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Todorovic.etal:2014 Todorović, J.; Janssen, H. (2014): Numerical simulation of gypsum transport and crystallization. In: Hilde De Clercq (Hrsg.): Proceedings of SWBSS 2014 3rd International Conference on Salt Weathering of Buildings and Stone Sculptures,KIK-IRPA, Royal Institute for Cultural Heritage Brussels 133-149, 10.5165/hawk-hhg/273.
Todorović.etal:2018 Todorović, J.; Janssen, H. (2018): The impact of salt pore clogging on the hygric properties of bricks. In: Construction and Building Materials, 164 (), 850-863, Webadresse
Toepfer:1997 Töpfer, Wolfgang (1997): Entsalzung durch Electrolessivage. In: Naturstein, 51 (4), 63-64
Toerge.etal:2000 Törge, M.; Jann, O.; Pilz, M. (2000): Das Simulieren von Schadstoff- und Klimabelastungen. In: Restauro, 106 (6), 436-441
Tombers:1991 Tombers, J. (1991): Untersuchungen zur Salzverteilung in verbautem Naturstein. Beiträge zum Thema Salzverwitterung und zur Ultraschallmessung an Sandstein. Dissertation, Universität des Saarlandes
Torielli.etal:2016 Torielli, G.; Gaggero, L.; Caratto, V.; Ferretti, M. (2016): Innovative Method and Apparatus for Deep Cleaning of Soluble Salts from Mortars and Lithic Materials. In: Energy Procedia, 97 (), 523-530, Webadresse
Torraca.etal:1996 Torraca, G.; Burragato, P.; Conti, L.; Fitetici, M. G.; Santarelli, M. L. (1996): Study of calcium oxalates on the surface of the columns of the "Tempio Rotondo" in Rome. In: Realini, M.; Toniolo, L. (Hrsg.): II International Symposium - The oxalate films in the conservation of the works of art, 167 - 176.
Torraca:1969 Torraca, Giorgio (1969): Actual state of the knowledge on stone deterioration; Causes and treatments; Sculptures in the open air. In:: Deterioration of materials and conservation problems: Exhibition and scientific congress, ferrara-Bologna, 1969,Ente bolognese manifestazioni artistiche 9-30.
Torraca:1976 Torraca, Giorgio (1976): Brick, Adobe, Stone and Architectural Ceramics: Deterioration Processes and Conservation Practices. In:: Proceedings of the North American International Regional Conference 1972. Washington,D.C., Preservation and Conservation: Principles and Practices, , 143-165.
Torraca:1982 Torraca, Giorgio (Hrsg.) (1982): Porous Building Materials. Materials Science for Architectural Conservation. 2nd ed., ICCROM, International Centre for the Study of the Preservation and Restoration of Cultural Property, Rome, Rome
Torraca:1984 Torraca, Giorgio (Hrsg.) (1984): Cementitious materials and technologies: choice of materials depending on the nature of the intervention (Materiali cementizi e tecnologie: scelta dei materiali in funzione del tipo d'intervento [Italian]), Associazione italiana tecnico economica del cemento, Roma
Torraca:1986 Torraca, Giorgio (1986): Poröse Baustoffe. Eine Materialkunde für die Denkmalpflege. Übersetzt, bearbeitet und ergänzt von Johannes Weber
Torraca:1988 Torraca, Giorgio (Hrsg.) (1988): Porous Building Materials, ICCROM, Rome
Townsend.etal:2016 Townsend, E.R.; Swennenhuis, F.; Van Enckevort, W.J.P.; Meijer, J.A.M.; Vlieg, E. (2016): Creeping: An efficient way to determine the anticaking ability of additives for sodium chloride. In: Cryst. Eng. Comm., 18 (33), 6176-6183, https://doi.org/10.1039/C6CE01376G
Trampedach:1997 Trampedach, Kirsten (1931): Lime-based materials used in the conservation of wall paintings in Denmark. In: Sighisoara, Romania (Hrsg.): Western medieval wall paintings: Studies and Conservation Experience, 31. August - 3. September 1995,ICCROM 79-84.
