Life cycle assessment of winter road maintenance
Artikel i vetenskaplig tidskrift, 2020
Methods: Life cycle assessment (LCA) is used to evaluate the environmental impact of the functional unit “average winter road maintenance in Norway on national and county roads per km.lane.” The ReCiPe (hierarchy) method was used to identify and categorize emissions related to WRM to show how different factors affect the system and to reveal hidden emissions hotspots. Real-time data from WRM vehicles were used to determine how fuel consumption is affected by gradient and weather. Producers and operators provided other relevant information on WRM vehicles. Official reports supplied information on deicer quantities used and the total distance driven by WRM vehicles in Norway.
Results and discussion: The quantity of deicer used is the main source of emissions contributing toward all impact categories. The effect of deicer is likely to be even higher in certain impact categories. The environmental impact of the deicer after application is not included. The representation of WRM in existing emissions data is limited despite the considerable amount of deicer applied and the long distances that WRM vehicles travel. The results document how energy use throughout the system is another important source of emissions. Various parameters, such as road gradient, vehicle properties, driver behavior, and weather, affect the fuel consumption of WRM vehicles, with weather being the most important of these.
Conclusions: Significant potential for emissions reductions from WRM was found, and WRM operations should be included in cold-climate road LCA studies. The environmental impacts of deicer application are especially high compared to the mechanical clearing of roads and contribute strongly to impact categories such as terrestrial, freshwater, and human toxicity and to the formation of particulate matter.
Life cycle assessment
De-icer
Global warming
NaCl
Life cycle emission
Deicer
Winter road
Toxicity
Författare
H. Vignisdottir
Norges teknisk-naturvitenskapelige universitet
Babak Ebrahimi
Chalmers, Arkitektur och samhällsbyggnadsteknik, Byggnadsteknologi
G. K. Booto
Norges teknisk-naturvitenskapelige universitet
Reyn O’Born
Universitetet i Agder
H. Brattebø
Norges teknisk-naturvitenskapelige universitet
Holger Wallbaum
Chalmers, Arkitektur och samhällsbyggnadsteknik, Byggnadsteknologi
R. A. Bohne
Norges teknisk-naturvitenskapelige universitet
International Journal of Life Cycle Assessment
0948-3349 (ISSN) 1614-7502 (eISSN)
Vol. 25 3 646-661Ämneskategorier
Transportteknik och logistik
Infrastrukturteknik
DOI
10.1007/s11367-019-01682-y