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Gauri.etal:1988 Gauri, K. Lal; Chowdhury, A.N.; Kulshreshtha, N.P.; Punuru, A.R. (1988): Geologic features and the durability of limestones at the Sphinx - Les charactéristiques géologiques et la durabilité des calcaires du Sphinx. In: Marinos, Paul; Koukis, George (Hrsg.): Engineering Geology of Ancient Works, Monuments and Historical Sites, A A Balkema, 723-729.
Gauri.etal:1999 Gauri, K. Lal; Bandyopadhyay, Jajanta (1999): Carbonate Stone: Chemical Behavior, Durability and Conservation, John Wiley and Sons, New York
Geilmann:1954 Geilmann, Wilhelm (1954): Bilder zur qualitativen Mikroanalyse anorganischer Stoffe, Verlag Chemie, Weinheim/Bergstr.
Genceli.etal:2007 Genceli F. E., Lutz M., Spek A. L., Witkamp G.-J. (2007): Crystallization and Characterization of a New Magnesium Sulfate Hydrate MgSO4•11H2O. In: Cryst. Growth Des., 7 (12), 2460-2466
Genkinger.etal:2007 Genkinger, Selma; Putnis, Andrew (2007): Crystallisation of sodium sulfate: supersaturation and metastable phases. In: Environmental Geology, 52 (2), 329-337, Webadresse, https://doi.org/10.1007/s00254-006-0565-x
Genz:2005 Genz, Arne (2005): Entwicklung einer neuen Adsorptionstechnik zur Entfernung natürlicher Organika mit granuliertem Eisenhydroxid. dissertation, Technische Universität Berlin, Webadresse
Germinario.etal:2020 Germinario, L.; Oguchi, C.T.; Tamura, Y.; Ogawa, M. (2020): Taya Caves, a Buddhist marvel hidden in underground Japan: stone properties, deterioration, and environmental setting. In: Heritage Science , 8 (87), Webadresse
Germinario.etal:2020a Germinario, L.; Török, Á. (2020): Surface Weathering of Tuffs: Compositional and Microstructural Changes in the Building Stones of the Medieval Castles of Hungary. In: Minerals , 10 (376), Webadresse
Germinario.etal:2021 Germinario, L.; Oguchi, C.T. (2021): Underground salt weathering of heritage stone: lithological and environmental constraints on the formation of sulfate efflorescences and crusts. In: Journal of Cultural Heritage, (49), 85-93, Webadresse
Germinario.etal:2022 Germinario, Luigi; Oguchi, Chiaki T. (2022): Gypsum, mirabilite, and thenardite efflorescences of tuff stone in the underground environment. In: Environmental Earth Sciences, 81 (8), 1, 10.1007/s12665-022-10344-6
Gerrow.etal:2014 Gerrow, C.M.; Gerdwilker, C.; Warke, P.A.; McCabe, S.; McKinley, J.M. (2014): Poulticing sandstone implications for subsequent weathering response. 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 435-455, 10.5165/hawk-hhg/254.
Gerwin:1999 Gerwin, Werner (1999): Die Korrosion archäologischer Eisenfunde im Boden-Zusammenhänge mit Bodeneigenschaften. In: Arbeitsblätter für Restauratoren, (1), 173-182
Gfroerer:1995 Gfrörer, M. (1995): Experimentelle Untersuchungen über den Transport von Salzlösungen in einem Buntsandstein-Werkstein.
Gibson.etal:1997a Gibson, L.T.; Cooksey, B.G.; Littlejohn, D.; Tennent, N.H. (1997): Characterisation of an unusual crystalline efflorescence on an Egyptian limestone relief. In: Analytica Chimica Acta, 337 (2), 151-164, 10.1016/S0003-2670(96)00428-X
Gibson.etal:1997b Gibson, L.T.; Cooksey, B.G.; Littlejohn, D.; Tennent, N.H. (1997): Investigation of the composition of a unique efflorescence on calcareous museum artifacts. In: Analytica Chimica Acta, 337 (3), 253-264, 10.1016/S0003-2670(96)00429-1
Gibson.etal:2005 Gibson, Lorraine T.; Cooksey , Brian G.; Littlejohn , David; Linnow, Kirsten; Steiger, Michael; Tennent, Norman H. (2005): The Mode of Formation of Thecotrichite, a Widespread Calcium Acetate Chloride Nitrate Efflorescence. In: Studies in Conservation, (50), 284-294
Girardet.etal:1982 Girardet, F.; Furlan, V. (1982): Mesure de la vitesse d'accumulation des composes soufres sur des eprouvettes de pierre exposees en atmosphere rurale et urbaine. In: Gauri, K. L.; Gwinn, J. A. (Hrsg.): Fourth International Congress on the Deterioration and Preservation of Stone Objects, Louisville, July 7-9, 1982. Proceedings,The University of Louisville 159-168.
