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Title Recycling of multilayer packaging waste with switchable anionic surfactants
ID_Doc 10161
Authors Vagnoni, M; Pitacco, W; Arpaia, V; Catelli, E; Gualandi, C; Mastroddi, R; Mezzi, A; Samori, C; Sciutto, G; Tagliavini, E; Galletti, P
Title Recycling of multilayer packaging waste with switchable anionic surfactants
Year 2023
Published
DOI 10.1016/j.resconrec.2023.107141
Abstract Switchable Anionic Surfactants (SAS) were used for delaminating flexible packaging waste composed of various plastic layers and aluminium, thereby promoting the recycling of such waste streams from a circular economy perspective. The delamination protocol was optimized on de-pulped food and beverage cartons containing low-density polyethylene (LDPE) and aluminium, varying the carboxylic acid and its counterion constituting the SAS (C8-C18 carboxylic acids as the anionic part; inorganic bases and primary, secondary and tertiary amines as the cationic one) their molar ratio (carboxylic acid: base molar ratio from 1:1 to 1:3), SAS concentration (0.15, 0.3 and 0.5 wt%), time (0.5-3 h) and material weight in input (1-10 wt%). High-quality LDPE and aluminium were separated and recovered by using a diluted solution of a surfactant based on lauric acid and triethanolamine (C12- TEA), with performances not achievable with other anionic or cationic surfactants available on the market. The C12-TEA solution was then applied to a large variety of multilayer waste materials composed of polypropylene and aluminium, polyolefins/polyethylene terephthalate/aluminium, giving a material separation dependant on the structure and composition of the material in input. At the end of the process, lauric acid was recovered from the aqueous solution used for washing the separated materials by tuning its water solubility with CO2.
Author Keywords Multilayer waste Delamination Surfactants,; Aluminium Polyolefins Polyethylene; terephthalate; CO2
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:001065933000001
WoS Category Engineering, Environmental; Environmental Sciences
Research Area Engineering; Environmental Sciences & Ecology
PDF https://doi.org/10.1016/j.resconrec.2023.107141
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