The Removal of Zinc from Aqueous Solutions Using Malvaparviflora

In this study, the adsorption of Zn (NO3)2 is carried out by using surfaces of malvaparviflora. The validity of the adsorption is evaluated by using atomic absorption Spectrophotometry through determination the amount of adsorbed Zn (NO3)2. Various parameters such as PH, adsorbent weight and contact...

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Main Author: Baghdad Science Journal
Format: Article
Language:English
Published: University of Baghdad, College of Science for Women 2016-09-01
Series:مجلة بغداد للعلوم
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Online Access:http://bsj.uobaghdad.edu.iq/index.php/BSJ/article/view/2294
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author Baghdad Science Journal
author_facet Baghdad Science Journal
author_sort Baghdad Science Journal
collection DOAJ
description In this study, the adsorption of Zn (NO3)2 is carried out by using surfaces of malvaparviflora. The validity of the adsorption is evaluated by using atomic absorption Spectrophotometry through determination the amount of adsorbed Zn (NO3)2. Various parameters such as PH, adsorbent weight and contact time are studied in terms of their effect on the reaction progress. Furthermore, Lagergren’s equation is used to determine adsorption kinetics. It is observed that high removal of Zn (NO3)2 is obtained at PH=2. High removal of Zn (NO3)2 is at the time equivalent of 60 min and reaches equilibrium,where 0.25gm is the best weight of adsorbant . For kinetics the reaction onto malvaparviflora follows pseudo first order Lagergren’s equation.
format Article
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institution Matheson Library
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publishDate 2016-09-01
publisher University of Baghdad, College of Science for Women
record_format Article
series مجلة بغداد للعلوم
spelling doaj-art-2c1c60c119c343c3b51ee9252948ea322025-08-02T04:11:54ZengUniversity of Baghdad, College of Science for Womenمجلة بغداد للعلوم2078-86652411-79862016-09-0113310.21123/bsj.13.3.482-488The Removal of Zinc from Aqueous Solutions Using MalvaparvifloraBaghdad Science JournalIn this study, the adsorption of Zn (NO3)2 is carried out by using surfaces of malvaparviflora. The validity of the adsorption is evaluated by using atomic absorption Spectrophotometry through determination the amount of adsorbed Zn (NO3)2. Various parameters such as PH, adsorbent weight and contact time are studied in terms of their effect on the reaction progress. Furthermore, Lagergren’s equation is used to determine adsorption kinetics. It is observed that high removal of Zn (NO3)2 is obtained at PH=2. High removal of Zn (NO3)2 is at the time equivalent of 60 min and reaches equilibrium,where 0.25gm is the best weight of adsorbant . For kinetics the reaction onto malvaparviflora follows pseudo first order Lagergren’s equation.http://bsj.uobaghdad.edu.iq/index.php/BSJ/article/view/2294"Zn (NO3)2, Malvaparviflora, Adsorption, Removal"
spellingShingle Baghdad Science Journal
The Removal of Zinc from Aqueous Solutions Using Malvaparviflora
مجلة بغداد للعلوم
"Zn (NO3)2, Malvaparviflora, Adsorption, Removal"
title The Removal of Zinc from Aqueous Solutions Using Malvaparviflora
title_full The Removal of Zinc from Aqueous Solutions Using Malvaparviflora
title_fullStr The Removal of Zinc from Aqueous Solutions Using Malvaparviflora
title_full_unstemmed The Removal of Zinc from Aqueous Solutions Using Malvaparviflora
title_short The Removal of Zinc from Aqueous Solutions Using Malvaparviflora
title_sort removal of zinc from aqueous solutions using malvaparviflora
topic "Zn (NO3)2, Malvaparviflora, Adsorption, Removal"
url http://bsj.uobaghdad.edu.iq/index.php/BSJ/article/view/2294
work_keys_str_mv AT baghdadsciencejournal theremovalofzincfromaqueoussolutionsusingmalvaparviflora
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