USEBILITY OF HYDROGELS IN ADSORPTION TECHNOLOGHY FOR REMOVAL OF HEAVY METAL AND DYE
Heavy metals and Dyes are very toxic and nonbiodegradable in waste waters to cause adverse health effects in human body and to induce irreversible pollution. Adsorption offers many potential advantages for removal of toxic heavy metals being flexibility in design and operation, high-quality treated...
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Editura Universităţii din Oradea
2016-05-01
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Series: | Annals of the University of Oradea: Fascicle of Textiles, Leatherwork |
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Online Access: | http://textile.webhost.uoradea.ro/Annals/Vol%20XVII-No%202-2016/Pielarie/Art.nr.193-pag.%20145-150.pdf |
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author | AÇIKEL Safiye Meriç ASLAN Ahmet |
author_facet | AÇIKEL Safiye Meriç ASLAN Ahmet |
author_sort | AÇIKEL Safiye Meriç |
collection | DOAJ |
description | Heavy metals and Dyes are very toxic and nonbiodegradable in waste waters to cause adverse health effects in human body and to induce irreversible pollution. Adsorption offers many potential advantages for removal of toxic heavy metals being flexibility in design and operation, high-quality treated effluent, reversible nature for multiple uses, and many commercially available adsorbent materials, such as activated carbon, zeolite, clay, sawdust, bark, biomass, lignin, chitosan and other polymer adsorbents. Compared to conventional adsorbent materials above, hydrogelbased adsorbents recently have attracted special attention to their highly potential for effective removal of heavy metals and dyes. Hydrogels are named “Hydrophilic Polymer” because of care for water. Hydrogels is not solved in water; however they have been swollen to their balance volume. Because of this swell behavior, they can adsorb big quantity of water in this structure. So they can term of “three sized polymers” due to protect their existing shape [9]. Hydrogels with porous structures and chemically-responsive functional groups, enable to readily capture metal ions and dyes from wastewater. Hydrogels with porous structures and chemically-responsive functional groups, enable to readily capture metal ions and dyes from wastewater. In adsorption applications, hydrogels are used in water purification, heavy metal/dying removing, controlled fertilizer released, ion exchange applications, chromatographic applications, dilute extractions, waste water treatments. This article general inform about usage of hydrogels in Dye and Heavy Metal adsorption. |
first_indexed | 2024-04-13T06:55:27Z |
format | Article |
id | doaj.art-cfa56b04e38a44cf84806c55f9beaf4c |
institution | Directory Open Access Journal |
issn | 1843-813X |
language | English |
last_indexed | 2024-04-13T06:55:27Z |
publishDate | 2016-05-01 |
publisher | Editura Universităţii din Oradea |
record_format | Article |
series | Annals of the University of Oradea: Fascicle of Textiles, Leatherwork |
spelling | doaj.art-cfa56b04e38a44cf84806c55f9beaf4c2022-12-22T02:57:16ZengEditura Universităţii din OradeaAnnals of the University of Oradea: Fascicle of Textiles, Leatherwork1843-813X2016-05-01XVII2145150USEBILITY OF HYDROGELS IN ADSORPTION TECHNOLOGHY FOR REMOVAL OF HEAVY METAL AND DYE AÇIKEL Safiye Meriç0ASLAN Ahmet1İstanbul University, Technical Sciences Vocational School, Leather Technology 34320, İstanbul, TurkeyEge University, Engineering Faculty, Leather Engineering Department, 35100, İzmir, TurkeyHeavy metals and Dyes are very toxic and nonbiodegradable in waste waters to cause adverse health effects in human body and to induce irreversible pollution. Adsorption offers many potential advantages for removal of toxic heavy metals being flexibility in design and operation, high-quality treated effluent, reversible nature for multiple uses, and many commercially available adsorbent materials, such as activated carbon, zeolite, clay, sawdust, bark, biomass, lignin, chitosan and other polymer adsorbents. Compared to conventional adsorbent materials above, hydrogelbased adsorbents recently have attracted special attention to their highly potential for effective removal of heavy metals and dyes. Hydrogels are named “Hydrophilic Polymer” because of care for water. Hydrogels is not solved in water; however they have been swollen to their balance volume. Because of this swell behavior, they can adsorb big quantity of water in this structure. So they can term of “three sized polymers” due to protect their existing shape [9]. Hydrogels with porous structures and chemically-responsive functional groups, enable to readily capture metal ions and dyes from wastewater. Hydrogels with porous structures and chemically-responsive functional groups, enable to readily capture metal ions and dyes from wastewater. In adsorption applications, hydrogels are used in water purification, heavy metal/dying removing, controlled fertilizer released, ion exchange applications, chromatographic applications, dilute extractions, waste water treatments. This article general inform about usage of hydrogels in Dye and Heavy Metal adsorption.http://textile.webhost.uoradea.ro/Annals/Vol%20XVII-No%202-2016/Pielarie/Art.nr.193-pag.%20145-150.pdfHydrogelsAdsorptionWaste waterDyeHeavy metal |
spellingShingle | AÇIKEL Safiye Meriç ASLAN Ahmet USEBILITY OF HYDROGELS IN ADSORPTION TECHNOLOGHY FOR REMOVAL OF HEAVY METAL AND DYE Annals of the University of Oradea: Fascicle of Textiles, Leatherwork Hydrogels Adsorption Waste water Dye Heavy metal |
title | USEBILITY OF HYDROGELS IN ADSORPTION TECHNOLOGHY FOR REMOVAL OF HEAVY METAL AND DYE |
title_full | USEBILITY OF HYDROGELS IN ADSORPTION TECHNOLOGHY FOR REMOVAL OF HEAVY METAL AND DYE |
title_fullStr | USEBILITY OF HYDROGELS IN ADSORPTION TECHNOLOGHY FOR REMOVAL OF HEAVY METAL AND DYE |
title_full_unstemmed | USEBILITY OF HYDROGELS IN ADSORPTION TECHNOLOGHY FOR REMOVAL OF HEAVY METAL AND DYE |
title_short | USEBILITY OF HYDROGELS IN ADSORPTION TECHNOLOGHY FOR REMOVAL OF HEAVY METAL AND DYE |
title_sort | usebility of hydrogels in adsorption technologhy for removal of heavy metal and dye |
topic | Hydrogels Adsorption Waste water Dye Heavy metal |
url | http://textile.webhost.uoradea.ro/Annals/Vol%20XVII-No%202-2016/Pielarie/Art.nr.193-pag.%20145-150.pdf |
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