Gisbert.etal:1996 Gisbert, J.; Martin-Chaves, C.; Andaluz, N. (1996): Black crusts from Rueda Cloister: An approximation to fossil effects of pollution in a semi-arid climate. In: Riederer, J. (Hrsg.): Proceedings of the 8th International Congress on Deterioration and Conservation of Stone: held in Berlin, 30 Sept. - 4 Oct. 1996,Moeller Druck 387-92.
Glasner.etal:1974 Glasner, A.; Zidon, M. (1974): The crystallization of NaCl in the presence of (Fe(CN)6)4- ions. In: Journal of Crystal Growth, 21 (2), 294-304, 10.1016/0022-0248(74)90018-9
Glasser:2014 Glasser, L. (2014): Thermodynamics of Inorganic Hydration and of Humidity Control, with an Extensive Database of Salt Hydrate Pairs. In: Journal of Chemical&Engineering Data, 59 (), 526-530, Webadresse
Glemer.etal:1974 Glemer, O.; Hartert, E. (1974): Binding of water in crystallised salt hydrates. In: The chemistry of gypsum and its dehydration products. Translated works,2, S.E. Edinger, Washington D.C., (), 57-63
Godts.etal:2014 Godts, S.; Hendrickx, R.; De Clercq, H. (2014): The crystallization behavior of sodium magnesium sulfate in limestone. 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 167-183, https://doi.org/10.5165/hawk-hhg/255.
Godts.etal:2014a Godts, S.; Hayen, R.; De Clercq, H. (2014): Common salt mixtures Database: a tool to identify research needs. 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 185-198, https://doi.org/10.5165/hawk-hhg/256.
Godts.etal:2016 Godts, S.; Hayen, R.; De Clercq, H. (2016): Investigating salt decay of stone materials related to the environment, a case study in the St. James church in Liège, Belgium. In: Studies in Conservation, 62 (6), 329-342
Godts.etal:2017 Godts, Sebastiaan; Hayen, Roald; De Clercq, Hilde (2017): Salt extraction by poulticing in the archaeological site of Coudenberg. 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 200-207, 10.5165/hawk-hhg/337.
Godts.etal:2021 Godts, S.; Steiger, M.; De Kock, T.; Desarnaud, J.; Orr, S.A.; Cnudde, V.; De Clercq, H. (2021): Investigating the behavior of common salt mixtures in stone materials . 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 49-51, Webadresse.
Godts.etal:2021a Godts, S.; Orr, S.A.; Desarnaud, J.; Steiger, M.; Wilhelm, K.; De Clercq, H.; Cnudde, V.; De Kock, T. (2021): NaCl-related weathering of stone: the importance of kinetics and salt mixtures in environmental risk assessment. In: Heritage Science, 9 (44), Webadresse
Godts.etal:2022 Godts, S., Orr, S. A., Steiger, M. & De Kock, T. (2022): Mixed salt systems in the built environment - charge balance calculations [Data set], website, https://doi.org/10.5281/zenodo.6280617.
Godts.etal:2022a Godts, S.; Steiger, M.; Orr, S.A.; Stahlbuhk, A.; Desarnaud, J.; De Clerq, H. Cnudde, V.; De Kock, T. (2022): Modeling Salt Behavior with ECOS/RUNSALT: Terminology, Methodology, Limitations, and Solutions. In: Heritage , 5 (4), Webadresse
Godts.etal:2022b Godts, S.; Steiger, M.; Orr, S.A.; De Kock, T.; Desarnaud, J.; De Clercq, H.; Cnudde, V. (2022): Charge balance calculations for mixed salt systems applied to a large dataset from the built environment. In: Scientific Data, 9 (324), Webadresse
Godts.etal:2023 Godts, Sebastiaan; Orr, Scott Allan; Steiger, Michael; Stahlbuhk, Amelie; de Kock, Tim; Desarnaud, Julie; de Clercq, Hilde; Cnudde, Veerle (2023): Salt mixtures in stone weathering. In: Scientific Reports, 13 (1), 13306, Webadresse, 10.1038/s41598-023-40590-y
Goedicke-Dettmering:1997 Gödicke-Dettmering, Tanja (1997): Mineralogische und technologische Eigenschaften von hydraulischem Kalk als Bindemitteln von Restaurierungsmörteln für Baudenkmälern aus Naturstein. Dissertation, Universität Gießen
Goetz:2011 Götz, Gerlinde (2011): Mikrosatelliteninstabilität bei der AML und deren prognostische Relevanz, Webadresse.
