The Italian traditional sector of dimension stones (mostly marbles and granites) has begun to recognize the importance of improving its sustainability. Nevertheless, a lot of different variables, sometimes in conflict, influence the production system from the economical, environmental and social point of view. As a consequence, a global and holistic approach is required. The on-going study aims to provide some tools facilitating the analysis of this complex system through the integration of the Life Cycle Thinking and the System Dynamic (SD) Approach. On-site data were collected in order to perform a more accurate Life Cycle Assessment (LCA) with boundaries from-cradle-to-gate. An SD model was then developed to interlink the obtained values of environmental potential impacts with economical aspects and to dynamically simulate the behaviour of the system.
Life Cycle Assessment and System Dynamics: an integrated approach for the dimension stone sector / Bianco, Isabella; Blengini, GIOVANNI ANDREA. - ELETTRONICO. - (2016), pp. 398-406. ((Intervento presentato al convegno X Convegno dell’Associazione Rete Italiana LCA 2016 tenutosi a Ravenna nel 23-24 June 2016.
Life Cycle Assessment and System Dynamics: an integrated approach for the dimension stone sector
BIANCO, ISABELLA;BLENGINI, GIOVANNI ANDREA
2016
Abstract
The Italian traditional sector of dimension stones (mostly marbles and granites) has begun to recognize the importance of improving its sustainability. Nevertheless, a lot of different variables, sometimes in conflict, influence the production system from the economical, environmental and social point of view. As a consequence, a global and holistic approach is required. The on-going study aims to provide some tools facilitating the analysis of this complex system through the integration of the Life Cycle Thinking and the System Dynamic (SD) Approach. On-site data were collected in order to perform a more accurate Life Cycle Assessment (LCA) with boundaries from-cradle-to-gate. An SD model was then developed to interlink the obtained values of environmental potential impacts with economical aspects and to dynamically simulate the behaviour of the system.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2644625
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