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An Approach to Biological Treatment of Tannery Effluent in Bangladesh
Details
Dyes are the most important group of synthetic colorants. They are generally considered as xenobiotic compounds which are very recalcitrant to biodegradation. Some dyes and some of their N-substituted aromatic bio-transformation products are toxic and/or carcinogenic and therefore these dyes are considered to be environmental pollutants and health hazards. In comparison with chemical treatment of dye containing tannery effluent, biological treatment is considered to be the most economical and efficient. In this work, attempts were made to degrade these dyes aerobically and anaerobically. The organisms which were efficient in degrading the dyes are isolated from different sections of tannery wastewater treatment plant. They are identified and characterized by analyzing their morphological, cultural and biochemical features. Then the efficiency of dye degradation by individual microorganism and by consortium was analyzed in presence of various co-substrates and under various environmental factors. It was found that mixed cultures of bacteria(consortia)from tannery effluent worked efficiently in degrading the dye whereas fungal consortia was not so efficient than a single strain.
Autorentext
I'm a senior microbiologist of the Beacon Pharmaceuticals Ltd. I have completed my graduation from the Department of Microbiology, University of Chittagong, Bangladesh. I was born in Mirsarai, Chittagong,Bangladesh on the 1st July, 1987. To work with an internationally recognized biotechnological institution is my long cherished dream.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783639373028
- Sprache Englisch
- Größe H220mm x B150mm x T10mm
- Jahr 2011
- EAN 9783639373028
- Format Kartonierter Einband (Kt)
- ISBN 978-3-639-37302-8
- Titel An Approach to Biological Treatment of Tannery Effluent in Bangladesh
- Autor S. C. Nath , Abul Manchur , M. Maruf Hossain
- Untertitel Microorganisms of Tannery Dye
- Gewicht 272g
- Herausgeber VDM Verlag
- Anzahl Seiten 172
- Genre Biologie