What if everyone becomes a sharer? A quantification of the environmental impact of access-based consumption for household laundry activities
Artikel i vetenskaplig tidskrift, 2020

In order to meet the EU's climate and resource efficiency targets, changes in our daily-life behaviours, as well as business models, are urgently necessary. More insights are needed to make real changes based on research with a systems perspective. We developed a system dynamics model to analyse the environmental benefits of a transition from ownership-based to access-based household laundry activities. The model considers demographic, technological and behavioural aspects and thereby assesses the environmental impact of laundry activities. The model is applied to the Swedish as well as the European context and allows cross-country comparisons. The results indicate a significant potential of the sharing economy. The higher utilisation of shared machines and extended lifespans of the machines can cut greenhouse gas emissions by a third and lower raw material usage overall and lower primary raw material in production due to higher recycling rates. The carbon intensity of the energy mix is a crucial factor for the environmental consequences that arise through changes in energy usage due to sharing economy practices. This case study shows the value of adopting policies that could promote sharing and extended life spans.

System dynamics

Environmental impact analysis

Washing machine

Sharing economy

Access-based consumption

Författare

Raphael Wasserbaur

Linköpings universitet

Tomohiko Sakao

Linköpings universitet

Maria Ljunggren Söderman

Chalmers, Teknikens ekonomi och organisation, Environmental Systems Analysis

Andrius Plepys

Lunds universitet

Carl Dalhammar

Lunds universitet

Resources, Conservation and Recycling

09213449 (ISSN) 18790658 (eISSN)

Vol. 158 104780

Mistra REES – Resource-Efficient and Effective Solutions

Stiftelsen för miljöstrategisk forskning (Mistra), 2016-01-01 -- 2019-12-31.

Ämneskategorier

Annan naturresursteknik

Miljöledning

Energisystem

DOI

10.1016/j.resconrec.2020.104780

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Senast uppdaterat

2023-09-12