Cite

1. Stulik D., Kaplan A. The Atlas of Analytical Signatures of Photographic Processes – Collodion on Paper, Los Angeles: The Getty Conservation Institute, 2013, ISBN: 978-1-937433-06-2. Search in Google Scholar

2. Ďurovič M. Restaurování a konzervování archiválií a knih, Paseka, 2002, ISBN: 80-7185-383-6. Search in Google Scholar

3. Drábková K. et al. Influence of Disinfectants on Natural Textile Fibres, Restaurator: International Journal for the Preservation of Library and Archival Material, vol. 42, no. 2, 2021, pp. 67–86. Search in Google Scholar

4. Gutarowska B. A modern approach to biodeterioration assessment and the disinfection of historical book collections, Institute of Fermentation Technology and Microbiology Lodz University of Technology, 2016, ISBN: 978-83-63929-01-5. Search in Google Scholar

5. Tomšová K., Ďurovič M., Drábková K. The effect of dis-infection methods on the stability of photographic gelatin, Polymer Degradation and Stability, vol. 129, 2016, pp. 1–6. Search in Google Scholar

6. Edge M. et al. Mechanisms of Deterioration in Cellulose Nitrate Base Archival Cinematograph Film, Eur. Polym. J. vol. 26, no. 6, 1990, pp. 623–530. Search in Google Scholar

7. Quye A. et al. Investigation of inherent degradation in cellulose nitrate museum artefacts, Polymer Degradation and Stability, vol. 96, 2011, pp. 1369–1376. Search in Google Scholar

8. Quye A. et al. Accelerated ageing to study the degradation of cellulose nitrate museum artefacts, Polymer Degradation and Stability, vol. 96, 2011, pp. 1934–1939. Search in Google Scholar

9. Hon D. N. S., Gui T. L. Photodegradation of Cellulose Nitrate, Polymer Photochemistry, vol. 7, 1986, pp. 299–310. Search in Google Scholar

10. Kim S. T. et al. Solution Characteristics of Nitrocellulose, J. Ind. Eng. Chem., vol. 12, no. 1, 2006, pp. 161–164. Search in Google Scholar

11. Lindsley Ch. H., Frank M. B. Intrinsic Viscosity of Nitro-cellulose: Related to Degree Of Nitration, Industrial and Engineering Chemistry, vol. 45, no. 11, 1953, pp. 2491–2497 Search in Google Scholar

12. Pearson G. P., Moore W. R. The Influence of Degree of Substitution on some Viscosity Parameters for Cellulose Nitrate, Polymer, vol. 1, no. 2, 1960, pp. 144–150. Search in Google Scholar

13. Nunes S. et al. A diagnostic tool for assessing the conservation condition of cellulose nitrate and acetate in heritage collections: quantifying the degree of substitution by infrared spectroscopy, Heritage Science, vol. 8, no. 33, 2020, pp. 1–14. Search in Google Scholar

14. Larsson K. A. Chemical Characterisation of Nitrocellulose, Örebro, 2015. Bacalar thesis. Örebro University, School of Science and Technology. Search in Google Scholar

15. Nehls I. et al. Characterization of Cellulose and Cellulose Derivatives in Solution by High Resolution 13C-NMR Spectroscopy, Prog. Polym. Sci., vol. 19, 1994, pp. 29–78. Search in Google Scholar

16. Hejtmánek M. et al., Instrumentální analýza, SNTL/ALFA, 1986. Search in Google Scholar

17. Romanova S. M., et al. Alkoxylation of Cellulose Nitrates, Russian Journal of General Chemistry, vol. 83, no. 1, 2013, pp. 58-62. Search in Google Scholar

eISSN:
1804-1213
Idioma:
Inglés
Calendario de la edición:
4 veces al año
Temas de la revista:
Industrial Chemistry, Chemical Engineering, Materials Sciences, Ceramics and Glass