The Development of Nanofibrous Media Filter Containing Nanoparticles for Removing Particles from Air Stream

Background and Objectives: The goal of the present study was to develop nanofibrous media filters containing MgO nanoparticles for future application in removing particles from gas stream. Materials and Methods: Electrospun nanofibers were fabricated using experi...

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Main Authors: S Farhang Dehghan, B Maddah, F Golbabaei
Format: Article
Language:fas
Published: Tehran University of Medical Sciences 2016-03-01
Series:سلامت و محیط
Subjects:
Online Access:http://ijhe.tums.ac.ir/browse.php?a_code=A-10-737-1&slc_lang=en&sid=1
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spelling doaj-863bebafad27484092c21809666464642021-09-02T13:45:33ZfasTehran University of Medical Sciencesسلامت و محیط2008-20292008-37182016-03-0184509524The Development of Nanofibrous Media Filter Containing Nanoparticles for Removing Particles from Air StreamS Farhang Dehghan0B Maddah1F Golbabaei2 PhD Candidate, Department of Occupational Health, School of Public Health, Tehran University of Medical Sciences, Tehran, Iran Associate Professor, Department of Chemistry, Imam Hossein University, Tehran, Iran. Professor, Department of Occupational Health, School of Public Health, Tehran University of Medical Sciences, Tehran, Iran Background and Objectives: The&nbsp;goal&nbsp;of&nbsp;the present study&nbsp;was to develop nanofibrous media filters containing MgO nanoparticles for future application in removing particles from gas stream. Materials and Methods: Electrospun nanofibers were fabricated using experimental design prepared by Response Surface Methodology. Optimization of electrospinning parameters was conducted for achieving the desired filter properties including fiber diameter, porosity, and bead number. After taking SEM images, the determination of fiber diameter and number of beads were performed through Image Analysis and the calculation of porosity percent was performed by MATLAB. A filter media was produced based on the optimized conditions of electrospinning and it was certified by the HEPA filter performance test. Results: In terms of morphological quality of fibers including fiber uniformity, absence of branching and lower numbers&nbsp;of&nbsp;beads, experiment standard No. 2 (STD 2: concentration 16 wt%, voltage 10 kV, and distance 15 cm) had the best combination. Maximum fiber diameter was also observed in STD 2. Among the electrospinning, the highest correlation coefficient was observed between solution concentration and response variables and the relationship between concentration and both fiber diameter and porosity percent was statistically significant (p <0.05 and p <0.01, respectively). A weak positive correlation was found between fiber diameter and porosity percent (r=0.29, p>0.05) and a weak negative relationship was seen between fiber diameter and bead number (r=-0.2, p>0.05). Conclusion: Solution concentration was found as the most affecting factor on the filter properties, so that the higher concentration leaded to the lower bead number and greater fiber diameter. Increase in fiber diameter resulted in larger pore size and higher porosity. Quadratic models were known for understudy variables. Efficiency of the optimized filter was comparable with the HEPA filter and it had the lower pressure drop.http://ijhe.tums.ac.ir/browse.php?a_code=A-10-737-1&slc_lang=en&sid=1Nanofibrous Filter Electrospinning HEPA Filter Efficiency Pressure Drop
collection DOAJ
language fas
format Article
sources DOAJ
author S Farhang Dehghan
B Maddah
F Golbabaei
spellingShingle S Farhang Dehghan
B Maddah
F Golbabaei
The Development of Nanofibrous Media Filter Containing Nanoparticles for Removing Particles from Air Stream
سلامت و محیط
Nanofibrous Filter
Electrospinning
HEPA Filter
Efficiency
Pressure Drop
author_facet S Farhang Dehghan
B Maddah
F Golbabaei
author_sort S Farhang Dehghan
title The Development of Nanofibrous Media Filter Containing Nanoparticles for Removing Particles from Air Stream
title_short The Development of Nanofibrous Media Filter Containing Nanoparticles for Removing Particles from Air Stream
title_full The Development of Nanofibrous Media Filter Containing Nanoparticles for Removing Particles from Air Stream
title_fullStr The Development of Nanofibrous Media Filter Containing Nanoparticles for Removing Particles from Air Stream
title_full_unstemmed The Development of Nanofibrous Media Filter Containing Nanoparticles for Removing Particles from Air Stream
title_sort development of nanofibrous media filter containing nanoparticles for removing particles from air stream
publisher Tehran University of Medical Sciences
series سلامت و محیط
issn 2008-2029
2008-3718
publishDate 2016-03-01
description Background and Objectives: The&nbsp;goal&nbsp;of&nbsp;the present study&nbsp;was to develop nanofibrous media filters containing MgO nanoparticles for future application in removing particles from gas stream. Materials and Methods: Electrospun nanofibers were fabricated using experimental design prepared by Response Surface Methodology. Optimization of electrospinning parameters was conducted for achieving the desired filter properties including fiber diameter, porosity, and bead number. After taking SEM images, the determination of fiber diameter and number of beads were performed through Image Analysis and the calculation of porosity percent was performed by MATLAB. A filter media was produced based on the optimized conditions of electrospinning and it was certified by the HEPA filter performance test. Results: In terms of morphological quality of fibers including fiber uniformity, absence of branching and lower numbers&nbsp;of&nbsp;beads, experiment standard No. 2 (STD 2: concentration 16 wt%, voltage 10 kV, and distance 15 cm) had the best combination. Maximum fiber diameter was also observed in STD 2. Among the electrospinning, the highest correlation coefficient was observed between solution concentration and response variables and the relationship between concentration and both fiber diameter and porosity percent was statistically significant (p <0.05 and p <0.01, respectively). A weak positive correlation was found between fiber diameter and porosity percent (r=0.29, p>0.05) and a weak negative relationship was seen between fiber diameter and bead number (r=-0.2, p>0.05). Conclusion: Solution concentration was found as the most affecting factor on the filter properties, so that the higher concentration leaded to the lower bead number and greater fiber diameter. Increase in fiber diameter resulted in larger pore size and higher porosity. Quadratic models were known for understudy variables. Efficiency of the optimized filter was comparable with the HEPA filter and it had the lower pressure drop.
topic Nanofibrous Filter
Electrospinning
HEPA Filter
Efficiency
Pressure Drop
url http://ijhe.tums.ac.ir/browse.php?a_code=A-10-737-1&slc_lang=en&sid=1
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