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Integrated economic and environmental assessment of waste policy instruments

Maria Ljunggren Söderman (Institutionen för energi och miljö, Miljösystemanalys) ; Ola Eriksson ; Anna Björklund ; Göran Östblom ; Tomas Ekvall ; Göran Finnveden ; Yevgeniya Arushanyan ; Jan-Olov Sundqvist
Sustainability (2071-1050). Vol. 8 (2016), 5, p. 411.
[Artikel, refereegranskad vetenskaplig]

The need for new policy instruments supporting the on-going transition from end-of-pipe waste treatment to resource management has been recognized in European policy. Instruments need to be carefully assessed before implementation to promote the desired changes and avoid problem shifting. Mathematical models may assist policy makers in such assessments. This paper presents a set of soft-linked models for assessing the economic and environmental impacts of policy instruments for both the prevention and management of waste and discusses its strengths and limitations. Consisting of (1) a macro-economic model, (2) a systems engineering model for waste management and (3) a life cycle assessment model for waste management, the set is primarily suited to assessing market-based instruments and environmental regulations. Considerable resources were needed for developing and using the set, and there are clear limits as to what can be addressed. However, if only one of the models had been used, neither the range of instruments nor the scope of impacts would have been possible to cover. Furthermore, soft-linked models allow many disciplines to contribute within one harmonized framework. Such integrated assessments may become increasingly useful for continuing the implementation of policy for sustainable governance of society’s material resources.

Nyckelord: waste policy; waste prevention; waste management; CGE models; systems engineering models; life cycle assessment; life cycle sustainability analysis



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Denna post skapades 2016-04-26. Senast ändrad 2016-08-15.
CPL Pubid: 235250

 

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Institutioner (Chalmers)

Institutionen för energi och miljö, Miljösystemanalys

Ämnesområden

Energi
Hållbar utveckling
Miljöteknik

Chalmers infrastruktur