Traquair:1987 Traquair, J. A. (1987): Backscattered Electron Imaging as a Tool for Histochemically Localizing Calcium-Oxalate with the Scanning Electron-Microscope. In: Canadian Journal of Botany, 65 (5), 888-892, 10.1139/b87-122
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
Tricart:1954 Tricart, J. (1954): Influence des sols salees sur la deflation eolienne en basse mauritanie et dans le Delta du Senegal. In: Revue de Geomorphologie Dynamique, 5 (), 124-132
Tricart:1960 Tricart, J. (1960): Experiences de desagregation de rouches granitiques par la cristallisation du sel marin. In: Zeitschrift für Geomorphologie, 1 (), 239-40
Troeger:1969 Tröger, Walter E. (Hrsg.) (1969): Optische Bestimmung der gesteinsbildenden Minerale. Teil 2: Textband, 2. Aufl., Schweizerbart'sche Verlagsbuchhandlung, Stuttgart
Troeger:1982 Tröger, Walter E. (Hrsg.) (1982): Optische Bestimmung der gesteinsbildenden Minerale. Teil 1: Bestimmungstabellen, 5., neubearb. Aufl.
Trudgill.etal:1992 Trudgill, S. T.; Viles, H. A.; Cooke, R. U.; Inkpen, R. J.; Heathwaite, A. L.; Houston, J. (1992): Trends in stone weathering and atmospheric pollution at St Paul's Cathedral, London, 1980-1990. In: Atmospheric Environment, Part A, 26 (9), 1801
Tsui.etal:2003 Nicolas Tsui; Robert J. Flatt; George W. Scherer (2003): Crystallization damage by sodium sulfate. In: Journal of Cultural Heritage, 4 (2), 109-115, Webadresse, https://doi.org/10.1016/S1296-2074(03)00022-0
Tsukamoto:1985 Tsukamoto, K.; Sunagawa, I. (1985): In situ observation of monomolecular growth steps on crystal growing in aqueous solution. In: Journal of Crystal Growth, 71 (1), 183-190, Webadresse
Turkington.etal:2000 Turkington, A. V.; Smith, B. J. (2000): Observations of three-dimensional salt distribution in building sandstone. In: Earth Surface Processes and Landforms, 25 (12), 1317-1332, 10.1002/1096-9837(200011)25:12<1317::AID-ESP140>3.0.CO;2-#
Turkington:1998 Turkington, A. V. (1998): Cavernous weathering in sandstone: Lessons to be learned from natural exposure. In: Quarterly Journal of Engineering Geology, 31 (4), 375-383, Webadresse, 10.1144/?GSL.QJEG.1998.031.P4.11
Turkington:1999 Turkington, Alice Victoria (1999): The durability of sandstone in salt-rich environments. Dissertation, PhD-Thesis, Queen's University of Belfast (Northern Ireland), Webadresse
Tuthill:1936 Tuthill, L. H. (1936): Resistance of cement to corrosive action of solutions of sodium sulphate. In: Journal Proceedings, 33 (11), 83-106
Twilley:1984 Twilley, John (1984): The relationship of microstructure to treatment variables in the consolidation of limestone with barium compounds. In:: Preprints of the 12th Annual Meeting of the American Institute for Conservation of Historic and Artistic Works, Los Angeles, California, 15-20 May 1984,American Institute for Conservation,Washington 79-85.
Tworek:1965 Tworek, D. (1965): Destruction of Wall Paintings Provoked by the Action of Non-Organic Salts. In: Biblioteka Muzealnictwa, 11 (), 165-179
Tywoniak.etal:1991 Tywoniak, J.; Prazak, J.; Slonc, T.; Peterka, F. (1991): Feuchtemessungen mittels Neutronenradiographie. In: Bautenschutz&Bausanierung, 14 (2), 20-23
Török.etal:2011 Török, Á.; Galambos, É.; Józsa, Zs.; Kriston, L.; Bóna, I.and Csányi, E.; Szemerey-Kiss, B.; Méreyné-Bán, B. (2011): Salt efflorescence and subflorescence in Baroque frescos and the role of bat droppings in the decay wall paintings. In: Ionannou, Ioannis; Theodoridou, Magdalini (Hrsg.): Proceedings of the Conference "Salt Weathering on Buildings and Stone Sculptures", Limassol, Cyprus, 19.-22. Oct. 2011, 97-104.
