Green-Dyeing Processes of Plant and Animal Fibers Using Folium, an Ancient Natural Dye

Andrea Marangon, Francesca Robotti, Elisa Cala, Alessandro Croce, Maurizio ACETO, Domenico D'Angelo, Giorgio GATTI

Risultato della ricerca: Contributo su rivistaArticolo in rivistapeer review

Abstract

Featured Application: Use of ancient materials for new technologies. In recent decades, fabric-dyeing processes involved greener processes because, since ancient times, dyers used mordants based on metals to make the color better adhere to the textile fibers, but this is the reason for their increased pollution. To develop new strategies, attention was focused on finding the best condition for a dyeing method for natural fibers of vegetable and animal origin (cotton and wool) using an ancient natural dye known as folium. Folium was used mostly in miniature painting in an attempt to avoid the use of classical mordants and solvents. To this purpose, plasma treatment and chitosan coating were employed. Firstly, the textile fibers were analyzed through infrared spectroscopies to verify surface modifications; subsequently, the post-treatment morphological variations were observed via scanning electron microscopy. Both techniques highlighted a significant variation of the surface functional groups due to plasma treatments with He-O2 mixtures, which allowed a greater adhesion of chitosan on the fiber’s surface. Finally, the color strength of samples dyed with folium was tested through fiber optic reflectance spectroscopy, and the folium absorbance peaks were still detected after fabric washing. It is thus shown how an ancient, traditional raw matter has become relevant for developing new modern technologies.
Lingua originaleInglese
pagine (da-a)1-12
Numero di pagine12
RivistaAPPLIED SCIENCES
Volume14
Numero di pubblicazione20
DOI
Stato di pubblicazionePubblicato - 2024

Keywords

  • chitosan mordant
  • dyeing process
  • fiber optic reflectance spectroscopy
  • folium
  • natural dye
  • natural fibers
  • plasma treatment
  • scanning electron microscopy
  • spectroscopic characterizations

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