Ultrasound-Stimulated PVA Microbubbles as a Green and Handy Tool for the Cleaning of Cellulose-Based Materials

Author:

Severini Leonardo1ORCID,D’Andrea Alessia1,Redi Martina1,Dabagov Sultan B.234ORCID,Guglielmotti Valeria2,Hampai Dariush2ORCID,Micheli Laura1ORCID,Cancelliere Rocco1ORCID,Domenici Fabio1ORCID,Mazzuca Claudia1ORCID,Paradossi Gaio1ORCID,Palleschi Antonio1ORCID

Affiliation:

1. Department of Chemical Science and Technologies, University of Rome “Tor Vergata”, Via Della Ricerca Scientifica 1, 00133 Rome, Italy

2. INFN-LNF, XLab Frascati, Via Enrico Fermi 54, 00044 Rome, Italy

3. RAS P.N. Lebedev Physical Institute, Leninsky pr 53, 119991 Moscow, Russia

4. National Research Nuclear University MEPhI, Kashirskoe Sh. 31, 115409 Moscow, Russia

Abstract

One of the main issues in the cultural heritage field of restoration chemistry is the identification of greener and more effective methods for the wet cleaning of paper artefacts, which serve as witnesses to human history and custodians of cultural values. In this context, we propose a biocompatible method to perform wet cleaning on paper based on the use of 1 MHz ultrasound in combination with water-dispersed polyvinyl alcohol microbubbles (PVAMBs), followed by dabbing with PVA-based hydrogel. This method can be applied to both old and new papers. FTIR spectroscopy, X-ray diffraction, HPLC analysis, pH measurements and tensile tests were performed on paper samples, to assess the efficacy of the cleaning system. According to the results, ultrasound-activated PVAMB application allows for an efficient interaction with rough and porous cellulose paper profiles, promoting the removal of cellulose degradation byproducts, while the following hydrogel dabbing treatment guarantees the removal of cleaning materials residues. Moreover, the results also pointed out that after the treatment no thermal or mechanical damages had affected the paper. In conclusion, the readability of these kinds of artifacts can be improved without causing an alteration of their structural properties, while mitigating the risk of ink diffusion.

Publisher

MDPI AG

Subject

Polymers and Plastics,Organic Chemistry,Biomaterials,Bioengineering

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