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Willkommen bei SalzWikiSalzWiki ist ein redaktionell betreutes Fachportal mit deutschen und englischen Informationen zu folgenden Themen:
Diese Informationen helfen Ihnen unter anderem zum Verständnis von Gutachten oder bei der Planung von Maßnahmen. Werden auch Sie Autor/in und teilen Sie Ihr Wissen oder unterstützen Sie diesen weltweitern Wissemstransfer durch Ihre Mitgliedschaft beim Verein Salze im Kulturgut (SIK), zu dem sich ein Forschungsverbund zusammengefunden hat. Eine Förderung der Deutschen Forschungsgemeinschaft (DFG) ermöglichte bis 2012 die Realisierung im Hornemann Institut der HAWK in Hildesheim. |
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Thema des QuartalsSalze in Vitrinen[Bearbeiten]Kurzer Einblick: Literatur: Hier sind Sie gesucht: |
Veranstaltungen
SWBSS ASIA 2023 on September 20-22, 2023 in Nara, Japan[Bearbeiten]SWBSS is the conference series “Salt Weathering of Buildings and Stone Sculptures”, started in 2008. The conference aims at bringing together conservators, restorers, engineers, architects, academics, students and experienced researchers and to contribute thereby to the promotion of research and development within the field of salt weathering of porous materials. Its previous series were held in Copenhagen (2008), Limassol (2011), Brussel (2014), Potsdam (2017), and Delft (2021). An idea of SWBSS ASIA as the conference series to be held in Asian countries was proposed at Potsdam in 2017 and its first meeting, SWBSS ASIA 2023, was announced at Delft in 2021. SWBSS ASIA 2023 was held at Nara, Japan, on September 20-22, 2023. The proceedings of the conference you will find [here].
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LiteraturhinweiseAmelie Stahlbuhk; Michael Steiger (2024): Damage potential and supersaturation of nitrates relevant to salt damage of porous building materials. In: Construction and Building Materials, 419 (), 135413, Webadresse, https://doi.org/10.1016/j.conbuildmat.2024.135413 Masaru Abuku and Nobumitsu Takatori (Eds) (2023): Proceedings of SWBSS ASIA 2023. First International Conference in Asia on Salt Weathering of Buildings and Stone Sculptures, Nara National Research Institute for Cultural Properties Nara, Japan September 20-22, 2023, link to the proceedings Godts, S., Orr, S.A., Steiger, M. et al. Salt mixtures in stone weathering. Sci Rep 13, 13306 (2023). https://doi.org/10.1038/s41598-023-40590-y Godts, S.; Steiger, M.; Orr, S.A.; Stahlbuhk, A.; Desarnaud, J.; De Clercq, H.; Cnudde, V.; De Kock, T. Modeling Salt Behavior with ECOS/RUNSALT: Terminology, Methodology, Limitations, and Solutions. Heritage ( 2022) 5, 3648-3663. https://doi.org/10.3390/heritage5040190 Lubelli, B., Rörig-Daalgard, I., Aguilar, A.M. et al. Recommendation of RILEM TC 271-ASC: New accelerated test procedure for the assessment of resistance of natural stone and fired-clay brick units against salt crystallization. Mater Struct 56, 101 (2023). https://doi.org/10.1617/s11527-023-02158-0 Eggert, G.: Saturated salt solutions in showcases: humidity control and pollutant absorption. Heritage Science, 10 (53) (2022). https://doi.org/10.1186/s40494-022-00689-3 Germinario, L.; Oguchi, C.T.: Gypsum, mirabilite, and thenardite efflorescences of tuff stone in the underground environment. Environ Earth Sci 81, 242 (2022). https://doi.org/10.1007/s12665-022-10344-6: Link to PDF: https://rdcu.be/cZdVP Godts, S.; Steiger, M.; Orr, S.A. et al.: Charge balance calculations for mixed salt systems applied to a large dataset from the built environment. Sci Data 9, 324 (2022). https://doi.org/10.1038/s41597-022-01445-9. Link to PDF: https://rdcu.be/cZdWY Eggert, G., Fischer, A. (2021): The formation of formates: a review of metal formates on heritage objects. Herit Sci 9, 26 (2021). https://doi.org/10.1186/s40494-021-00499-z Shen, Y. Linnow, K. and Steiger, M.: Crystallization Behavior and Damage Potential of Na2SO4–NaCl Mixtures in Porous Building Materials: Cryst. Growth Des. 2020, 20, 9, 5974–5985, https://doi.org/10.1021/acs.cgd.0c00671 Granneman, S.J.C.; Lubelli, B.; van Hees, R.P.J.: Effect of mixed in crystallization modifiers on the resistance of lime mortar against NaCl and Na2SO4 crystallization. Construction and Building Materials , vol.194, S.62-70, 2019, https://doi.org/10.1016/j.conbuildmat.2018.11.006 Andreotti, S.; Franzoni, E.; Ruiz-Agudo, E.; Scherer, G.W.; Fabbri, P.; Sassoni, E.; Rodriguez-Navarro, C.: New polymer-based treatments for the prevention of damage by salt crystallization in stone. Materials , 52 (17), Webadresse, https://doi.org/10.1617/s11527-018-1309-6 Sögütoglu, L.; Steiger, M.; Houben, J.; Biemans, D.; Fischer, H.R.; Donkers, P.; Huinink, H.; and Adan, O.: Understanding the Hydration Process of Salts: The Impact of a Nucleation Barrier, Cryst. Growth Des., Article ASAP, DOI: 10.1021/acs.cgd.8b01908, Publication Date (Web): February 14, 2019, https://pubs.acs.org/doi/10.1021/acs.cgd.8b01908 Vazquez, P.; Thomachot-Schneider, C.; Mouhoubi, K.; Bodnar, J-L.; Avdelidis, N. P.; Charles, D.; Benavente, D. Sodium sulfate crystallisation monitoring using IR Thermography (2018): Infrared Physics & Technology Volume 89, March 2018, Pages 231-241, https://doi.org/10.1016/j.infrared.2018.01.011, http://dspace.lib.cranfield.ac.uk/handle/1826/12944
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Heritage, Adrian; Sawdy-Heritage, Alison; Schwarz, Hans-Jürgen; Wendler, Eberhard: Präventive Konservierung. In: SalzWiki, HAWK Hildesheim/Holzminden/Göttingen (13.06.2013) |