Road transports release a significant percentage of global CO2. In this field, one of the most effective solution is the reduction of vehicles' mass, which can be obtained through the substitution of heavy metals with light alloys (i.e. aluminum). In addition, in order to maximize the environmental benefits a current trend is to use secondary material (from scrap) in substitution to primary one (from ore). For this purpose, the present case study compared the environmental burden related to the same light-weighted automotive component (suspension cross beam) made in primary aluminum (from ore) or in secondary one (from scrap). In particular, a cradle to grave Life Cycle Assessment has been analyzed through the software SimaPro 7.3 with the Recipe impact method. The study highlighted and confirmed the relevance of the environmental benefits related to recycling and secondary material use.

A comparative cradle-to gate impact assessment: Primary and secondary aluminum automotive components case

Cecchel, S.
;
Collotta, M.;Cornacchia, G.;Panvini, A.;Tomasoni, G.
2018-01-01

Abstract

Road transports release a significant percentage of global CO2. In this field, one of the most effective solution is the reduction of vehicles' mass, which can be obtained through the substitution of heavy metals with light alloys (i.e. aluminum). In addition, in order to maximize the environmental benefits a current trend is to use secondary material (from scrap) in substitution to primary one (from ore). For this purpose, the present case study compared the environmental burden related to the same light-weighted automotive component (suspension cross beam) made in primary aluminum (from ore) or in secondary one (from scrap). In particular, a cradle to grave Life Cycle Assessment has been analyzed through the software SimaPro 7.3 with the Recipe impact method. The study highlighted and confirmed the relevance of the environmental benefits related to recycling and secondary material use.
2018
2018
Ateneo di appartenenza
PE8_9 Materials engineering (biomaterials, metals, ceramics, polymers, composites,…)
PE8_11 Product design, ergonomics, man-machine interfaces
PE8_12 Sustainable design (for recycling, for environment, eco-design)
PE8_10 Production technology, process engineering
Esperti anonimi
Inglese
Nazionale
ELETTRONICO
112
2
46
55
10
Aluminum process; Automotive components; Life cycle assessment (lca); Primary aluminum; Recycling; Secondary aluminum; Condensed Matter Physics; Mechanics of Materials; 2506
http://www.metallurgia-italiana.net/eng/pubblicazioni.php?idc=11
no
5
info:eu-repo/semantics/article
262
Cecchel, S.; Collotta, M.; Cornacchia, G.; Panvini, A.; Tomasoni, G.
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11379/505914
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