4.7 Article

Digestion of frozen/thawed food waste in the hybrid anaerobic solid-liquid system

Journal

WASTE MANAGEMENT
Volume 28, Issue 9, Pages 1654-1659

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.wasman.2007.05.021

Keywords

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Funding

  1. National Environment Agency of the Ministry of the Environment and Water Resources of the Republic of Singapore

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The hybrid anaerobic solid-liquid (HASL) system, which is a modified two-phase anaerobic digester, is to be used in all industrial scale operation to minimize disposal of food waste at incineration plants in Singapore. The aim of the present research was to evaluate freezing/thawing of food waste as a pre-treatment for its anaerobic digestion in the HASL system. The hydrolytic and fermentation processes in the acidogenic reactor were enhanced when food waste was frozen for 24 h at -20 degrees C and then thawed for 12 h at 25 degrees C (experiment) in comparison with fresh food waste (control). The highest dissolved COD concentrations in the leachate from the acidogenic reactors were 16.9 g/l oil day 3 in the control and 18.9 g/l on day 1 in the experiment. The highest VFA concentrations in the leachate from the acidogenic reactors were 11.7 g/l on day 3 in the control and 17.0 gill on day I in the experiment. The same Volume of methane was produced during 12 days in the control and 7 days in the experiment. It gave the opportunity to diminish operational time of batch process by 42%. The effect of freezing/thawing of food waste as pre-treatment for its anaerobic digestion in the HASL system was comparable with that of thermal pre-treatment of food waste at 150 degrees C for 1 h. However, estimation of energy required either to heat the suspended food waste to 150 degrees C or to freeze the same quantity of food waste to -20 'C showed that freezing pre-treatmcnt consumes about 3 times less energy than thermal pre-treatment. (c) 2007 Elsevier Ltd. All rights reserved.

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