Protocol to select efficient microorganisms to treat coffee wastewater
Josiane Ferreira Pires1, Dimitri Campos Viana2, Roberto Alves Braga2
1Department of Biology, Federal University of Lavras (UFLA), Brazil.
Journal of Environmental Management
|October 31, 2020
Summary
A selected bacterial consortium effectively treats coffee processing wastewater (CPWW), significantly reducing pollutants and eco-toxicity. This microbial inoculum offers a robust solution for CPWW biological treatment, regardless of its specific characteristics.
Area of Science:
- Environmental Microbiology
- Wastewater Treatment Technologies
- Applied Microbiology
Background:
- Coffee processing wastewater (CPWW) presents environmental challenges due to high organic/inorganic loads and low pH.
- Indigenous microbial communities in CPWW are diverse and possess potential for bioremediation.
- Effective treatment strategies are crucial for sustainable CPWW management and reuse.
Purpose of the Study:
- To select a robust microbial consortium from CPWW for efficient biological treatment.
- To evaluate the consortium's effectiveness in reducing key pollutant parameters in CPWW.
- To assess the impact of the microbial treatment on CPWW eco-toxicity.
Main Methods:
- Phenotypic assays were used to select a bacterial consortium from indigenous CPWW microbiota.
- The selected consortium, comprising specific strains of Serratia, Corynebacterium, and Acetobacter, was used as inoculum.
- Physico-chemical parameters (BOD, COD, N, P, pH) and eco-toxicity (Daphnia similis) were measured before and after treatment.
Main Results:
- The selected bacterial consortium demonstrated high activity (11.18 log CFU mL⁻¹).
- Significant reductions were achieved: 85% in biochemical oxygen demand (BOD), 60% in chemical oxygen demand (COD), and 80% in phosphorus and nitrogen.
- Eco-toxicity was reduced by over 59%, and the final pH shifted to a neutral range (7.5).
Conclusions:
- The selected microbial consortium is highly effective for the biological treatment of CPWW.
- The treatment significantly improves water quality by reducing pollutants and eco-toxicity.
- The robustness of the selected strains ensures efficient CPWW treatment irrespective of wastewater physico-chemical variations.
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