Udo:1981 Udo, Ludwig (1981): Zerstörung von Ziegeln durch Salze (The destructive effects of salts on bricks). In:: Dokumentation in der Archäologie. Techniken Methoden Analysen, Veröffentlichung der Seminarbeiträge, Aachen, Dec. 5-6, 1981, , 153-165.
Ueda.etal:1967 Ueda, R.; Ono, M.; Tokugawa, F. (1967): Growth, morphology and twisting of whiskers of some water-soluble ferroelectric crystals. In: Peiser, H (Hrsg.):, 381-382.
Ueno.etal:1983 Ueno, Y.; Williams, A. (1983): The detection of micrometer and sub-micrometer droplets of aqueous solutions of sodium chloride and sodium sulfate. In: Atmospheric Environment, 17 (12), 2611-2616
Ugolotti.etal:2021 Ugolotti, G.; Masi, G.; Sassoni, E. (2021): Interaction between sodium chloride and ammonium phosphate on Carrara marble: two laboratory approaches . 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 119-128, Webadresse.
Ugolotti.etal:2022 Ugolotti, G.; Masi, G.; Boanini, E.; Sassoni, E. (2022): Influence of salt contamination on consolidation of slaked lime mortar by ammonium phosphate and nanolimes. In: Construction and Building Materials, 356 (), Webadresse
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.
Ulens.etal:1994 Ulens, K.; Moens, L.; Dams, R.; De Paepe, P. (1994): Study of the patina of ancient marble sculptures by stable isotope analysis. In: Science of the Total Environment, 158 (1), 63-69
Unger:2002 Unger, Achim (2002): Schadstoffprävention. In: Hilbert, Günter S. (Hrsg.): Sammlungsgut in Sicherheit, Berlin: Gebr. Mann, 243-289.
Uno.etal:2021 Uno, T.; Abuku, M.; Iba, C. (2021): Environmental factors for salt weathering of modern Japanese brick chimney . 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 41-48, Webadresse.
Unruh:2001 Unruh, Julie (2001): A revised endpoint for ceramics desalination at the archaeological site of Gordion, Turkey. In: Studies in Conservation, 46 (2), 81-92, Webadresse
V:1972 Misch, Peter (1972): Porphyroblasts and ‘crystallization force’: some textural criteria; Reply. In: Geological Society of American Bulletin, 83 (3), 921-922, 10.1130/?0016-7606(1972)?83[921:PACFST]?2.0.CO;2
V:1992 Tsuyuki, Naomitsu; Suzuki, Satoshi; Kasai, Junichi (1992): Effect of sea water on calcium monosulfate hydrate containing amino acid. In: Int. Congr. Chem. Cem., 9th, 5 (), 322-8
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.
VDI_3797:1980 VDI 3797 (Hrsg.) (1980): VDI 3797, Februar 1980 - Salzsprengtest. Prüfung des zu erwartenden Resistenzverhaltens von konservierten und nicht konservierten Natursteinen gegenüber Immissionen
Valek.etal:2010 Válek, Jan; Groot, Caspar; Hughes, John J. (Hrsg.) (2010): Proceeding of the 2nd Historic Mortars Conference HMC2010 and RILEM TC 203-RHM 'Repair mortars for historic masonry'
Valenza.etal:2006 Valenza, John J.; Scherer, George W. (2006): Mechanism for Salt Scaling. In: Journal of the American Ceramic Society, 89 (4), 1161--1179, Webadresse, 10.1111/j.1551-2916.2006.00913.x
VanBalen.etal:1999 Van Balen, K. et al. (1999): Expert System for the Evaluation of the Deterioration of Ancient Brick Structures., Protection and Conservation of European Cultural Heritage Research Report no. 8, Office for Official Publications of the European Communities.
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