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http://dx.doi.org/10.15681/KSWE.2015.31.2.151

A Study on Optimum Conditions Derivation on Thermal Hydrolysis of Food Wastewater and the Applicability of the Thermal Solubilization in Biological Denitrification Process  

Lee, Ki Hee (Department of Environmental Energy Engineering, Graduate School Kyonggi University)
You, Hee Gu (Department of Environmental Energy Engineering, Graduate School Kyonggi University)
Joo, Hyun Jong (Department of Environmental Energy Engineering, Kyonggi University)
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Abstract
The aim of this research is to derive an optimum operating condition for the thermal solubilization equipment that is employed to increase concentration of soluble organic materials and to assess whether it would be possible to use the waste sludge generated by thermal solubilization reaction as an external carbon source in biological denitrification process. For the purpose, we have constituted a laboratory-size thermal solubilization equipment and have assessed thermal hydrolysis efficiency based on various reaction temperature and reaction time. We have also derived SDNR using the waste sludge generated by thermal solubilization reaction through a batch experiment. As a result of research, the highest thermal hydrolysis efficiency of about 42.8% was achieved at $190^{\circ}C$ of reaction temperature and at 90 minutes of reaction time. And when SDNR was derived using the waste sludge, the value obtained was $0.080{\sim}0.094\;g\;NO_3{^-}-N/g\;MLVSS{\cdot}day$, showing SDNR that is higher than that obtained by the results of existing researches that used common wastewater as an external carbon source. Accordingly, in view of the fact that food wastes vary quite a bit in characteristics based on the area they are generated from and seasonal change, it seems that a flexible operation of thermal solubilization equipment is required through on-going monitoring of food wastes that are imported to food wastes recycling facilities.
Keywords
Food waste; SDNR; Solubilization; Thermal hydrolysis;
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