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Steiger.etal:2011a Steiger, M.; Linnow, K.; Ehrhardt, D.; Rohde, M. (2011): Decomposition reactions of magnesium sulfate hydrates and phase equilibria in the MgSO4-H2O and Na+-Mg2+-Cl--SO42--H2O systems with implications for Mars. In: Geochimica et Cosmochimica Act, 75 (12), 3600-3626, https://doi.org/10.1016/j.gca.2011.03.038
Stoops.etal:1990 Stoops, G.; Delvigne, J. (1990): Morphology of mineral weathering and neoformation. II Neoformations. In: Developments in Soil Science,'Soil Micromorphology: A Basic and Applied Science', 19 (), 483-492, Webadresse
Struebel.etal:1998 Strübel, Günter; Kraus, Karin; Kuhl, Oliver; Dettmering, Tanja (1998): Hydraulische Kalke für die Denkmalpflege.
Sulic.etal:2011 Šulic, V.; Mudronja, D. (2011): Desalinization of Romanesque church on Adriatic coast situated near salt pan. In: Ionannou, Ioannis; Theodoridou, Magdalini (Hrsg.): Proceedings of the Conference "Salt Weathering on Buildings and Stone Sculptures", Limassol, Cyprus, 19.-22. Oct. 2011, 419420.
Sunagawa.etal:1976 Sunagawa, I.; Bennema, P.; Van Der Hoek, B.; Van Der Eerden, J. (1976): The occurrence of a hollow core in the center of a growth spiral due to strain. In:: 1st Europ. Conf. Crystal Growth, Abstract Book, , 47.
Sögütoglu.etal:2019 Sögütoglu, L.; Steiger, M.; Houben, J.; Biemans, D.; Fischer, H.; Donkers, P.; Huinink, H.; Adan, O. (2019): Understanding the Hydration Process of Salts: The Impact of a Nucleation Barrier. In: Crystal Growth & Design, 19 (4), 2279-2288, Webadresse, https://doi.org/10.1021/acs.cgd.8b01908
Takatori.etal:2017 Takatori, Nobumitsu; Ogura, Daisuke; Wakiya, Soichiro; Abuku, Masaru; Kiriyama, Kyoko; Kohdzuma, Yoshei (2017): Numerical analysis on salt damage suppression of the Buddha statue carved into the cliff by controlling the room temperature and humidity in the shelter. In: Laue, Steffen (Hrsg.): Proceedings of SWBSS 2017. Fourth International Conference on Salt Weathering of Buildings and Stone Sculptures, University of Applied Sciences Potsdam, Germany, 20-22 September 2017,Verlag der Fachhochschule Potsdam 125-134, 10.5165/hawk-hhg/329.
Takatori.etal:2021 Takatori, N.; Sakai, K.; Ogura, D.; Wakiya, S.; Abuku, M. (2021): Measurement of sodium chloride solution permeability and sorptivity . In: Lubelli, B.; Kamat, A.A.; Quist, W.J. (Hrsg.): Proceedings of SWBSS 2021 – Fifth International Conference on Salt Weathering of Buildings and Stone Sculptures,TU Delft Open 163-171, Webadresse.
Talreja-Muthreja.etal:2022 Talreja-Muthreja, T.; Linnow, K.; Enke, D.; Steiger, M. (2022): Deliquescence of NaCl Confined in Nanoporous Silica. In: Langmuir, 38 (36), 10963-10974, https://doi.org/10.1021/acs.langmuir.2c01309
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Tedeschi.etal:2021 Tedeschi, C.; Di Benedetto, F.; Montegrossi; G. Coppola, M. (2021): Effects of sea-salt aerosol on the coastal towers of Nothern Puglia . In: Lubelli, B.; Kamat, A.A.; Quist, W.J. (Hrsg.): Proceedings of SWBSS 2021 – Fifth International Conference on Salt Weathering of Buildings and Stone Sculptures,TU Delft Open 359-360, Webadresse.