Goetürk:1993 Goetürk, H. (1993): Sulfation Mechanism of Travertines : Effect of SO2 Concentration, Relative Humidity and Temperature. In: Thiel, M.-J. (Hrsg.): Proceedings of the International RILEM/UNESCO Congress on Conservation of Stone and Other Materials,E & F N Spon., London 83-90.
Golden.etal:1990 Golden, D. C.; Dixon, J. B. (1990): Low-Temperature Alteration of Palygorskite to Smectite. In: Clays and Clay Minerals, 38 (4), 401-408
Golez.etal:2011 Facio, D.S.; Mosquera, M.J. (2011): Evaluating durability of a stone consolidant nanomaterial to salt crystallization: effect of incorporating colloid silica particles. In: Ionannou, Ioannis; Theodoridou, Magdalini (Hrsg.): Proceedings of the Conference "Salt Weathering on Buildings and Stone Sculptures", Limassol, Cyprus, 19.-22. Oct. 2011, 259-266.
Golez.etal:2011a Golež, M.; Siedel, Heiner; Drnovšek, S. (2011): Attack of marine salts on the church of St. Mary of Health in Piran, Slovenia: material deterioration and conservation strategies. In: Ionannou, Ioannis; Theodoridou, Magdalini (Hrsg.): Proceedings of the Conference "Salt Weathering on Buildings and Stone Sculptures", Limassol, Cyprus, 19.-22. Oct. 2011, 137-144.
Gollop.etal:1992 Gollop, R. S.; Taylor, H. F. W. (1992): Microstructural and Microanalytical Studies of Sulfate Attack. I. Ordinary Portland Cement Paste. In: Cement and Concrete Research, 22 (6), 1027-1038
Gollop.etal:1994 Gollop, R. S.; Taylor, H. F. W. (1994): Microstructural and Microanalytical Studies of Sulfate Attack. II. Sulfate-Resisting Portland Cement: Ferrite Composition and Hydration Chemistry. In: Cement and Concrete Research, 24 (7), 1347
Gollop.etal:1995 Gollop, R. S.; Taylor, H. F. W. (1995): Microstructural and Microanalytical Studies of Sulfate Attack. III. Sulfate-Resisting Portland Cement: Reactions with Sodium and Magnesium Sulfate Solutions. In: Cement and Concrete Research, 25 (7), 1581-1591
Gollop.etal:1996 Gollop, R. S.; Taylor, H. F. W. (1996): Microstructural and Microanalytical Studies of Sulfate Attack. IV. Reactions of a Slag Cement Paste with Sodium and Magnesium Sulfate Solutions. In: Cement and Concrete Research, 26 (7), 1013-1029
Gollop.etal:1996a Gollop, R. S.; Taylor, H. F. W. (1996): Microstructural and Microanalytical Studies of Sulfate Attack. V. Comparison of Different Slag Blends. In: Cement and Concrete Research, 26 (7), 1029-1044, 10.1016/0008-8846(96)00090-7
Gomez-Heras.etal:2011 Gomez-Heras, M.; Lopez-Arce, P.; Bala'awi, F.; Vazquez-Calvo, C.; Fort, R.; Ishakat, F.; Alvarez de Buergo, M.; Allawneh, F. (2011): Characterisation of salt combinations found at the ‘Silk Tomb’ (Petra, Jordan) and their possible source. In: Ionannou, Ioannis; Theodoridou, Magdalini (Hrsg.): Proceedings of the Conference "Salt Weathering on Buildings and Stone Sculptures", Limassol, Cyprus, 19.-22. Oct. 2011, 81-88, 10.5165/hawk-hhg/saltwiki/30.
Gommeaux.etal:2011 Gommeaux, M.; Thomachot-Schneider, C.; Eyssautier, S.; Fronteau, G.; Oguchi, C.T.; Fujimaki, T.; Osawa, Y.; Maîtrejean, P. (2011): Reconstituted stone for the building of the Orval Abbey, Belgium: comparison to natural stones, investigation of the making process and incidence on salt weathering. In: Ionannou, Ioannis; Theodoridou, Magdalini (Hrsg.): Proceedings of the Conference "Salt Weathering on Buildings and Stone Sculptures", Limassol, Cyprus, 19.-22. Oct. 2011, 421-422.
