Literature DB >> 23988463

Life cycle comparison of waste-to-energy alternatives for municipal waste treatment in Chilean Patagonia.

Alberto Bezama1, Carla Douglas, Jacqueline Méndez, Nóra Szarka, Edmundo Muñoz, Rodrigo Navia, Steffen Schock, Odorico Konrad, Claudia Ulloa.   

Abstract

The energy system in the Region of Aysén, Chile, is characterized by a strong dependence on fossil fuels, which account for up to 51% of the installed capacity. Although the implementation of waste-to-energy concepts in municipal waste management systems could support the establishment of a more fossil-independent energy system for the region, previous studies have concluded that energy recovery systems are not suitable from an economic perspective in Chile. Therefore, this work intends to evaluate these technical options from an environmental perspective, using life cycle assessment as a tool for a comparative analysis, considering Coyhaique city as a case study. Three technical alternatives were evaluated: (i) landfill gas recovery and flaring without energy recovery; (ii) landfill gas recovery and energy use; and (iii) the implementation of an anaerobic digestion system for the organic waste fraction coupled with energy recovery from the biogas produced. Mass and energy balances of the three analyzed alternatives have been modeled. The comparative LCA considered global warming potential, abiotic depletion and ozone layer depletion as impact categories, as well as required raw energy and produced energy as comparative regional-specific indicators. According to the results, the use of the recovered landfill gas as an energy source can be identified as the most environmentally appropriate solution for Coyhaique, especially when taking into consideration the global impact categories.

Keywords:  Coyhaique; MSW management; Patagonia; life cycle assessment; waste-to-energy alternatives

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Year:  2013        PMID: 23988463     DOI: 10.1177/0734242X13499810

Source DB:  PubMed          Journal:  Waste Manag Res


  1 in total

1.  An analysis of design strategies for circular economy through life cycle assessment.

Authors:  Christian Spreafico
Journal:  Environ Monit Assess       Date:  2022-02-14       Impact factor: 3.307

  1 in total

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