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Decolorization of the synthetic dye Remazol Brilliant Blue Reactive (RBBR) by Ganoderma lucidumon bio-adsorbent of the solid bleached sulfate paperboard coated with polyethylene terephthalate

Authors :
Rainert, Karine Thaise
Nunes, Hayssa Carolini Alamar
Gonçalves, Marcel Jefferson
Helm, Cristiane Vieira
Tavares, Lorena Benathar Ballod
Source :
Journal of Environmental Chemical Engineering; April 2021, Vol. 9 Issue: 2
Publication Year :
2021

Abstract

White rot fungi can secrete many types of extracellular oxidases that are involved in the degradation of lignin in natural lignocellulosic substrates. Solid bleached sulfate (SBS) paperboard coated with polyethylene terephthalate (PET) is a type of cellulose and hemicellulose based waste from the packaging industry for ready-to-eat foods. In this context, the objective of this study was to evaluate the discoloration of the Remazol Brilliant Blue Reactive (RBBR) dye by bioabsorbent, consisting of ligninolytic macrofungal mycelium supported on PET-coated SBS paper. This work involved three steps: first, to determine the residual concentration of Remazol Reactive Bright Blue (RBBR) dye in the effluent produced in a dyeing process, according to the dye concentrations most applied in the textile industry. In the second step, the solution with medium concentration of the RBBR dye was then treated with the bioabsorbent, composed of ligninolytic macrofungus mycelium supported on PET-coated SBS paper. In the third stage, the technical feasibility of reusing the bioabsorbent was evaluated. The effluent generated from dyeing baths and washes was collected and analyzed, providing a final effluent with an average residual concentration of 57.3 mg/L of dye. The results showed that higher concentrations of carbon and nitrogen gave rise to the bio-adsorbent with higher values of total proteins and enzymatic activity. The bio-adsorbent use and reuse tests showed 94% color removal for the RBBR dye over 30 days of reuse. The use of the bio-adsorbent for the decolorization of dyes and textile effluents is a potential efficient and low cost.

Details

Language :
English
ISSN :
22132929 and 22133437
Volume :
9
Issue :
2
Database :
Supplemental Index
Journal :
Journal of Environmental Chemical Engineering
Publication Type :
Periodical
Accession number :
ejs54937419
Full Text :
https://doi.org/10.1016/j.jece.2020.104990