Gonzalez.etal:1997 Gonzalez, M. A.; Irassar, E. F. (1997): Ettringite Formation in Low C3A Portland Cement Exposed to Sodium Sulfate Solution. In: Cement and Concrete Research, 27 (7), 1061-1073
Gonçalves.etal:2017 Gonçalves, T.D.; Brito, V. (2017): Differential thermal expansion as a cause of salt decay: literature review, experiments, and modelling of micro and macro effects on Ançã limestone. In: Studies in Conservation, 62 (6), 310-328, Webadresse
Gonçaves:2000 Gonçaves, Teresa Diaz (2000): Development of a test method to evaluate the resistance of wall paints to salt crystallization., Lisbon, National Laboratory of Civil Engineering (LNEC), October 2000, Internal Report of LNEC 240/00-NCCt (in Portuguese).
Gooding.etal:1988 Gooding, J. L.; Jull, A. J. T.; Cheng, S.; Velbel, M. A. (1988): Mg-carbonate weathering products in Antarctic meteorites; isotopic composition and origin of nesquehonite from LEW85320. In:: Nineteenth lunar and planetary science conference, 397-398.
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Goudie.etal:1970 Goudie, Andrew; Cooke, Ronald (1970): Experimental investigation of rock weathering by salts. In: Area, 4 (), 42-48
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Goudie.etal:1980 Goudie, A. S.; Day, M. J. (1980): Disintegration of fan sediments in Death Valley, California, by salt weathering. In: Physical Geography, 1 (2), 126-137
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Goudie:1999a Goudie, A. S. (1999): Experimental salt weathering of limestones in relation to rock properties. In: Earth Surface Processes and Landforms, 24 (8), 715-724
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Graham.etal:2014 Graham, C. ans Lee, M.; Phoenix, V.; Young, M. (2014): Peering into the rock a 4D synchrotron study of salt solution movement within masonry sandstone. 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 61-79, https://doi.org/10.5165/hawk-hhg/257.
Granneman.etal:2017 Granneman, Sanne J. C.; Lubelli, Barbara; Rob P. J., van Hees (2017): Mitigating salt damage in lime-based mortars with mixed-in crystallization modifiers. 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 100-107, 10.5165/hawk-hhg/326.
Granneman.etal:2019 Granneman, S.J.C.; Lubelli, B.; van Hees, R.P.J. (2019): Effect of mixed in crystallization modifiers on the resistance of lime mortar against NaCl and Na2SO4 crystallization. In: Construction and Building Materials , 194 (), 62-70, Webadresse
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Graziani.etal:2017 Graziani, Gabriela; Sassoni, Enrico; Scherer, George W.; Franzoni, Elisa (2017): The application of hydroxyapatite-based treatments to salt-bearing porous limestones: A study on sodium sulphate-contaminated Lecce Stone. 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 176-186, 10.5165/hawk-hhg/335.
Graziani.etal:2018 Graziani, G.; Sassoni, E.; Scherer, G.W.; Franzoni, E. (2018): Phosphate-based treatments for consolidation of salt-bearing Globigerina limestone. In: IOP Conference: Materials Science and Engineering , 364 (1), Webadresse
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Grementieri.etal:2017 Grementieri, L.; Molari, L.; Derlyn, H.; Desarnaud, V.; Cnudde, V.; Shahidzadeh, N.; De Miranda, S. (2017): Numerical simulation of salt transport and crystallization in drying Prague sandstone using an experimentally consistent multiphase model. In: Building and Enviroment , 123 (), 289-298, Webadresse
Grementieri.etal:2017a Grementieri, L.; Daghia, F.; Molari, L.; Castellazzi, H.; Derluyn, H.; Cnudde, V.; De Miranda, S. (2017): A multi-scale approach for the analysis of the mechanical effects of salt crystallisation in porous media. In: International Journal of Solids and Structures , 126 (), 225-239,
Grevel.etal:2012 Grevel, Klaus-Dieter; Majzla, Juraj ; Benisek, Artur ; Dachs, Edgar ; Steiger, Michael ; Fortes, A. Dominic; Marler, Bernd (2012): Experimentally Determined Standard Thermodynamic Properties of Synthetic MgSO4·4H2O (Starkeyite) and MgSO4·3H2O: A Revised Internally Consistent Thermodynamic Data Set for Magnesium Sulfate Hydrates. In: Astrobiology, 12 (11), Webadresse, 10.1089/ast.2012.0823
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