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> Projecting more sustainable product and service designs
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Projecting more sustainable product and service designs
Muñoz López N.
(Universidad de Zaragoza)
;
Valero Martín J.I.
(Universidad de Zaragoza)
;
Biedermann A.
(Universidad de Zaragoza)
;
Santolaya Sáenz J.L..
(Universidad de Zaragoza)
;
Fernández Vázquez A.
(Universidad de Zaragoza)
Resumen:
Product and service development based on sustainable criteria is one of the poles of innovation in design activity. Public policies, consumer preferences, and corporate social responsibility lead to the growing importance of applying sustainability principles in the current design process. However, to make this practice widespread, sustainability assessment must be included in the curricula of bachelor’s and master’s degrees in design, so that the graduates have the precise tools to use when they start their professional careers. Furthermore, sustainable design methods have mainly been applied to improve only the environmental behavior of products. In this work, a methodology that simultaneously evaluates environmental, economic, and social aspects was applied to project more sustainable designs of products and services. This approach was implemented in higher education to develop Bachelor’s and Master’s degree final projects by design engineering students. Collaboration with different companies and institutions allowed the study of a number of cases. The production process of a cash management machine, the service provided by a public nursery school, and the development of an itinerary exhibition were addressed. In each case, product and service requirements were analyzed, sustainability indicators were obtained, and more sustainable designs could be proposed. This experience is also part of a global strategy at the University of Zaragoza to support the implementation of the UN’s Sustainable Development Goals, enhancing sustainability education. The intention of this paper is to present a methodology for more sustainable design, and examples of its application that other teachers can easily follow when teaching design of products or services. © 2021 by the authors. Licensee MDPI, Basel, Switzerland.
Idioma:
Inglés
DOI:
10.3390/su132111872
Año:
2021
Publicado en:
Sustainability (Switzerland)
13, 21 (2021), 11872 [20 pp]
ISSN:
2071-1050
Factor impacto JCR:
3.889 (2021)
Categ. JCR:
ENVIRONMENTAL STUDIES
rank: 57 / 128 = 0.445
(2021)
- Q2
- T2
Categ. JCR:
ENVIRONMENTAL SCIENCES
rank: 133 / 279 = 0.477
(2021)
- Q2
- T2
Categ. JCR:
GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
rank: 35 / 47 = 0.745
(2021)
- Q3
- T3
Categ. JCR:
GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
rank: 7 / 9 = 0.778
(2021)
- Q4
- T3
Factor impacto CITESCORE:
5.0 -
Social Sciences
(Q1) -
Engineering
(Q1) -
Energy
(Q2) -
Environmental Science
(Q2)
Factor impacto SCIMAGO:
0.664 -
Energy Engineering and Power Technology
(Q1) -
Renewable Energy, Sustainability and the Environment
(Q1) -
Management, Monitoring, Policy and Law
(Q1) -
Geography, Planning and Development
(Q1)
Financiación:
info:eu-repo/grantAgreement/ES/UZ/UZ2020-TEC-02
Tipo y forma:
Artículo (Versión definitiva)
Área (Departamento):
Área Expresión Gráfica en Ing.
(
Dpto. Ingeniería Diseño Fabri.
)
Debe reconocer adecuadamente la autoría, proporcionar un enlace a la licencia e indicar si se han realizado cambios. Puede hacerlo de cualquier manera razonable, pero no de una manera que sugiera que tiene el apoyo del licenciador o lo recibe por el uso que hace.
Exportado de SIDERAL (2023-05-18-13:41:22)
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Registro creado el 2022-02-08, última modificación el 2023-05-19
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