Integrated ozonation and biomethanization treatments of vinasse derived from ethanol manufacturing
Anaerobic digestion of vinasse derived from bioethanol manufacturing, in which total COD was found to be 68.56 ± 8.17 g/L, was studied in batch laboratory-scale reactors at mesophilic temperature (35 °C). The vinasse was subjected to a short ozonation pre-treatment (15 min) in which more than 50% re...
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Published in: | Journal of hazardous materials Vol. 188; no. 1; pp. 247 - 253 |
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Abstract | Anaerobic digestion of vinasse derived from bioethanol manufacturing, in which total COD was found to be 68.56
±
8.17
g/L, was studied in batch laboratory-scale reactors at mesophilic temperature (35
°C). The vinasse was subjected to a short ozonation pre-treatment (15
min) in which more than 50% reduction of phenols was observed, although the total organic carbon concentration remained approximately stable, indicating that the phenols were transformed into other simpler forms. The anaerobic biodegradability of raw and pre-treated vinasse was similar, reaching values close to 80% (COD). However, the methane yield coefficient and methane production rate enhanced by around 13.6% and 41.16%, respectively, when the ozonized vinasse was fed. These results indicate that the integration of chemical–biological treatments could be a viable option for the purification of this hazardous wastewater. |
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AbstractList | Anaerobic digestion of vinasse derived from bioethanol manufacturing, in which total COD was found to be 68.56 ± 8.17 g/L, was studied in batch laboratory-scale reactors at mesophilic temperature (35 °C). The vinasse was subjected to a short ozonation pre-treatment (15 min) in which more than 50% reduction of phenols was observed, although the total organic carbon concentration remained approximately stable, indicating that the phenols were transformed into other simpler forms. The anaerobic biodegradability of raw and pre-treated vinasse was similar, reaching values close to 80% (COD). However, the methane yield coefficient and methane production rate enhanced by around 13.6% and 41.16%, respectively, when the ozonized vinasse was fed. These results indicate that the integration of chemical-biological treatments could be a viable option for the purification of this hazardous wastewater. Anaerobic digestion of vinasse derived from bioethanol manufacturing, in which total COD was found to be 68.56 ± 8.17 g/L, was studied in batch laboratory-scale reactors at mesophilic temperature (35 °C). The vinasse was subjected to a short ozonation pre-treatment (15 min) in which more than 50% reduction of phenols was observed, although the total organic carbon concentration remained approximately stable, indicating that the phenols were transformed into other simpler forms. The anaerobic biodegradability of raw and pre-treated vinasse was similar, reaching values close to 80% (COD). However, the methane yield coefficient and methane production rate enhanced by around 13.6% and 41.16%, respectively, when the ozonized vinasse was fed. These results indicate that the integration of chemical–biological treatments could be a viable option for the purification of this hazardous wastewater. Anaerobic digestion of vinasse derived from bioethanol manufacturing, in which total COD was found to be 68.56A plus or minus 8.17g/L, was studied in batch laboratory-scale reactors at mesophilic temperature (35A degree C). The vinasse was subjected to a short ozonation pre-treatment (15min) in which more than 50% reduction of phenols was observed, although the total organic carbon concentration remained approximately stable, indicating that the phenols were transformed into other simpler forms. The anaerobic biodegradability of raw and pre-treated vinasse was similar, reaching values close to 80% (COD). However, the methane yield coefficient and methane production rate enhanced by around 13.6% and 41.16%, respectively, when the ozonized vinasse was fed. These results indicate that the integration of chemical-biological treatments could be a viable option for the purification of this hazardous wastewater. Anaerobic digestion of vinasse derived from bioethanol manufacturing, in which total COD was found to be 68.56±8.17g/L, was studied in batch laboratory-scale reactors at mesophilic temperature (35°C). The vinasse was subjected to a short ozonation pre-treatment (15min) in which more than 50% reduction of phenols was observed, although the total organic carbon concentration remained approximately stable, indicating that the phenols were transformed into other simpler forms. The anaerobic biodegradability of raw and pre-treated vinasse was similar, reaching values close to 80% (COD). However, the methane yield coefficient and methane production rate enhanced by around 13.6% and 41.16%, respectively, when the ozonized vinasse was fed. These results indicate that the integration of chemical–biological treatments could be a viable option for the purification of this hazardous wastewater. |
Author | García-García, I. Siles, J.A. Martín, M.A. Martín, A. |
Author_xml | – sequence: 1 givenname: J.A. surname: Siles fullname: Siles, J.A. email: a92siloj@uco.es – sequence: 2 givenname: I. surname: García-García fullname: García-García, I. email: isidoro.garcia@uco.es – sequence: 3 givenname: A. surname: Martín fullname: Martín, A. email: iq1mamaa@uco.es – sequence: 4 givenname: M.A. surname: Martín fullname: Martín, M.A. email: iq2masam@uco.es |
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Keywords | Ozonation Phenols Mesophilic biomethanization Ethanol Vinasse Methane Purification Biodegradability Waste treatment Laboratory scale Anaerobic digestion Waste water Ozonization Batchwise Anaerobe Chemical oxygen demand Mesophily Production Water quality Total organic carbon Manufacturing Biological treatment Reactor |
Language | English |
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g/L, was studied in batch... Anaerobic digestion of vinasse derived from bioethanol manufacturing, in which total COD was found to be 68.56±8.17g/L, was studied in batch laboratory-scale... Anaerobic digestion of vinasse derived from bioethanol manufacturing, in which total COD was found to be 68.56 ± 8.17 g/L, was studied in batch... Anaerobic digestion of vinasse derived from bioethanol manufacturing, in which total COD was found to be 68.56A plus or minus 8.17g/L, was studied in batch... |
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SubjectTerms | anaerobic digestion Applied sciences biodegradability Biodegradation, Environmental bioethanol Biological and medical sciences Biotechnology Carbon Chemical engineering chemical oxygen demand Crack opening displacement Environmental Restoration and Remediation - methods Ethanol Ethanol - chemical synthesis Ethyl alcohol Exact sciences and technology Fundamental and applied biological sciences. Psychology General purification processes General treatment and storage processes Industrial Waste - prevention & control manufacturing Mesophilic biomethanization Methane methane production Methods. Procedures. Technologies Others Ozonation Ozone - chemistry Phenols Pollution pretreatment Reactors Reduction temperature Various methods and equipments Vinasse Waste water Wastes wastewater Wastewaters Water Pollutants, Chemical - metabolism Water treatment and pollution |
Title | Integrated ozonation and biomethanization treatments of vinasse derived from ethanol manufacturing |
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