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Optimization of phenol degradation by Antarctic bacterium Rhodococcus sp.


Citation

Tengku Marzuki, Tengku Athirrah and Subramanian, Kavilasni and Zakaria, Nur Nadhirah and Convey, Peter and Abdul Khalil, Khalilah and Lee, Gillian Li Yin and Zulkharnain, Azham and Shaharuddin, Noor Azmi and Ahmad, Siti Aqlima (2020) Optimization of phenol degradation by Antarctic bacterium Rhodococcus sp. Antarctic Science, 32 (6). pp. 486-495. ISSN 0954-1020; ESSN: 1365-2079

Abstract

This study focused on the ability of the Antarctic bacterium Rhodococcus sp. strain AQ5-14 to survive exposure to and to degrade high concentrations of phenol at 0.5 g l-1. After initial evaluation of phenol-degrading performance, the effects of salinity, pH and temperature on the rate of phenol degradation were examined. The optimum conditions for phenol degradation were pH 7 and 0.4 g l-1 NaCl at a temperature of 25°C (83.90%). An analysis using response surface methodology (RSM) and the Plackett-Burman design identified salinity, pH and temperature as three statistically significant factors influencing phenol degradation. The maximum bacterial growth was observed (optical density at 600 nm = 0.455), with medium conditions of pH 6.5, 22.5°C and 0.47 g l-1 NaCl in the central composite design of the RSM experiments enhancing phenol degradation to 99.10%. A central composite design was then used to examine the interactions among these three variables and to determine their optimal levels. There was excellent agreement (R2 = 0.9785) between experimental and predicted values, with less strong but still good agreement (R2 = 0.8376) between the predicted model values and those obtained experimentally under optimized conditions. Rhodococcus sp. strain AQ5-14 has excellent potential for the bioremediation of phenol.


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Additional Metadata

Item Type: Article
Divisions: Faculty of Biotechnology and Biomolecular Sciences
DOI Number: https://doi.org/10.1017/S0954102020000358
Publisher: Cambridge University Press
Keywords: Bioremediation; One-factor-at-a-time; Response surface methodology
Depositing User: Mohamad Jefri Mohamed Fauzi
Date Deposited: 10 Jan 2022 08:31
Last Modified: 10 Jan 2022 08:31
Altmetrics: http://www.altmetric.com/details.php?domain=psasir.upm.edu.my&doi=10.1017/S0954102020000358
URI: http://psasir.upm.edu.my/id/eprint/87009
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