The effect of incubation time and silk worm cocoon on mobility of zinc and copper in contaminated clay soil

Of the problematic agents in the ecosystem, heavy metals have special importance because they are unabsorbable and have physiologic effects on living beings at low concentrations. This study has investigated the effect of silk worm cocoon on reducing mobility of zinc (Zn) and copper (Cu) for the fir...

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Main Authors: Bahareh Lorestani, Hajar Merrikhpour, Faezeh Daneshvari, Nasrin Kohahchi
Format: Article
Language:English
Published: Kurdistan University of Medical Sciences 2013-07-01
Series:Journal of Advances in Environmental Health Research
Subjects:
Online Access:http://jaehr.muk.ac.ir/article_40128_a91cf92b2231a08590859fbd6bf93ed8.pdf
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spelling doaj-392a0f0849ed4cf8beab16facfe20eae2021-07-14T05:41:11ZengKurdistan University of Medical SciencesJournal of Advances in Environmental Health Research2345-39902345-39902013-07-0112738010.22102/jaehr.2013.4012840128The effect of incubation time and silk worm cocoon on mobility of zinc and copper in contaminated clay soilBahareh Lorestani0Hajar Merrikhpour1Faezeh Daneshvari2Nasrin Kohahchi3Department of Environment, School of Basic Science, Islamic Azad University, Hamedan Branch, Hamedan, IranDepartment of Environment, School of Basic Science, Islamic Azad University, Hamedan Branch, Hamedan, IranDepartment of Environment, School of Basic Science, Islamic Azad University, Hamedan Branch, Hamedan, IranDepartment of Environment, School of Basic Science, Islamic Azad University, Hamedan Branch, Hamedan, IranOf the problematic agents in the ecosystem, heavy metals have special importance because they are unabsorbable and have physiologic effects on living beings at low concentrations. This study has investigated the effect of silk worm cocoon on reducing mobility of zinc (Zn) and copper (Cu) for the first time. To this end, 5% cocoon adsorbent was added to the studied soil, which had been contaminated with Cu and Zn in separate containers at concentration of 600 mg/l. The experiment was performed in three repeats and two treatments (with and without adsorbent). Samples were incubated at 28°C at constant humidity for 3 hours, 1, 3, 7, 14, 21, and 28 days. Then both treatments were extracted using sequential extraction method and the concentration of Zn and Cu was processed using atomic absorption spectrophotometry. The results showed that there were changes in mobility of the Zn and Cu added to soil; adding silk worm cocoon to soil increased organic phase of Zn and Cu as compared to the soil without adsorbent. Data were analyzed by SPSS software. All comparisons of the means were performed at statistical level of 5% using Student’s independent t-test. Student’s independent t-test showed that the highest significant difference (P < 0.05) was observed in the organic fraction of the Cu-Zn contaminated soil with cocoon, as compared with the Cu-Zn contaminated soil without cocoon.http://jaehr.muk.ac.ir/article_40128_a91cf92b2231a08590859fbd6bf93ed8.pdfsoilzinc - copperdecreased mobilitysilk worm cocoonincubation
collection DOAJ
language English
format Article
sources DOAJ
author Bahareh Lorestani
Hajar Merrikhpour
Faezeh Daneshvari
Nasrin Kohahchi
spellingShingle Bahareh Lorestani
Hajar Merrikhpour
Faezeh Daneshvari
Nasrin Kohahchi
The effect of incubation time and silk worm cocoon on mobility of zinc and copper in contaminated clay soil
Journal of Advances in Environmental Health Research
soil
zinc - copper
decreased mobility
silk worm cocoon
incubation
author_facet Bahareh Lorestani
Hajar Merrikhpour
Faezeh Daneshvari
Nasrin Kohahchi
author_sort Bahareh Lorestani
title The effect of incubation time and silk worm cocoon on mobility of zinc and copper in contaminated clay soil
title_short The effect of incubation time and silk worm cocoon on mobility of zinc and copper in contaminated clay soil
title_full The effect of incubation time and silk worm cocoon on mobility of zinc and copper in contaminated clay soil
title_fullStr The effect of incubation time and silk worm cocoon on mobility of zinc and copper in contaminated clay soil
title_full_unstemmed The effect of incubation time and silk worm cocoon on mobility of zinc and copper in contaminated clay soil
title_sort effect of incubation time and silk worm cocoon on mobility of zinc and copper in contaminated clay soil
publisher Kurdistan University of Medical Sciences
series Journal of Advances in Environmental Health Research
issn 2345-3990
2345-3990
publishDate 2013-07-01
description Of the problematic agents in the ecosystem, heavy metals have special importance because they are unabsorbable and have physiologic effects on living beings at low concentrations. This study has investigated the effect of silk worm cocoon on reducing mobility of zinc (Zn) and copper (Cu) for the first time. To this end, 5% cocoon adsorbent was added to the studied soil, which had been contaminated with Cu and Zn in separate containers at concentration of 600 mg/l. The experiment was performed in three repeats and two treatments (with and without adsorbent). Samples were incubated at 28°C at constant humidity for 3 hours, 1, 3, 7, 14, 21, and 28 days. Then both treatments were extracted using sequential extraction method and the concentration of Zn and Cu was processed using atomic absorption spectrophotometry. The results showed that there were changes in mobility of the Zn and Cu added to soil; adding silk worm cocoon to soil increased organic phase of Zn and Cu as compared to the soil without adsorbent. Data were analyzed by SPSS software. All comparisons of the means were performed at statistical level of 5% using Student’s independent t-test. Student’s independent t-test showed that the highest significant difference (P < 0.05) was observed in the organic fraction of the Cu-Zn contaminated soil with cocoon, as compared with the Cu-Zn contaminated soil without cocoon.
topic soil
zinc - copper
decreased mobility
silk worm cocoon
incubation
url http://jaehr.muk.ac.ir/article_40128_a91cf92b2231a08590859fbd6bf93ed8.pdf
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