Combined treatment of textile effluent using the sequence Phanerochaete chrysosporium-ozone.
Identifieur interne : 000A50 ( Main/Exploration ); précédent : 000A49; suivant : 000A51Combined treatment of textile effluent using the sequence Phanerochaete chrysosporium-ozone.
Auteurs : A. Kunz [Brésil] ; V. Reginatto ; N. DuránSource :
- Chemosphere [ 0045-6535 ] ; 2001.
Descripteurs français
- KwdFr :
- Carbone (métabolisme), Chlorophyta (effets des médicaments et des substances chimiques), Concentration en ions d'hydrogène (MeSH), Déchets industriels (analyse), Dépollution biologique de l'environnement (MeSH), Escherichia coli (effets des médicaments et des substances chimiques), Industrie textile (MeSH), Oxydants photochimiques (composition chimique), Ozone (composition chimique), Phanerochaete (physiologie), Phénols (analyse), Pollution de l'eau (analyse), Pollution de l'eau (prévention et contrôle), Tests de toxicité (MeSH), Élimination des déchets liquides (méthodes).
- MESH :
- analyse : Déchets industriels, Phénols, Pollution de l'eau.
- composition chimique : Oxydants photochimiques, Ozone.
- effets des médicaments et des substances chimiques : Chlorophyta, Escherichia coli.
- métabolisme : Carbone.
- méthodes : Élimination des déchets liquides.
- physiologie : Phanerochaete.
- prévention et contrôle : Pollution de l'eau.
- Concentration en ions d'hydrogène, Dépollution biologique de l'environnement, Industrie textile, Tests de toxicité.
English descriptors
- KwdEn :
- Biodegradation, Environmental (MeSH), Carbon (metabolism), Chlorophyta (drug effects), Escherichia coli (drug effects), Hydrogen-Ion Concentration (MeSH), Industrial Waste (analysis), Oxidants, Photochemical (chemistry), Ozone (chemistry), Phanerochaete (physiology), Phenols (analysis), Textile Industry (MeSH), Toxicity Tests (MeSH), Waste Disposal, Fluid (methods), Water Pollution (analysis), Water Pollution (prevention & control).
- MESH :
- chemical , analysis : Industrial Waste, Phenols.
- chemical , chemistry : Oxidants, Photochemical, Ozone.
- chemical , metabolism : Carbon.
- analysis : Water Pollution.
- drug effects : Chlorophyta, Escherichia coli.
- methods : Waste Disposal, Fluid.
- physiology : Phanerochaete.
- prevention & control : Water Pollution.
- Biodegradation, Environmental, Hydrogen-Ion Concentration, Textile Industry, Toxicity Tests.
Abstract
Textile effluents cause a high environmental impact when released into the environment without correct treatment. In this work, we have evaluated the capacity of treatment of a textile effluent using a biological and a chemical method using the sequence Phanerochaete chrysosporium-ozone. The fungal treatment was performed by direct incubation of a fungus spore suspension in textile effluent for nine days. Then, the effluent was ozonized at pH 11 and room temperature. Color, total organic carbon, molecular mass distribution and total phenols were determined. In biological experiments, enzymatic activity (lignin peroxidase, manganese peroxidase and laccase) were also monitored. Toxicity tests were carried out with Scenedesmus subspicatus and with Escherichia coli. Good decoloration, total phenols reduction and textile effluent molecular mass reduction were obtained during the process. No significant total organic carbon reduction was observed. The toxicity of the textile effluent was reduced with both test organisms showing no inhibition at the end of the treatment.
DOI: 10.1016/s0045-6535(00)00165-x
PubMed: 11444311
Affiliations:
Links toward previous steps (curation, corpus...)
Le document en format XML
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<term>Water Pollution (prevention & control)</term>
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<term>Dépollution biologique de l'environnement (MeSH)</term>
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<front><div type="abstract" xml:lang="en">Textile effluents cause a high environmental impact when released into the environment without correct treatment. In this work, we have evaluated the capacity of treatment of a textile effluent using a biological and a chemical method using the sequence Phanerochaete chrysosporium-ozone. The fungal treatment was performed by direct incubation of a fungus spore suspension in textile effluent for nine days. Then, the effluent was ozonized at pH 11 and room temperature. Color, total organic carbon, molecular mass distribution and total phenols were determined. In biological experiments, enzymatic activity (lignin peroxidase, manganese peroxidase and laccase) were also monitored. Toxicity tests were carried out with Scenedesmus subspicatus and with Escherichia coli. Good decoloration, total phenols reduction and textile effluent molecular mass reduction were obtained during the process. No significant total organic carbon reduction was observed. The toxicity of the textile effluent was reduced with both test organisms showing no inhibition at the end of the treatment.</div>
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<Abstract><AbstractText>Textile effluents cause a high environmental impact when released into the environment without correct treatment. In this work, we have evaluated the capacity of treatment of a textile effluent using a biological and a chemical method using the sequence Phanerochaete chrysosporium-ozone. The fungal treatment was performed by direct incubation of a fungus spore suspension in textile effluent for nine days. Then, the effluent was ozonized at pH 11 and room temperature. Color, total organic carbon, molecular mass distribution and total phenols were determined. In biological experiments, enzymatic activity (lignin peroxidase, manganese peroxidase and laccase) were also monitored. Toxicity tests were carried out with Scenedesmus subspicatus and with Escherichia coli. Good decoloration, total phenols reduction and textile effluent molecular mass reduction were obtained during the process. No significant total organic carbon reduction was observed. The toxicity of the textile effluent was reduced with both test organisms showing no inhibition at the end of the treatment.</AbstractText>
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