This work is aimed at predicting the potential biogas and biomethane production, using the Organic Fraction of Municipal Solid Waste (OFMSW), in Italy, where 1388 Anaerobic Digestion (AD) plants (power of 7.4 TWh, equal to 640.4 ktep) are nowadays available. In order to compute the potential biogas and biomethane production in the 20 Italian regions, the data about OFMSW production in 2010-2013 period have been evaluated. The Italian production of OFMSW, that was 5.2 million tons in 2013 (18% of MSW), could be used inside bioreactors for producing biogas and digestate, that must be aerobically composted into a biofertiliser. In 2013, the Italian potential biogas production from OFMSW was 739 million m3, that is equal to 444 million m3 of biomethane. The highest biogas production from OFMSW was in Lombardy region (143 million m3), having a potential biomethane production of 86 million m3. The highest OFMSW production per inhabitant was in Emilia-Romagna region (142 kg). Yet, if OFMSW was 37% of MSW, the potential biogas and biomethane production should be increased: the biomethane production increase would be 486 million m3, of which the maximum would be in Sicily region. The biogas produced can be used for generating heat and electricity or upgraded into biomethane, distributed at dedicated stations and useful as biofuel for powering means of transport. This biofuel would replace natural gas, and, therefore, allow a reduction of GreenHouse Gas emissions of 200 g of CO2 kWh-1 (5.5 times lower) and the import of fossil fuels from abroad.

Comparetti, A., Febo, P., Greco, C., Orlando, S. (2015). Italian Potential Biogas and Biomethane Production from OFMSW. In Proceedings International Conference Ragusa SHWA “Safety, Health and Welfare in Agriculture, Agro-food and Forestry Systems” (pp.206-215). Failla S..

Italian Potential Biogas and Biomethane Production from OFMSW

COMPARETTI, Antonio;FEBO, Pierluigi;GRECO, Carlo;ORLANDO, SANTO
2015-01-01

Abstract

This work is aimed at predicting the potential biogas and biomethane production, using the Organic Fraction of Municipal Solid Waste (OFMSW), in Italy, where 1388 Anaerobic Digestion (AD) plants (power of 7.4 TWh, equal to 640.4 ktep) are nowadays available. In order to compute the potential biogas and biomethane production in the 20 Italian regions, the data about OFMSW production in 2010-2013 period have been evaluated. The Italian production of OFMSW, that was 5.2 million tons in 2013 (18% of MSW), could be used inside bioreactors for producing biogas and digestate, that must be aerobically composted into a biofertiliser. In 2013, the Italian potential biogas production from OFMSW was 739 million m3, that is equal to 444 million m3 of biomethane. The highest biogas production from OFMSW was in Lombardy region (143 million m3), having a potential biomethane production of 86 million m3. The highest OFMSW production per inhabitant was in Emilia-Romagna region (142 kg). Yet, if OFMSW was 37% of MSW, the potential biogas and biomethane production should be increased: the biomethane production increase would be 486 million m3, of which the maximum would be in Sicily region. The biogas produced can be used for generating heat and electricity or upgraded into biomethane, distributed at dedicated stations and useful as biofuel for powering means of transport. This biofuel would replace natural gas, and, therefore, allow a reduction of GreenHouse Gas emissions of 200 g of CO2 kWh-1 (5.5 times lower) and the import of fossil fuels from abroad.
8-set-2015
IV International Conference Ragusa SHWA "Safety, Health and Welfare in Agriculture, Agro-food and Forestry Systems"
Lodi, Milan
8-11 settembre 2015
IV
2015
2015
10
CD-ROM
Comparetti, A., Febo, P., Greco, C., Orlando, S. (2015). Italian Potential Biogas and Biomethane Production from OFMSW. In Proceedings International Conference Ragusa SHWA “Safety, Health and Welfare in Agriculture, Agro-food and Forestry Systems” (pp.206-215). Failla S..
Proceedings (atti dei congressi)
Comparetti, A.; Febo, P.; Greco, C.; Orlando, S.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/147889
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