Synergistic effect of GO/ZnO loading on the performance of cellulose acetate/chitosan blended reverse osmosis membranes for NOM rejection

Declining freshwater resources along with their pollution are threatening the life existence on earth. To meet the freshwater demand, one of the most appropriate and possible ways which has been adopted all over the world is to reuse wastewater by removing its impurities. Among many water pollutants...

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Main Authors: Rizwana Shami, Aneela Sabir, Sadia Sagar Iqbal, Nafisa Gull, Rubab Zohra, Shahzad Maqsood Khan
Format: Article
Language:English
Published: Elsevier 2023-03-01
Series:Heliyon
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S240584402300943X
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author Rizwana Shami
Aneela Sabir
Sadia Sagar Iqbal
Nafisa Gull
Rubab Zohra
Shahzad Maqsood Khan
author_facet Rizwana Shami
Aneela Sabir
Sadia Sagar Iqbal
Nafisa Gull
Rubab Zohra
Shahzad Maqsood Khan
author_sort Rizwana Shami
collection DOAJ
description Declining freshwater resources along with their pollution are threatening the life existence on earth. To meet the freshwater demand, one of the most appropriate and possible ways which has been adopted all over the world is to reuse wastewater by removing its impurities. Among many water pollutants, natural organic matter (NOM) is found to be responsible as major precursor for the formation of other pollutants. Removal of NOM from wastewater is being done by using membrane filtration systems incorporated with certain nanofillers to increase membranes efficiency and permeability. In this study, novel nanocomposite reverse osmosis (RO) membranes were prepared using cellulose acetate and chitosan in N,N-Dimethyl formamide. Graphene oxide (GO) nanosheets and zinc oxide (ZnO) in different concentration were loaded to modify the membranes for tuning their RO performance. The confirmation of the functional groups is demonstrated by Fourier transform infrared spectroscopy which revealed the specific peaks indicating the formation of the nano-composite membranes. The surface morphology was studied by scanning electronic microscopy which shows a gradual transformation of the membrane surface from voids-free to macro-voids filled surface up to threshold concentration of GO and ZnO. The thermal properties of GO based membranes were analyzed using thermogravimetric analysis and differential scanning calorimetry. The uniform interaction of the GO and ZnO with polymers induced the remarkable thermal properties of the synthesized membranes. Permeate flux and contact angle measurements were considered to estimate their water content (96%) capacity and NOM rejection (96%) using 0.1 ppm humic acid solution. The permeate flux, NOM rejection and the water content changed directly with GO and inversely with ZnO wt% in the membranes up to GO5 (GO:0.14: ZnO:0.03) whereas the contact angle exhibited the inverse relationship with GO and ZnO concentration in casting solution of the synthesized membranes. Hence it can be concluded that prepared RO membranes are suitable for NOM rejection and recommended for water treatment.
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spelling doaj.art-917ebca75db340b5a013463f0fb308752023-04-05T08:15:57ZengElsevierHeliyon2405-84402023-03-0193e13736Synergistic effect of GO/ZnO loading on the performance of cellulose acetate/chitosan blended reverse osmosis membranes for NOM rejectionRizwana Shami0Aneela Sabir1Sadia Sagar Iqbal2Nafisa Gull3Rubab Zohra4Shahzad Maqsood Khan5Institute of Polymer and Textile Engineering, University of the Punjab, Lahore, 54590, Pakistan; Department of Chemistry, Forman Christian College University, Lahore, Pakistan; Corresponding author. Institute of Polymer and Textile Engineering, University of the Punjab, Lahore, 54590, Pakistan.Institute of Polymer and Textile Engineering, University of the Punjab, Lahore, 54590, Pakistan; Corresponding author.Department of Physics, Fatima Jinnah Women University, Rawalpindi, PakistanInstitute of Polymer and Textile Engineering, University of the Punjab, Lahore, 54590, Pakistan; Corresponding author.Department of Chemistry, Forman Christian College University, Lahore, PakistanInstitute of Polymer and Textile Engineering, University of the Punjab, Lahore, 54590, PakistanDeclining freshwater resources along with their pollution are threatening the life existence on earth. To meet the freshwater demand, one of the most appropriate and possible ways which has been adopted all over the world is to reuse wastewater by removing its impurities. Among many water pollutants, natural organic matter (NOM) is found to be responsible as major precursor for the formation of other pollutants. Removal of NOM from wastewater is being done by using membrane filtration systems incorporated with certain nanofillers to increase membranes efficiency and permeability. In this study, novel nanocomposite reverse osmosis (RO) membranes were prepared using cellulose acetate and chitosan in N,N-Dimethyl formamide. Graphene oxide (GO) nanosheets and zinc oxide (ZnO) in different concentration were loaded to modify the membranes for tuning their RO performance. The confirmation of the functional groups is demonstrated by Fourier transform infrared spectroscopy which revealed the specific peaks indicating the formation of the nano-composite membranes. The surface morphology was studied by scanning electronic microscopy which shows a gradual transformation of the membrane surface from voids-free to macro-voids filled surface up to threshold concentration of GO and ZnO. The thermal properties of GO based membranes were analyzed using thermogravimetric analysis and differential scanning calorimetry. The uniform interaction of the GO and ZnO with polymers induced the remarkable thermal properties of the synthesized membranes. Permeate flux and contact angle measurements were considered to estimate their water content (96%) capacity and NOM rejection (96%) using 0.1 ppm humic acid solution. The permeate flux, NOM rejection and the water content changed directly with GO and inversely with ZnO wt% in the membranes up to GO5 (GO:0.14: ZnO:0.03) whereas the contact angle exhibited the inverse relationship with GO and ZnO concentration in casting solution of the synthesized membranes. Hence it can be concluded that prepared RO membranes are suitable for NOM rejection and recommended for water treatment.http://www.sciencedirect.com/science/article/pii/S240584402300943XCellulose acetateChitosanRO membranesGraphene oxideZinc oxide
spellingShingle Rizwana Shami
Aneela Sabir
Sadia Sagar Iqbal
Nafisa Gull
Rubab Zohra
Shahzad Maqsood Khan
Synergistic effect of GO/ZnO loading on the performance of cellulose acetate/chitosan blended reverse osmosis membranes for NOM rejection
Heliyon
Cellulose acetate
Chitosan
RO membranes
Graphene oxide
Zinc oxide
title Synergistic effect of GO/ZnO loading on the performance of cellulose acetate/chitosan blended reverse osmosis membranes for NOM rejection
title_full Synergistic effect of GO/ZnO loading on the performance of cellulose acetate/chitosan blended reverse osmosis membranes for NOM rejection
title_fullStr Synergistic effect of GO/ZnO loading on the performance of cellulose acetate/chitosan blended reverse osmosis membranes for NOM rejection
title_full_unstemmed Synergistic effect of GO/ZnO loading on the performance of cellulose acetate/chitosan blended reverse osmosis membranes for NOM rejection
title_short Synergistic effect of GO/ZnO loading on the performance of cellulose acetate/chitosan blended reverse osmosis membranes for NOM rejection
title_sort synergistic effect of go zno loading on the performance of cellulose acetate chitosan blended reverse osmosis membranes for nom rejection
topic Cellulose acetate
Chitosan
RO membranes
Graphene oxide
Zinc oxide
url http://www.sciencedirect.com/science/article/pii/S240584402300943X
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