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Thickett.etal:2000 Thickett, David; Odhlya, Marianne (2000): Note on the identification of an unusual pale blue corrosion product from Egyptian copper alloy artefacts. In: Studies in Conservation, 45 (1), 63-68
Thickett.etal:2017 Thickett, David; Stanley, Bethan (2017): Management of sodium sulfate damage to polychrome stone and buildings. In: Laue, Steffen (Hrsg.): Proceedings of SWBSS 2017. Fourth International Conference on Salt Weathering of Buildings and Stone Sculptures, University of Applied Sciences Potsdam, Germany, 20-22 September 2017,Verlag der Fachhochschule Potsdam 135-142, 10.5165/hawk-hhg/330.
Thickett:1995 Thickett, David (1995): The analysis of salt efflorescence and investigation of the cause of staining of a marble Carpenter relief, MLA OA 10562, Conservation Research Report CA1995/41, The British Museum, London, Webadresse.
Thickett:1998 Thickett, David (1998): Sealing of MDF to prevent corrosive emissions. In: The Conservator, 22 (), 49-56
Trentelman.etal:2002 Trentelmann, K.; Stodulski, L.; Scott, D.; Back, M.; Stock, S.; Strahan, D.; Drews, A.R.; O'Neill, A.; Weber, W.H.; Chen, A.; Garrett, S.J. (2002): The characterization of a new pale blue corrosion product found on copper alloy artifacts. In: Studies in Conservation, 47 (4), 217-227, 10.2307/1506782
Tworek:1965 Tworek, D. (1965): Destruction of Wall Paintings Provoked by the Action of Non-Organic Salts. In: Biblioteka Muzealnictwa, 11 (), 165-179
Ugrina.etal:2021 Ugrina, H.; Marinković, V.; Mudronja, D. (2021): Fourteen century limestone deterioration: desalination and restoration criteria . In: Lubelli, B.; Kamat, A.A.; Quist, W.J. (Hrsg.): Proceedings of SWBSS 2021 – Fifth International Conference on Salt Weathering of Buildings and Stone Sculptures,TU Delft Open 205-213, Webadresse.
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VDI:1980 DI 3797 Blatt 1 (1980): Prüfung des zu erwartenden Resistenzverhaltens von konservierten und nicht konservierten Natursteinen gegenüber Immissionen - Salzsprengtest.
VDI:2003 VDI 3798 (2003): Untersuchung und Behandlung von immissionsgeschädigten Werkstoffen, insbesondere bei kulturhistorischen Objekten.
VanDamme:1965 Van Damme-van Weele, Marina Adriana (1965): Influence of additives on the growth and dissolution of sodium chloride crystals. PhD-Thesis, Dissertation, Technical University Twenty
VanderLeeden.etal:1989 Van der Leeden, Mieke; Van Rosmalen, Gerda ; De Vreugd, Kees; Witkamp, Geertjan (1989): Einfluss von Additiven und Verunreinigungen auf Kristallisationsprozesse. In: Chemie Ingenieur Technik, 61 (5), 385-395, 10.1002/cite.330610506
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Vantaa:2000 The Document of Vantaa (2000): Towards a European Preventive Conservation Strategy adopted at the Vantaa Meeting.
Vazquez.etal:2018 Vazquez, P.; Thomachot-Schneider, C.; Mouhoubi, K.; Bodnar, J.-L.; Avdelidis, N.P.; Charles, D.; Benavente, D. (2018): Sodium sulfate crystallisation monitoring using IR thermography. In: Infrared Physics & Technology, 89 (), 231-241, Webadresse, https://doi.org/10.1016/j.infrared.2018.01.011
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Vieweger.etal:1996 Vieweger, Thomas; Groux, Didier; Labouré, Martin (1996): Dessalement de la façade de Notre-Dame-la-Grande à Poitiers: méthode et application aux contraintes de chantier = Desalting of the façade of Notre-Dame-la-Grande in Poitiers: method and application to the constraints of the worksite. In:: Le dessalement des matériaux poreux. 7es journées d'études de la SFIIC, Poitiers, 9 - 10 mai 1996,Section Française de I'lnstitut International de Conservation (SFIIC), Champs-sur-Marne 207-217.
