Evaluation of the efficiency of nanomagnetic chitosan in the removal of nitrate and phosphate from aqueous solutions

Background & Objective: The presence of nitrate and phosphate in concentrations above the allowable level in surface and groundwater resources leads to disease and problems. The aim of this study was to investigate the adsorption efficiency of magnetic-metallic chitosan nanocomposite in the adso...

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Main Authors: Mohammad Noorisepehr, Emad Dehghanifard, Babak Kakavandi
Format: Article
Language:fas
Published: Alborz University of Medical Sciences 2020-08-01
Series:Muhandisī-i Bihdāsht-i Muḥīṭ
Subjects:
Online Access:http://jehe.abzums.ac.ir/article-1-769-en.html
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spelling doaj-6baa719f21034f0892c186a533e8d7782020-11-25T03:57:08ZfasAlborz University of Medical SciencesMuhandisī-i Bihdāsht-i Muḥīṭ2383-32112020-08-0174373383Evaluation of the efficiency of nanomagnetic chitosan in the removal of nitrate and phosphate from aqueous solutionsMohammad Noorisepehr0Emad Dehghanifard1Babak Kakavandi2 1. Department of Environmental Health Engineering, Faculty of Health, Alborz University of Medical Sciences, karaj, Iran 2. Research Center for Health, Safety and Environment (RCHSE), Alborz University of Medical Sciences, Karaj, Iran 1. Department of Environmental Health Engineering, Faculty of Health, Alborz University of Medical Sciences, karaj, Iran 2. Research Center for Health, Safety and Environment (RCHSE), Alborz University of Medical Sciences, Karaj, Iran 1. Department of Environmental Health Engineering, Faculty of Health, Alborz University of Medical Sciences, karaj, Iran 2. Research Center for Health, Safety and Environment (RCHSE), Alborz University of Medical Sciences, Karaj, Iran Background & Objective: The presence of nitrate and phosphate in concentrations above the allowable level in surface and groundwater resources leads to disease and problems. The aim of this study was to investigate the adsorption efficiency of magnetic-metallic chitosan nanocomposite in the adsorption of nitrate and phosphate from aqueous solutions. Materials and methods: The adsorbent was synthesized by co-precipitation method. Different concentrations of nitrate (50-300 mg/L) and phosphate (100-400 mg/L) were prepared and their removal was evaluated by different concentrations of synthesized adsorbent (0.1-0.5 g/L). Various parameters such as temperature (20-40 ° C), pH (5-8), contact time (0-90 minutes) and the presence of interfering ions (chloride, phosphate, hardness 1.5 mM) were investigated. SEM, XRD, FTIR and XRF tests were used to determine the synthesized adsorbent characteristics. Results: Magnetic-metallic chitosan nanocomposite adsorbent is able to effectively remove nitrate and phosphate from aqueous solutions. Nitrate and phosphate removal efficiencies under conditions of  pH=5, nitrate concentration (100 mg/L), phosphate concentration (200 mg/L), 60 min contact time and 0.3 g/L adsorbent concentration were 87.2% and 74.9%, respectively. The adsorption process of both pollutants followed the langmuir model and pseudo second kinetic order. Interfering ions reduced the removal efficiency of contaminants by 73.1% for nitrate and 65.9% for phosphate. Conclusion: Since the presence of nitrate and phosphate anions, as common contaminants and indicators of water resources, the use of magnetic-metallic chitosan nanocomposite adsorbent is very effective in the removal of these contaminants.http://jehe.abzums.ac.ir/article-1-769-en.html: chitosanmagnetic iron oxidenitratephosphateadsorption
collection DOAJ
language fas
format Article
sources DOAJ
author Mohammad Noorisepehr
Emad Dehghanifard
Babak Kakavandi
spellingShingle Mohammad Noorisepehr
Emad Dehghanifard
Babak Kakavandi
Evaluation of the efficiency of nanomagnetic chitosan in the removal of nitrate and phosphate from aqueous solutions
Muhandisī-i Bihdāsht-i Muḥīṭ
: chitosan
magnetic iron oxide
nitrate
phosphate
adsorption
author_facet Mohammad Noorisepehr
Emad Dehghanifard
Babak Kakavandi
author_sort Mohammad Noorisepehr
title Evaluation of the efficiency of nanomagnetic chitosan in the removal of nitrate and phosphate from aqueous solutions
title_short Evaluation of the efficiency of nanomagnetic chitosan in the removal of nitrate and phosphate from aqueous solutions
title_full Evaluation of the efficiency of nanomagnetic chitosan in the removal of nitrate and phosphate from aqueous solutions
title_fullStr Evaluation of the efficiency of nanomagnetic chitosan in the removal of nitrate and phosphate from aqueous solutions
title_full_unstemmed Evaluation of the efficiency of nanomagnetic chitosan in the removal of nitrate and phosphate from aqueous solutions
title_sort evaluation of the efficiency of nanomagnetic chitosan in the removal of nitrate and phosphate from aqueous solutions
publisher Alborz University of Medical Sciences
series Muhandisī-i Bihdāsht-i Muḥīṭ
issn 2383-3211
publishDate 2020-08-01
description Background & Objective: The presence of nitrate and phosphate in concentrations above the allowable level in surface and groundwater resources leads to disease and problems. The aim of this study was to investigate the adsorption efficiency of magnetic-metallic chitosan nanocomposite in the adsorption of nitrate and phosphate from aqueous solutions. Materials and methods: The adsorbent was synthesized by co-precipitation method. Different concentrations of nitrate (50-300 mg/L) and phosphate (100-400 mg/L) were prepared and their removal was evaluated by different concentrations of synthesized adsorbent (0.1-0.5 g/L). Various parameters such as temperature (20-40 ° C), pH (5-8), contact time (0-90 minutes) and the presence of interfering ions (chloride, phosphate, hardness 1.5 mM) were investigated. SEM, XRD, FTIR and XRF tests were used to determine the synthesized adsorbent characteristics. Results: Magnetic-metallic chitosan nanocomposite adsorbent is able to effectively remove nitrate and phosphate from aqueous solutions. Nitrate and phosphate removal efficiencies under conditions of  pH=5, nitrate concentration (100 mg/L), phosphate concentration (200 mg/L), 60 min contact time and 0.3 g/L adsorbent concentration were 87.2% and 74.9%, respectively. The adsorption process of both pollutants followed the langmuir model and pseudo second kinetic order. Interfering ions reduced the removal efficiency of contaminants by 73.1% for nitrate and 65.9% for phosphate. Conclusion: Since the presence of nitrate and phosphate anions, as common contaminants and indicators of water resources, the use of magnetic-metallic chitosan nanocomposite adsorbent is very effective in the removal of these contaminants.
topic : chitosan
magnetic iron oxide
nitrate
phosphate
adsorption
url http://jehe.abzums.ac.ir/article-1-769-en.html
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AT emaddehghanifard evaluationoftheefficiencyofnanomagneticchitosanintheremovalofnitrateandphosphatefromaqueoussolutions
AT babakkakavandi evaluationoftheefficiencyofnanomagneticchitosanintheremovalofnitrateandphosphatefromaqueoussolutions
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