: In the present global health emergency, face masks, gowns, caps, gloves play a key role in limiting the diffusion of the COVID-19 pandemic, by acting as physical barriers to avoid droplets and filtrate exhalations coming from infected subjects. Since the most widespread devices are disposable products made of plastic or rubber materials, this means that relevant quantities of fossil resources are consumed, and huge amounts of wastes are generated. Currently the end of life of personal protective equipment (PPE) represents a problem in environmental, economic, and social terms. The market considers two possible disposal scenarios: incineration with energy recovery or landfill. In both cases, significant impacts are achieved both on the environment and on human health. This study aims to propose and validate a new scenario for PPE based on material reuse for bituminous conglomerates. The Life Cycle Assessment methodology and the experimental tests has been used to assess the environmental impacts in terms of both ReCiPe midpoints and endpoints and for demonstrate the technical feasibility of this new scenario. From an environmental point of view, relevant benefits were observed in comparison with the standard incineration for energy recovery or disposal in landfill.

(2023). Reuse of end-of-life personal protective equipment in hot asphalt mixtures: an environmental evaluation . Retrieved from https://hdl.handle.net/10446/284070

Reuse of end-of-life personal protective equipment in hot asphalt mixtures: an environmental evaluation

Landi, Daniele;Spreafico, Christian
2023-01-01

Abstract

: In the present global health emergency, face masks, gowns, caps, gloves play a key role in limiting the diffusion of the COVID-19 pandemic, by acting as physical barriers to avoid droplets and filtrate exhalations coming from infected subjects. Since the most widespread devices are disposable products made of plastic or rubber materials, this means that relevant quantities of fossil resources are consumed, and huge amounts of wastes are generated. Currently the end of life of personal protective equipment (PPE) represents a problem in environmental, economic, and social terms. The market considers two possible disposal scenarios: incineration with energy recovery or landfill. In both cases, significant impacts are achieved both on the environment and on human health. This study aims to propose and validate a new scenario for PPE based on material reuse for bituminous conglomerates. The Life Cycle Assessment methodology and the experimental tests has been used to assess the environmental impacts in terms of both ReCiPe midpoints and endpoints and for demonstrate the technical feasibility of this new scenario. From an environmental point of view, relevant benefits were observed in comparison with the standard incineration for energy recovery or disposal in landfill.
2023
Inglese
30th CIRP Life Cycle Engineering Conference
116
420
425
online
Netherlands
Elsevier
LCE 2023: The 30th CIRP Life Cycle Engineering Conference, New Brunswick, USA, May 15-17, 2023
30
New Brunswick (USA)
15-17 May 2023
internazionale
contributo
Settore IIND-03/B - Disegno e metodi dell'ingegneria industriale
Circula Economy; DPI; Enviromental impact; Reuse
info:eu-repo/semantics/conferenceObject
5
Landi, Daniele; Marconi, M.; Bocci, E.; Gianvincenzi, M.; Spreafico, Christian
1.4 Contributi in atti di convegno - Contributions in conference proceedings::1.4.01 Contributi in atti di convegno - Conference presentations
open
Non definito
273
(2023). Reuse of end-of-life personal protective equipment in hot asphalt mixtures: an environmental evaluation . Retrieved from https://hdl.handle.net/10446/284070
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10446/284070
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