Immobilization of Metanil Yellow Decolorizing Mixed Culture FN3 Using Gelling Gum as Matrix for Bioremediation Application

Author:

Muliadi Fatin Natasha Amira,Halmi Mohd Izuan Effendi,Wahid Samsuri Bin AbdulORCID,Gani Siti Salwa AbdORCID,Mahmud Khairil,Shukor Mohd Yunus AbdORCID

Abstract

In this study, the Metanil Yellow (MY) decolorizing mixed culture, namely FN3, has been isolated from agriculture soil. The mixed culture was immobilized using gellan gum. In order to optimize the immobilization process for maximal dye decolorization, Response Surface Methodology (RSM) was performed. The optimal conditions for immobilization predicted by desirability function are 130 mg/L of MY dye concentration, 1.478% of gellan gum concentration, 50 beads and 0.6 cm of beads size with the percentage of decolorization of 90.378%. The correlation coefficients of the model (R2 and R2 adj) are 0.9767 and 0.9533, respectively. This indicates that the established model is suitable to predict the effectiveness of dye decolorization under the investigated condition. The immobilized beads of mixed culture FN3 were able to be reused up to 15 batches of decolorization. The immobilized cells also have high tolerance towards heavy metals. This was proven by higher dye decolorization rate by the immobilized cells even with the addition of heavy metals in the media. The decolorization potential of the mixed culture indicates that it could be useful for future bioremediation of soil contaminated sites and treatment solutions of water bodies polluted with MY dye.

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development

Reference48 articles.

1. Kinetic characteristics of bacterial azo-dye decolorization by Pseudomonas luteola

2. Bacterial decolorization of textile azo dye acid orange by staphylococcus hominis RMLRT03

3. Toxicity assessment and microbial degradation of azo dyes;Puvaneswari;Indian J. Exp. Boil.,2006

4. Degradation of Synthetic Azo Dyes of Textile Industry: a Sustainable Approach Using Microbial Enzymes

5. Microbial degradation of Azo Dyes: A review;Sudha;Int. J. Curr. Microbiol. Appl. Sci.,2014

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