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Improvement of anaerobic digestion of sewage sludge through microwave pre-treatment

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Identificadores
URI: https://hdl.handle.net/10481/100690
DOI: https://doi.org/10.1016/j.jenvman.2016.03.048
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Auteur
Serrano, Antonio; Siles, José Ángel; Martín, María Ángeles; Chica, Arturo F.; Estévez-Pastor, F.S.; Toro-Baptista, Enrique
Editorial
Elsevier
Materia
Microwave pre-treatment
 
Mesophilic anaerobic digestion
 
Optimization
 
Sewage sludge
 
Specific energy applied
 
kinetics
 
Date
2016-07-15
Referencia bibliográfica
Journal of Environmental Management, 2016, Volume 177, Pages 231-239
Patrocinador
Department of Inorganic Chemistry and Chemical Engineering, University of Cordoba. The authors are very grateful to the Spanish Ministry of Science and Innovation for funding this research through Project CTM2011-26350, and to EMASESA for supporting this project. We also wish to express our gratitude to Inmaculada Bellido and María Luisa López for their contribution to this research.
Résumé
Sewage sludge generated in the activated sludge process is a polluting waste that must be treated adequately to avoid important environmental impacts. Traditional management methods, such as landfill disposal or incineration, are being ruled out due to the high content in heavy metal, pathogens, micropolluting compounds of the sewage sludge and the lack of use of resources. Anaerobic digestion could be an interesting treatment, but must be improved since the biomethanisation of sewage sludge entails low biodegradability and low methane production. A microwave pre-treatment at pilot scale is proposed to increase the organic matter solubilisation of sewage sludge and enhance the biomethanisation yield. The operational variables of microwave pre-treatment (power and specific energy applied) were optimised by analysing the physicochemical characteristics of sewage sludge (both total and soluble fraction) under different pre-treatment conditions. According to the variation in the sCOD and TN concentration, the optimal operation variables of the pre-treatment were fixed at 20,000 J/g TS and 700 W. A subsequent anaerobic digestion test was carried out with raw and pre-treated sewage sludge under different conditions (20,000 J/g TS and 700 W; 20,000 J/g TS and 400 W; and 30,000 J/g TS and 400 W). Although stability was maintained throughout the process, the enhancement in the total methane yield was not high (up to 17%). Nevertheless, very promising improvements were determined for the kinetics of the process, where the rG and the OLR increased by 43% and 39%, respectively, after carrying out a pre-treatment at 20,000 J/g TS and 700 W.
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