Embedding neat and carboxylated nanodiamonds into polypropylene membranes to enhance antifouling properties

The aim of the present work is to enhance the antifouling properties of polypropylene (PP) membrane based on hydrophilicity improvement. Different contents of neat and modified nanodiamond (0.25, 0.50, 0.75 and 1.00 wt.%) were embedded into PP membranes. Nanodiamond nanoparticles were carboxylated b...

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Main Authors: Shahab Hoseinpour, Yoones Jafarzadeh, Reza Yegani, Sepideh Masoumi
Format: Article
Language:English
Published: Iran Polymer and Petrochemical Institute 2019-01-01
Series:Polyolefins Journal
Subjects:
MBR
Online Access:http://poj.ippi.ac.ir/article_1589_208209cf376abe24ea549594a14be947.pdf
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spelling doaj-bab6b4b9498945d88f90cf753bd0f1392020-11-25T01:18:00ZengIran Polymer and Petrochemical InstitutePolyolefins Journal2322-22122345-68682019-01-0161637410.22063/poj.2018.2264.11201589Embedding neat and carboxylated nanodiamonds into polypropylene membranes to enhance antifouling propertiesShahab Hoseinpour0Yoones Jafarzadeh1Reza Yegani2Sepideh Masoumi3Faculty of Chemical Engineering, Sahand University of Technology, Tabriz, Iran|Membrane Technology Research Center, Sahand University of Technology, Tabriz, IranFaculty of Chemical Engineering, Sahand University of Technology, Tabriz, Iran|Membrane Technology Research Center, Sahand University of Technology, Tabriz, IranFaculty of Chemical Engineering, Sahand University of Technology, Tabriz, Iran|Membrane Technology Research Center, Sahand University of Technology, Tabriz, IranMembrane Technology Research Center, Sahand University of Technology, Tabriz, IranThe aim of the present work is to enhance the antifouling properties of polypropylene (PP) membrane based on hydrophilicity improvement. Different contents of neat and modified nanodiamond (0.25, 0.50, 0.75 and 1.00 wt.%) were embedded into PP membranes. Nanodiamond nanoparticles were carboxylated by heat treatment method and the presence of carboxyl functional groups on the surface of nanoparticles was confirmed by FTIR analysis. Membranes were then characterized by FESEM, contact angle and tensile strength tests. At the same content of nanoparticles, hydrophilicity, pure water flux and tensile strength of PP/ND-COOH membranes were more than those of PP/ND membranes. Membranes embedded with 0.75 wt. % of neat and modified nanoparticles were used in a submerged membrane bioreactor (SMBR) system along with neat PP membrane. The results showed that critical flux values for neat PP, PP/ND and PP/ND-COOH membranes were 7, 18 and 22 L/(m2.h), respectively. Analysis of fouling mechanisms revealed that antifouling properties of 0.75 wt. % PP/ND-COOH membrane were higher than those of other two ones so that irreversible fouling ratio decreased from 88.9% for neat PP to 47.8% for PP/ND-COOH membrane.http://poj.ippi.ac.ir/article_1589_208209cf376abe24ea549594a14be947.pdfpolypropylenenanodiamondmembraneMBRfouling
collection DOAJ
language English
format Article
sources DOAJ
author Shahab Hoseinpour
Yoones Jafarzadeh
Reza Yegani
Sepideh Masoumi
spellingShingle Shahab Hoseinpour
Yoones Jafarzadeh
Reza Yegani
Sepideh Masoumi
Embedding neat and carboxylated nanodiamonds into polypropylene membranes to enhance antifouling properties
Polyolefins Journal
polypropylene
nanodiamond
membrane
MBR
fouling
author_facet Shahab Hoseinpour
Yoones Jafarzadeh
Reza Yegani
Sepideh Masoumi
author_sort Shahab Hoseinpour
title Embedding neat and carboxylated nanodiamonds into polypropylene membranes to enhance antifouling properties
title_short Embedding neat and carboxylated nanodiamonds into polypropylene membranes to enhance antifouling properties
title_full Embedding neat and carboxylated nanodiamonds into polypropylene membranes to enhance antifouling properties
title_fullStr Embedding neat and carboxylated nanodiamonds into polypropylene membranes to enhance antifouling properties
title_full_unstemmed Embedding neat and carboxylated nanodiamonds into polypropylene membranes to enhance antifouling properties
title_sort embedding neat and carboxylated nanodiamonds into polypropylene membranes to enhance antifouling properties
publisher Iran Polymer and Petrochemical Institute
series Polyolefins Journal
issn 2322-2212
2345-6868
publishDate 2019-01-01
description The aim of the present work is to enhance the antifouling properties of polypropylene (PP) membrane based on hydrophilicity improvement. Different contents of neat and modified nanodiamond (0.25, 0.50, 0.75 and 1.00 wt.%) were embedded into PP membranes. Nanodiamond nanoparticles were carboxylated by heat treatment method and the presence of carboxyl functional groups on the surface of nanoparticles was confirmed by FTIR analysis. Membranes were then characterized by FESEM, contact angle and tensile strength tests. At the same content of nanoparticles, hydrophilicity, pure water flux and tensile strength of PP/ND-COOH membranes were more than those of PP/ND membranes. Membranes embedded with 0.75 wt. % of neat and modified nanoparticles were used in a submerged membrane bioreactor (SMBR) system along with neat PP membrane. The results showed that critical flux values for neat PP, PP/ND and PP/ND-COOH membranes were 7, 18 and 22 L/(m2.h), respectively. Analysis of fouling mechanisms revealed that antifouling properties of 0.75 wt. % PP/ND-COOH membrane were higher than those of other two ones so that irreversible fouling ratio decreased from 88.9% for neat PP to 47.8% for PP/ND-COOH membrane.
topic polypropylene
nanodiamond
membrane
MBR
fouling
url http://poj.ippi.ac.ir/article_1589_208209cf376abe24ea549594a14be947.pdf
work_keys_str_mv AT shahabhoseinpour embeddingneatandcarboxylatednanodiamondsintopolypropylenemembranestoenhanceantifoulingproperties
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AT rezayegani embeddingneatandcarboxylatednanodiamondsintopolypropylenemembranestoenhanceantifoulingproperties
AT sepidehmasoumi embeddingneatandcarboxylatednanodiamondsintopolypropylenemembranestoenhanceantifoulingproperties
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