An investigation on the effects of nanoplastic particles on nanoporous graphene membrane desalination
In this paper, we investigate the potential issues low dimensional carbon material desalination membranes may encounter when nanoplastics are present in the systems. This study is performed via molecular dynamics simulations on desalination systems which comprise the nanoporous graphene membrane. It...
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sg-ntu-dr.10356-1542422021-12-16T05:28:23Z An investigation on the effects of nanoplastic particles on nanoporous graphene membrane desalination Toh, William Ang, Elisa Y. M. Ng, Teng Yong Lin, Rongming Liu, Zishun School of Mechanical and Aerospace Engineering Engineering::Mechanical engineering Nanoplastics Graphene In this paper, we investigate the potential issues low dimensional carbon material desalination membranes may encounter when nanoplastics are present in the systems. This study is performed via molecular dynamics simulations on desalination systems which comprise the nanoporous graphene membrane. It was found that there is high affinity between nanoplastics and graphene, indicating high tendency of the nanoplastic particles to foul the membranes. Furthermore, it was observed that the presence of nanoplastic molecules reduce the salt rejection rate of the membranes. Through this work, we hope to highlight the potential issues caused by the increasing prevalence of nanoplastics in the environment on carbon based desalination membranes, so as to aid the future design of these high performance membranes. Published version 2021-12-16T05:28:23Z 2021-12-16T05:28:23Z 2020 Journal Article Toh, W., Ang, E. Y. M., Ng, T. Y., Lin, R. & Liu, Z. (2020). An investigation on the effects of nanoplastic particles on nanoporous graphene membrane desalination. Desalination, 496, 114765-. https://dx.doi.org/10.1016/j.desal.2020.114765 0011-9164 https://hdl.handle.net/10356/154242 10.1016/j.desal.2020.114765 2-s2.0-85091381111 496 114765 en Desalination © 2020 Elsevier B.V. All rights reserved. |
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Engineering::Mechanical engineering Nanoplastics Graphene Toh, William Ang, Elisa Y. M. Ng, Teng Yong Lin, Rongming Liu, Zishun An investigation on the effects of nanoplastic particles on nanoporous graphene membrane desalination |
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In this paper, we investigate the potential issues low dimensional carbon material desalination membranes may encounter when nanoplastics are present in the systems. This study is performed via molecular dynamics simulations on desalination systems which comprise the nanoporous graphene membrane. It was found that there is high affinity between nanoplastics and graphene, indicating high tendency of the nanoplastic particles to foul the membranes. Furthermore, it was observed that the presence of nanoplastic molecules reduce the salt rejection rate of the membranes. Through this work, we hope to highlight the potential issues caused by the increasing prevalence of nanoplastics in the environment on carbon based desalination membranes, so as to aid the future design of these high performance membranes. |
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School of Mechanical and Aerospace Engineering |
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School of Mechanical and Aerospace Engineering Toh, William Ang, Elisa Y. M. Ng, Teng Yong Lin, Rongming Liu, Zishun |
format |
Article |
author |
Toh, William Ang, Elisa Y. M. Ng, Teng Yong Lin, Rongming Liu, Zishun |
author_sort |
Toh, William |
title |
An investigation on the effects of nanoplastic particles on nanoporous graphene membrane desalination |
title_short |
An investigation on the effects of nanoplastic particles on nanoporous graphene membrane desalination |
title_full |
An investigation on the effects of nanoplastic particles on nanoporous graphene membrane desalination |
title_fullStr |
An investigation on the effects of nanoplastic particles on nanoporous graphene membrane desalination |
title_full_unstemmed |
An investigation on the effects of nanoplastic particles on nanoporous graphene membrane desalination |
title_sort |
investigation on the effects of nanoplastic particles on nanoporous graphene membrane desalination |
publishDate |
2021 |
url |
https://hdl.handle.net/10356/154242 |
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1720447081757278208 |