Vivies.etal:2007 de Vivies, P.; Cook, D.; Drews, M.; Gonzales, N.; Mardikian, P.; Memet, J.-B. (2007): Transformation of akaganeite in archeological iron artefacts using subcritical treatment. In: Degrigny, C.; van Langh, R.; Joosten, I.; Ankersmit, B. (Hrsg.): Proceedings of the International Conference on Metals Conservation, Amsterdam, Netherlands, 17-21 Sept 2007, B. Ankersmit, Amsterdam,, 17-21.
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Vunjak.etal:1959 Vunjak, M.; D., Stojanovic-Gabricevic (1959): Ciscenje eflorescencija soli "salitre" sa zidnich slika, III. Primena metode pulpe od hartije u Peckoj patrijarsiji 1955-1957 godine = Removing of salt efflorescences from mural paintings, III. Utilization of the paper pulp method in the churches at Pec in 1955-1957. In: Zbornik zastite spomenika kulture, 10 (), 149-166
WTA_2-10/06/D:2006 WTA-Merkblatt 2-10/06/D (2006): : Opferputz, Deutsche Fassung.
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WTA_3-13-01_D:2003 WTA_3-13-01 D (2003): WTA-Merkblatt 3-13-01 D, Zerstörungsfreies Entsalzen von Naturstein und anderen porösen Baustoffen mittels Kompressen, WTA-Merkblatt, Webadresse.
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Wahlber.etal:2015 Wahlberg N., Runcevskio T., Dinnebier R. E., Fischer A., Eggert G., Iversen B. B. (2015): On the crystal structure of thecotrichite, an efflorescent salt on calcareous objects stored in wooden cabinets. In: Cryst. Growth Des., ()
Watkinson.etal:2005 Watkinson, David; Lewis, Mark T. (2005): Desiccated Storage of Chloride-Contaminated Archaeological Iron Objects. In: Studies in Conservation, 50 (4), 241-252, Webadresse
Watkinson.etal:2008 Watkinson, David; Al-Zahrani, Abdulnaser (2008): Towards quantified assessment of aqueous chloride extraction methods for archaeological iron: de-oxygenated treatment environments. In: The Conservator, 31 (1), 75-86, Webadresse
Watkinson:1976 Watkinson, D. (1976): An investigation into possible electrical and ion exchange methods for the removal of soluble salts from pottery. Diploma in Conservation
Watt.etal:2000 Watt, D. S.; Colston, B. J. (2000): Investigating the effects of humidity and salt crystallisation on medieval masonry. In: Building and Environment, 35 (8), 737-749
Weiss.etal:1990 Weiss, Günther; Grimm, Wolf-Dieter (1990): Rasterelektronenmikroskopische Detektion von Eis in Sandsteinen mit Hilfe der Kryopräparation. In: Wolf-Dieter Grimm (Hrsg.): Bildatlas wichtiger Denkmalgesteine der Bundesrepublik Deutschland, Edition Lipp, 95-104.
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Willers.etal:2003 Willers, U.; Behlen, Andreas; Wiese, Utz; Wittenburg, Christian; Dannecker, Walter; Steiger, Michael (2003): Untersuchungen zum Einfluß von Luftschadstoffen auf die Verwitterung hstorischer Bausubstanz unter besonderer Berücksichtigung der trockenen und nassen Deposition atmosphärischer Schwefel- und Stickstoffspezies: Abschlussbericht zu den BMBF-geförderten Vorhaben BAU 7015X und BAU 7015Y.
Williams.etal:1981 Williams, R. B. G.; Robinson, D. A. (1981): Weathering of sandstone by the combined action of frost and salt. In: Earth Surface Processes and Landforms, 6 (1), 1-9
Williams.etal:1991 Williams, R. B. G.; Robinson, D. A. (1991): Frost weathering of rocks in the presence of salts - a review. In: Permafrost & Periglacial Processes, 2 (4), 347-353
Williams.etal:1998 Williams, R. B. G.; Robinson, D. A. (1998): Weathering of sandstone by alunogen and alum salts. In: Quarterly Journal of Engineering Geology, 31 (4), 369-373
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