In order to evaluate the environmental benefits of energy industrial symbiosis networks with the inclusion of renewable technologies, a model that minimises greenhouse gases emissions has been developed. A validation of the model has been carried out comparing the results with those calculated with a life cycle assessment of a reference case. The study demonstrates that energy industrial symbiosis networks integrating renewable energy technologies have the potential to significantly reduce greenhouse gases emissions and suggests a methodology to optimise energetic symbiosis connections inside eco-industrial parks.
Evaluating the environmental benefit of energy symbiosis networks in eco-industrial parks / Marinelli, Simona; Butturi, MARIA ANGELA; Rimini, Bianca; Gamberini, Rita; Marinello, Samuele. - 53:2(2020), pp. 13082-13087. (Intervento presentato al convegno 21st IFAC World Congress 2020 tenutosi a Berlin, Germany (virtual) nel July 12-17, 2020) [10.1016/j.ifacol.2020.12.2260].
Evaluating the environmental benefit of energy symbiosis networks in eco-industrial parks
Simona Marinelli
;Maria Angela Butturi;Bianca Rimini;Rita Gamberini;Samuele Marinello
2020
Abstract
In order to evaluate the environmental benefits of energy industrial symbiosis networks with the inclusion of renewable technologies, a model that minimises greenhouse gases emissions has been developed. A validation of the model has been carried out comparing the results with those calculated with a life cycle assessment of a reference case. The study demonstrates that energy industrial symbiosis networks integrating renewable energy technologies have the potential to significantly reduce greenhouse gases emissions and suggests a methodology to optimise energetic symbiosis connections inside eco-industrial parks.File | Dimensione | Formato | |
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