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September 10, 2025

Effective decolorization of Direct blue-1 dye by Bacillus cereus isolate for its possible application in environmental sustainability

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Authors

MTManikant TripathiDr. Ram Manohar Lohia Avadh UniversityNPN. N. PathakDr. Ram Manohar Lohia Avadh UniversityGYGaurav YadavIndian Institute of Technology Ropar

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Overview

Isolation of Bacillus cereus showed 97% decolorization of azo dye in wastewater, indicating its potential in bacterial remediation.

Key Points

  • The maximum decolorization of direct blue-1 dye reached 97%, highlighting effective bacterial remediation.
  • Bacillus cereus was isolated from dye-contaminated wastewater, proving its potential in environmental sustainability.
  • The study optimized cultural conditions for decolorization, achieving this at a dye concentration of 200 mg/l.
  • Morphological and genetic analysis confirmed the bacterial identification, indicating reliability in treatment applications.

Cite This Study

Tripathi et al. (2025) studied this question.

synapsesocial.com/papers/68c1a77a54b1d3bfb60e0d15https://doi.org/10.69709/susproc.2025.118221
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Optimized Decolorization of Methylene Blue by Bacillus cereus: A Genomic and Analytical Approach2026
  2. 2Biodegradation of Azo Dyes in Synthetic Medium and Textile Effluent using a Potent Bacterium Bacillus sp. TDS50 and its Extracellular Metabolites2025
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  4. 4Elucidating the Multi-Enzymatic Mechanism of Bacterial Decolorization of Azo and Indigoid Dyes: An Integrated Study of Degradation Pathways and Molecular Docking2026
  5. 5Microbial decolorization of a textile azo dye <scp>N</scp>ovacron <scp>B</scp>lue by natural inhabitant bacteria2025