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Evaluation of Integrated Anaerobic Digestion and Hydrothermal Carbonization for Bioenergy Production
Published on: June 15, 2014
Energy utilization and recirculation of currant-finishing wastewater
A G Vlyssides1, E M P Barampouti, S T Mai
1National Technical University of Athens, School of Chemical Engineering, Laboratory of Organic and Chemical Technology, 9 Heroon Polytechniou Str., Zografou 15700, Athens, Greece. avlys@tee.gr
Abstract:
In this study, a new method for the treatment of currant-finishing wastewater was proposed in the context of the "clean technology" concept. This method consisted of two stages. In the first stage, the currant-finishing wastewater was recirculated in the currant-wash process and in the second stage this wastewater was utilized for the production of energy through anaerobic digestion. Recycling ratios from 0 to 95% were examined. By increasing the recycling ratio, effluent's COD increased from 3808 to 43,722mg/l, effluent's BOD from 681 to 5378mg/l, total sugars from 2.57 to 42.13g/l, total phosphorous from 0.79 to 5.14mg/l and total Kjeldahl nitrogen from 7.36 to 51.9mg/l while fresh water addition decreased from 6 to 0.3kg per kg of currants processed. The optimum recycling ratio range for the wastewater energy utilization proved to be 30-40%. In this range, the mass of COD and sugars digested was maximized resulting in the highest biogas production. Thus, the proposed system could be promising since water consumption is minimized and wastewater energy utilization is achieved rendering the process almost energetically self-sufficient.
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