Literature DB >> 23381970

Potential for energy generation from anaerobic digestion of food waste in Australia.

Xian Fang Lou1, Jaya Nair, Goen Ho.   

Abstract

Published national and state reports have revealed that Australia deposits an average of 16 million Mg of solid waste into landfills yearly, of which approximately 12.6% is comprised of food. Being highly biodegradable and possessing high energy content, anaerobic digestion offers an attractive treatment option alternative to landfilling. The present study attempted to identify the theoretical maximum benefit of food waste digestion in Australia with regard to energy recovery and waste diversion from landfills. The study also assessed the scope for anaerobic process to utilize waste for energy projects through various case study scenarios. Results indicated anaerobic digestion of total food waste generated across multiple sites in Australia could generate 558 453 dam(3) of methane which translated to 20.3 PJ of heating potential or 1915 GWe in electricity generation annually. This would contribute to 3.5% of total current energy supply from renewable sources. Energy contribution from anaerobic digestion of food waste to the total energy requirement in Australia remains low, partially due to the high energy consumption of the country. However its appropriateness in low density regions, which are prevalent in Australia, may allow digesters to have a niche application in the country.

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Year:  2013        PMID: 23381970     DOI: 10.1177/0734242X12474334

Source DB:  PubMed          Journal:  Waste Manag Res


  2 in total

1.  Identification and characterization of odorous gas emission from a full-scale food waste anaerobic digestion plant in China.

Authors:  Xin Kong; Jianguo Liu; Lianhai Ren; Minying Song; Xiaowei Wang; Zhe Ni; Xiaoqin Nie
Journal:  Environ Monit Assess       Date:  2015-09-12       Impact factor: 2.513

2.  Government intervention in municipal waste collection with a sustainable approach: a robust bi-level problem.

Authors:  Afrouz Rahmandoust; Ashkan Hafezalkotob; Bijan Rahmani Parchikolaei; Amir Azizi
Journal:  Environ Dev Sustain       Date:  2022-02-23       Impact factor: 3.219

  2 in total

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