao, Yang
Aquaporin based biomimetic membrane for water reuse and desalination
description Water resources have become a scarcity in the world. As a result of that, reverse osmosis (RO) membrane based desalination has experienced a remarkable growth. However, current existing RO membranes are still less permeable. After millions of years of evolution, aquaporins, the large family of water transport proteins in cell membranes, are nature’s own water channels with high water permeability and excellent salt rejection combined together. It is estimated that an aquaporin-based biomimetic membrane (ABM) can potentially achieve a water permeability two orders of magnitude higher compared to existing commercial RO membranes. So far, several conceptual designs for producing the AqpZ based biomimetic membrane have been proposed. Nevertheless, in terms of producing the large area defects-free biomimetic membrane, the successes of those concepts have not been reported yet. The target of this study is, mainly, the synthesizing of the first generation ABM. Three parts of work are presented in three chapters. First of all, the effects of proteoliposomes compositions on separation properties of proteoliposomes are systematically studied. Secondly, the first generation ABM, with a defect-free and large membrane area, is successfully prepared by a combined proteoliposome and interfacial polymerization method. Last, and not least, a further systematic study of these ABM was carried out, with ABM performance suitable for both forward osmosis (FO) and High-pressure RO.
author2 Wang, Rong
author_facet Wang, Rong
Zhao, Yang
format Theses and Dissertations
author Zhao, Yang
author_sort Zhao, Yang
title Aquaporin based biomimetic membrane for water reuse and desalination
title_short Aquaporin based biomimetic membrane for water reuse and desalination
title_full Aquaporin based biomimetic membrane for water reuse and desalination
title_fullStr Aquaporin based biomimetic membrane for water reuse and desalination
title_full_unstemmed Aquaporin based biomimetic membrane for water reuse and desalination
title_sort aquaporin based biomimetic membrane for water reuse and desalination
publishDate 2014
url http://hdl.handle.net/10356/61526
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