Book chapter 1173 views
Mechanical Characterization of Membranes
K. Wang,
A.A. Abdala,
N. Hilal,
M.K. Khraisheh,
Nidal Hilal
Membrane Characterization, Pages: 259 - 306
Swansea University Author: Nidal Hilal
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DOI (Published version): 10.1016/B978-0-444-63776-5.00013-9
Abstract
Most of the reported research dealing with membranes focuses on membrane processing [1,2], surface modification [3,4], and antifouling properties [5,6]. More recently, molecular dynamics simulations of the physical and mechanical properties of nanoporous graphene membrane were conducted [7–11]. Howe...
Published in: | Membrane Characterization |
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ISBN: | 9780444637765 |
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Elsevier
2017
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URI: | https://cronfa.swan.ac.uk/Record/cronfa29496 |
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2018-04-30T14:24:00.1641176 v2 29496 2016-08-08 Mechanical Characterization of Membranes 3acba771241d878c8e35ff464aec0342 Nidal Hilal Nidal Hilal true false 2016-08-08 FGSEN Most of the reported research dealing with membranes focuses on membrane processing [1,2], surface modification [3,4], and antifouling properties [5,6]. More recently, molecular dynamics simulations of the physical and mechanical properties of nanoporous graphene membrane were conducted [7–11]. However, experimental investigations of the mechanical behaviors under complex loading modes with environmental effects for porous membranes are rarely reported. According to Scopus database, the annual publications on desalination and water treatment membranes has grown from 1050 publications in 2004 to nearly 2500 publications in 2014 as shown in Fig. 13.1. On the other hand, the number of annual publications that investigate the mechanical properties of polymeric membranes has increased from 20 publications in 2004 to about 100 publications in 2014. However, these publications still represent less than 5% of the annual publication that deals with polymeric membranes. Book chapter Membrane Characterization 259 306 Elsevier 9780444637765 Composite membranes; Mechanical characterization of membranes; Mechanical properties; Polymeric membranes 31 12 2017 2017-12-31 10.1016/B978-0-444-63776-5.00013-9 COLLEGE NANME Science and Engineering - Faculty COLLEGE CODE FGSEN Swansea University 2018-04-30T14:24:00.1641176 2016-08-08T09:14:41.8385524 Faculty of Science and Engineering School of Engineering and Applied Sciences - Uncategorised K. Wang 1 A.A. Abdala 2 N. Hilal 3 M.K. Khraisheh 4 Nidal Hilal 5 |
title |
Mechanical Characterization of Membranes |
spellingShingle |
Mechanical Characterization of Membranes Nidal Hilal |
title_short |
Mechanical Characterization of Membranes |
title_full |
Mechanical Characterization of Membranes |
title_fullStr |
Mechanical Characterization of Membranes |
title_full_unstemmed |
Mechanical Characterization of Membranes |
title_sort |
Mechanical Characterization of Membranes |
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3acba771241d878c8e35ff464aec0342 |
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3acba771241d878c8e35ff464aec0342_***_Nidal Hilal |
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Nidal Hilal |
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K. Wang A.A. Abdala N. Hilal M.K. Khraisheh Nidal Hilal |
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Membrane Characterization |
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259 |
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Swansea University |
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Elsevier |
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Most of the reported research dealing with membranes focuses on membrane processing [1,2], surface modification [3,4], and antifouling properties [5,6]. More recently, molecular dynamics simulations of the physical and mechanical properties of nanoporous graphene membrane were conducted [7–11]. However, experimental investigations of the mechanical behaviors under complex loading modes with environmental effects for porous membranes are rarely reported. According to Scopus database, the annual publications on desalination and water treatment membranes has grown from 1050 publications in 2004 to nearly 2500 publications in 2014 as shown in Fig. 13.1. On the other hand, the number of annual publications that investigate the mechanical properties of polymeric membranes has increased from 20 publications in 2004 to about 100 publications in 2014. However, these publications still represent less than 5% of the annual publication that deals with polymeric membranes. |
published_date |
2017-12-31T03:35:52Z |
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11.035634 |