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Original Research or Treatment Papers

The Effect of a Plasma Treatment on the Aging Behavior of Selected Artist Colorants

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Pages 177-192 | Received 29 Aug 2022, Accepted 14 Mar 2023, Published online: 30 Mar 2023

References

  • Aibéo, C., E. Egel, M. Pamplona, and S. Simon. 2014. “Cleaning graffiti and soot with atmospheric plasma.” In Berliner Beiträge zur Archäometrie, Kunsttechnologie und Konservierungswissenschaft, Vol. 22, edited by I. Reiche, 69–76. Berlin: Rathgen-Forschungslabor, Staatliche Museen zu Berlin.
  • Barberio, M., E. Skantzakis, S. Sorieul, and P. Antici. 2019. “Pigment Darkening as Case Study of In-Air Plasma-Induced Luminescence.” Science Advances 5 (6): eaar6228. doi:10.1126/sciadv.aar6228
  • Birresborn, L. 2017. Untersuchungen zur Wirkung von ionisierter Luft auf Bindemittel und Pigmente. Potsdam: FHP Verlag.
  • Brooker, M. H., S. Sunder, P. Taylor, and V. J. Lopata. 1983. “Infrared and Raman Spectra and X-ray Diffraction Studies of Solid Lead(II) Carbonates.” Canadian Journal of Chemistry 61 (3): 494–502. doi:10.1139/v83-087.
  • Brostoff, L. B., and C. Connelly Ryan. 2020. “Tracing the Alteration of Verdigris Pigment Through Combined Raman Spectroscopy and X-ray Diffraction, Part I.” Restaurator. International Journal for the Preservation of Library and Archival Material 41 (1): 3–30. doi:10.1515/res-2019-0007.
  • Chukanov, N. V., A. N. Sapozhnikov, R. Y. Shendrik, M. F. Vigasina, and R. Steudel. 2020. “Spectroscopic and Crystal-Chemical Features of Sodalite-Group Minerals from Gem Lazurite Deposits.” Minerals 10: 1042. doi:10.3390/min10111042.
  • Čiuladienė, A., A. Kareiva, and R. Raudonis. 2020. “From Model to Artefact: Versatile Characterization of Cinnabar, Red Lead and Realgar Red Paints for Rubrics and Miniatures.” Chemija 31 (4): 238–246. doi:10.6001/chemija.v31i4.4320.
  • Comiotto, A. 2007. “Atmosphärendruck-Plasma für die Haftungsverbesserung auf unpolaren Kunststoffen in moderner und zeitgenössischer Kunst.” Zeitschrift für Kunsttechnologie und Konservierung 21: 359–370.
  • Daniels, V. 1981. “Plasma Reduction of Silver Tarnish on Daguerreotypes.” Studies in Conservation 26 (2): 45–49. doi:10.1179/sic.1981.26.2.45.
  • Daniels, V. D., L. Holland, and M. W. Pascoe. 1979. “Gas Plasma Reactions for the Conservation of Antiquities.” Studies in Conservation 24 (2): 85–92. doi:10.1179/sic.1979.011.
  • Desnica, V., K. Furić, and M. Schreiner. 2004. “Multianalytical Characterization of a Variety of Ultramarine Pigments.” e-PS 1: 15–21. Accessed December 12, 2021. http://www.morana-rtd.com/e-preservationscience/.
  • Downs, R. T., and M. Hall-Wallace. 2003. “The American Mineralogist Crystal Structure Database.” American Mineralogist 88: 247–250.
  • Fitzhugh, E. W. 2012. “Red Lead and Minium.” In Artists’ Pigments, A Handbook of Their History and Characteristics, Vol. 1, edited by R. L. Feller, 110–139. Washington, DC: National Gallery of Art.
  • Gettens, R. J., and E. W. Fitzhugh. 1993. “Azurite and Blue Verditer.” In Artists’ Pigments, A Handbook of Their History and Characteristics, Vol. 2, edited by R. Ashok, 23–36. Washington, DC: National Gallery of Art.
  • Hirschberger, A. 1995. “Plasmabehandlung von Silberoberflächen im Verbund mit Seide am Beispiel von Stickereien und Webereien.” Diplomarbeit, Fachhochschule Köln.
