Journal
JOURNAL OF CLEANER PRODUCTION
Volume 293, Issue -, Pages -Publisher
ELSEVIER SCI LTD
DOI: 10.1016/j.jclepro.2021.126105
Keywords
Swine wastewater; Fenton?s process; Coagulation; Biofiltration; Corbicula fluminea; Processes integration
Categories
Funding
- European Union through the European Fund for Regional Development (FEDER) within the COMPETE2020 [POCI010247FEDER033193]
- FCT (Fundacao para a Ciencia e Tecnologia, Portugal) [SFRH/BD/144096/2019]
- Foundation for Science and Technology e FCT (Portugal) [CEECIND/01207/2018]
- Fundação para a Ciência e a Tecnologia [SFRH/BD/144096/2019] Funding Source: FCT
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The study evaluated Fenton's process as an alternative treatment for swine effluent, integrating coagulation and biofiltration to improve depuration. Results showed that the integration of Fenton's process with biofiltration removed 91% of sCOD, while coagulation after Fenton's process achieved an 86% degradation rate of sCOD. The integration of treatment processes reduced luminescence inhibition to about 30%.
In this work, Fenton's process was evaluated as an alternative treatment of swine effluent. In order to improve depuration, coagulation and biofiltration were integrated with Fenton's peroxidation. With the optimum loads of 750 mg/L of hydrogen peroxide and iron, this process was able to remove 72% of sCOD and lowering Aliivibrio fischeri luminescence inhibition to 65%. On the other hand, integration between Fenton's process and biofiltration removed 91% of sCOD. Whereas, after coagulation sCOD degradation reaches 86%. Regarding to luminescence inhibition, the treatment processes integration can decrease it to about 30%. Coagulation and biofiltration after Fenton's process proved to be able to remove dissolved iron in the treated effluent and thus overcoming Fenton's process major disadvantage. (c) 2021 Elsevier Ltd. All rights reserved.
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