Characterization of P(Hema-Gma)-Ida Membrane to Adsorbing Leather Dye

Different chemical substances and too much water are used during leather production. Therefore, the waste water load of the leather industry is harmful to the environment. One of the pollution source is the production of leather coloring process is a further need to focus on the removal of dye waste...

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Main Authors: Ahmet Aslan, Safiye Meric Acikel, Raziye Hilal Senay, Sinan Akgol
Format: Article
Language:English
Published: Research Plus Journals 2018-03-01
Series:International Journal of Research in Science
Online Access:http://researchplusjournals.com/index.php/IJRS/article/view/381
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spelling doaj-3d836f67a2bf42d7b7fefc20d312a5722020-11-24T20:50:47ZengResearch Plus JournalsInternational Journal of Research in Science2412-43892018-03-0141101210.24178/ijrs.2018.4.1.10381Characterization of P(Hema-Gma)-Ida Membrane to Adsorbing Leather DyeAhmet Aslan0Safiye Meric Acikel1Raziye Hilal Senay2Sinan Akgol3Department of Leather Engineering, Ege University, Faculty of Engineering, Izmir, TurkeyDepartment of Leather Technology, Istanbul University, Vocational High School, Istanbul, TurkeyDepartment of Biochemisty, Ege University Faculty of Sciences Izmir, TurkeyDepartment of Biochemisty, Ege University Faculty of Sciences Izmir, TurkeyDifferent chemical substances and too much water are used during leather production. Therefore, the waste water load of the leather industry is harmful to the environment. One of the pollution source is the production of leather coloring process is a further need to focus on the removal of dye waste waters subject. These water-soluble dyes have a small organic molecular size. Besides the environmental hazards that these dyes cannot be underestimated, they also have harmful effects on human health. In this study, poly (hydroxyethyl methacrylate-glycidyl methacrylate) p (HEMA-GMA) hydrogel membranes were synthesized by UV polymerization method. The hydrogel synthesized is modified with imino diacetic acid (IDA) and then chelated with trivalent chromium ions. The chelating capacity of the membranes were determined according to the time, pH and concentration parameters. Dynamic swelling test, elemental analysis, ninhydrin analysis and adsorption, desorption and reusability performances of membranes were also determined. As a result of the analyzes, it was understood that the hydrogel membrane had high adsorption capacity. The adsorption capacity of the p (HEMA-GMA) -IDA-Cr (III) hydrogel membrane did not decrease even after 5 desorption. At the end of the fifth cycle, the membrane was found to have a dye-binding capacity of about 92%. According to these results, the reusable property of the membrane also makes it cost effective as well as effective adsorption.http://researchplusjournals.com/index.php/IJRS/article/view/381
collection DOAJ
language English
format Article
sources DOAJ
author Ahmet Aslan
Safiye Meric Acikel
Raziye Hilal Senay
Sinan Akgol
spellingShingle Ahmet Aslan
Safiye Meric Acikel
Raziye Hilal Senay
Sinan Akgol
Characterization of P(Hema-Gma)-Ida Membrane to Adsorbing Leather Dye
International Journal of Research in Science
author_facet Ahmet Aslan
Safiye Meric Acikel
Raziye Hilal Senay
Sinan Akgol
author_sort Ahmet Aslan
title Characterization of P(Hema-Gma)-Ida Membrane to Adsorbing Leather Dye
title_short Characterization of P(Hema-Gma)-Ida Membrane to Adsorbing Leather Dye
title_full Characterization of P(Hema-Gma)-Ida Membrane to Adsorbing Leather Dye
title_fullStr Characterization of P(Hema-Gma)-Ida Membrane to Adsorbing Leather Dye
title_full_unstemmed Characterization of P(Hema-Gma)-Ida Membrane to Adsorbing Leather Dye
title_sort characterization of p(hema-gma)-ida membrane to adsorbing leather dye
publisher Research Plus Journals
series International Journal of Research in Science
issn 2412-4389
publishDate 2018-03-01
description Different chemical substances and too much water are used during leather production. Therefore, the waste water load of the leather industry is harmful to the environment. One of the pollution source is the production of leather coloring process is a further need to focus on the removal of dye waste waters subject. These water-soluble dyes have a small organic molecular size. Besides the environmental hazards that these dyes cannot be underestimated, they also have harmful effects on human health. In this study, poly (hydroxyethyl methacrylate-glycidyl methacrylate) p (HEMA-GMA) hydrogel membranes were synthesized by UV polymerization method. The hydrogel synthesized is modified with imino diacetic acid (IDA) and then chelated with trivalent chromium ions. The chelating capacity of the membranes were determined according to the time, pH and concentration parameters. Dynamic swelling test, elemental analysis, ninhydrin analysis and adsorption, desorption and reusability performances of membranes were also determined. As a result of the analyzes, it was understood that the hydrogel membrane had high adsorption capacity. The adsorption capacity of the p (HEMA-GMA) -IDA-Cr (III) hydrogel membrane did not decrease even after 5 desorption. At the end of the fifth cycle, the membrane was found to have a dye-binding capacity of about 92%. According to these results, the reusable property of the membrane also makes it cost effective as well as effective adsorption.
url http://researchplusjournals.com/index.php/IJRS/article/view/381
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