  • Ioanid, E. G., V. Frunzǎ, D. E. Rusu, A. M. Vlad, G. Savin, and C.-M. Popescu. 2019. “Behavior of Historical Printing Inks on Paper in High-Frequency Cold Plasma Discharges.” IEEE Transactions on Plasma Science 47 (1): 81–85. doi:10.1109/TPS.2018.2873066.
  • Janzen, G. 1992. Plasmatechnik: Grundlagen, Anwendungen, Diagnostik. Heidelberg, Deutschland: Hüthig Buch Verlag GmbH. ISBN:3-7785-2086-5.
  • Lafuente, B., R. T. Downs, H. Yang, and N. Stone. 2015. “The Power of Databases: The RRUFF Project.” In Highlights in Mineralogical Crystallography, edited by T. Armbruster, and R. M. Danisi, 1–30. Berlin: De Gruyter.
  • Manship, E., G. Cavallo, J. Gilardi, and M. P. Riccardi. 2021. “Treating Smalt: A Preliminary SEM-EDX Study of the Effects of Aqueous-based Alkaline Conservation Treatments on Smalt in Wall Paintings.” Studies in Conservation 68 (1): 68–83. doi:10.1080/00393630.2021.1940721.
  • Mokrzycki, W. S., and M. Tatol. 2011. “Colour Difference ΔE – A Survey.” Machine Graphics and Vision 20: 383–411. Accessed March 14, 2022. https://www.researchgate.net/publication/236023905.
  • Patschneider, J., and S. Veprek. 1986. “Application of Low-Pressure Hydrogen Plasma to the Conservation of Ancient Iron Artifacts.” Studies in Conservation 31 (1): 29–37. doi:10.2307/1505956.
  • Peters, F., B. Hünnekens, S. Wieneke, H. Militz, G. Ohms, and W. Viöl. 2017. “Comparison of Three Dielectric Barrier Discharges Regarding Their Physical Characteristics and Influence on the Adhesion Properties on Maple, High Density Fiberboards and Wood Plastic Composite.” Journal of Physics D: Applied Physics 50: 475206 (10pp). doi:10.1088/1361-6463/aa8fad.
  • Pflugfelder, Ch, N. Mainusch, I. Hammer, and W. Viöl. 2007. “Cleaning of Wall Paintings and Architectural Surfaces by Plasma.” Plasma Processes and Polymers 4: S516–S521. doi:10.1002/ppap.200731218.
  • Plesters, J. 1993. “Ultramarine Blue, Natural and Artificial.” In Artists’ Pigments, A Handbook of Their History and Characteristics, Vol. 2, edited by R. Ashok, 37–66. Washington, DC: National Gallery of Art.
  • Sassoni, E., E. Franzoni, M. Stefanova, Z. Kamenarov, P. Scopece, and E. V. Falzscappa. 2020. “Comparative Study Between Ammonium Phosphate and Ethyl Silicate Towards Conservation of Prehistoric Paintings in the Magura Cave (Bulgaria).” Coatings 10: 250. doi:10.3390/coatings10030250.
  • Saunders, D., and J. Kirby. 2004. “The Effect of the Relative Humidity on Artist’s Pigments.” National Gallery Technical Bulletin 25: 62–72.
  • Schmidt-Ott, K., and V. Boissonnas. 2002. “Low-pressure Hydrogen Plasma: An Assessment of its Application on Archaeological Iron.” Studies in Conservation 47 (2): 81–87. doi:10.1179/sic.2002.47.2.81.
  • Sekikawa, Y., and M. Shimada. 1978. “Infrared Spectra of Inorganic Compounds.” Central Customs Laboratory, Ministry of Finance 531, Iwase, Maysudo-shi, Chiba-Ken, Japan, p. 98.
  • Stanienda-Pilecki, K.J. 2019. “The Importance of Fourier-Transform Infrared Spectroscopy in the Identification of Carbonate Phases Differentiated Magnesium Content.” Spectroscopy 34 (6): 32–42.
  • Tiňo, R., K. Vizárová, F. Krčma, M. Reháková, V. Jančovičová, and Z. Kozáková. 2021. Plasma Technology in the Preservation and Cleaning of Cultural Heritage Objects. Boca Raton, London: CRC Press, Taylor & Francis Group. doi:10.1201/9780429277610.
  • Vohrer, U., M. Anders, I. Trick, and C. Oehr. 1996. “Plasmatechnologie in der Restaurierung – Eignet sie sich auch für Papier und Gemäldeoberflächen?” Restauro 1/1996: 40–43.

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