Turkey Tail, Yun Zhi · 2012 · Evaluation Study
Medium relevanceBiological decolourisation of pulp mill effluent using white rot fungus Trametes versicolor.
Trametes versicolor
Key points
- The conventional biological treatment methods employed in the pulp and paper industries are not effective in reducing the colour and chemical oxygen demand (COD)
- The white-rot fungi are reported to have the ability to biodegrade the lignin and its derivatives
- This paper is focused on the biological treatment of pulp mill effluent from a bagasse-based pulp and paper industry using fungal treatment
- Experiments were conducted using the white rot fungus, Trametes versicolor in shake flasks operated in batch mode with different carbon sources
- The decolourisation efficiencies of 82.5% and 80.3% were obtained in the presence of 15 g/L and 5 g/L of glucose and sucrose concentrations respectively with a considerable COD reduction
- The possibility of reusing the grown fungus was examined for repeated treatment studies
From the paper
Abstract
The conventional biological treatment methods employed in the pulp and paper industries are not effective in reducing the colour and chemical oxygen demand (COD). The white-rot fungi are reported to have the ability to biodegrade the lignin and its derivatives. This paper is focused on the biological treatment of pulp mill effluent from a bagasse-based pulp and paper industry using fungal treatment. Experiments were conducted using the white rot fungus, Trametes versicolor in shake flasks operated in batch mode with different carbon sources. The decolourisation efficiencies of 82.5% and 80.3% were obtained in the presence of 15 g/L and 5 g/L of glucose and sucrose concentrations respectively with a considerable COD reduction. The possibility of reusing the grown fungus was examined for repeated treatment studies.
Citation
Srinivasan SV, Murthy DV, Swaminathan T (2012). Biological decolourisation of pulp mill effluent using white rot fungus Trametes versicolor. Journal of environmental science & engineering PMID: 24749195
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