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Le Dizès.etal:2021 Le Dizès, R.; Jaïs, D.; Shahidzadeh, N. (2021): Two-steps treatments for the consolidation of carbonate stone artworks . 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 225-232, Webadresse.
LeChatelier:1892 Le Chatelier, H. (1892): Über das Gleichgewicht chemischer Systeme bei ungleichförmigem Druck. In: Zeitschrift für physikalische Chemie, 9 (), 335-338
Lea.etal:2001 Lea, A. S.; Amonette, J. E.; Baer, D. R.; Liang, Y.; Colton, N. G. (2001): Microscopic effects of carbonate, manganese, and strontium ions on calcite dissolution. In: Geochimica et Cosmochimica Acta, 65 (3), 369-379
Leal.etal:2011 Leal, N.; Simão, J.; Gartmann, C.; Silva, Z. (2011): Salt-fog experiments on consolidant and water-repellent treated dimension stones. In: Ionannou, Ioannis; Theodoridou, Magdalini (Hrsg.): Proceedings of the Conference "Salt Weathering on Buildings and Stone Sculptures", Limassol, Cyprus, 19.-22. Oct. 2011, 187-194, 10.5165/hawk-hhg/saltwiki/34.
Leather.etal:1914 Leather, J. W.; Mukerji, N. (1914): The systems: (A) water, magnesium carbonate and carbonic acid (B) water, calcium carbonate, magnesium carbonate, and carbonic acid. Part I. The system MgCO3,CO2,H2O in contact with air. In: Memoirs of the Department of Agriculture India: Chemical Series, 3 (), 205-234
Leather.etral:1914 Leather, J. W.; Mukerji, N. (1914): The system: potassium nitrate, sodium chloride, water. In: Memoirs of the Department of Agriculture India: Chemical Series, 3 (), 177-204
Lebially:1974 Lebially, M. (1974): Tensiogravimetric study of the dehydration of calcium sulfate. In: Edinger, Stanley Evan (Hrsg.): The chemistry of gypsum and its dehydration products. Translated works. Vol. III, National Technical Information Service, 73-103.
Lee:1997 Lee, L.R. (1997): Investigation into the Degradation of a Fourteenth Century Enamelled Plaque, Internal Report.
Lefevre.etal:1996 Lefevre, Lionel; Pre, Yann (1996): Dessalement de statuettes en terre crue d'Asie centrale conservées au musée Guimet" = Desalting of small statues in unbaked earth from Central Asia conserved in the Musée Guimet. 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 91-103.
Lefevre.etal:1998 Lefevre, R.; Pallod-Frossard, I. Ed. (Hrsg.) (1998): Le matériau vitreux: verre et vitraux. Actes du Cours Intensif Européen, Ravello, 28 - 30 avril 1995
Lefevre:1995 Lefevre, R. Ed. (Hrsg.) (1995): La pietra dei monumenti nel suo ambiente fisico
Lefevre:1997 Lefevre, R. Ed. (Hrsg.) (1997): La pietra dei monumenti in ambiente fisico e culturale. Atti del 2° Corso Intensivo Europeo tenuto a Ravello e a Firenze dal 10 al 24 aprile 1994
Legrum:1991 Legrum, Jürgen (1991): Der Einfluß wasserlöslicher Salze auf die physikalischen Eigenschaften von Sandsteinen und ihre Verwitterungserscheinungen an Bauwerken. Dissertation, Universität des Saarlandes, Saarbrücken
Legrum:1992 Legrum, Jürgen (1992): Untersuchungen über das Temperatur- und Feuchteverhalten von Holztafelbildern.
Legrum:1993 Legrum, Brigitte (1993): Die Entsalzung von Steindenkmälern - ein Forschungsprojekt der VW-Stiftung. In: Arbeitsblätter für Restauratoren, 26 (2), 282-288
Legrum:1993a Legrum, J. (1993): Untersuchungen zur Klärung der Ursachen der Sandsteinverwitterung im Judenbad zu Friedberg in Hessen, VDI Berichte, 1060, 373-382.
Lehmann:1970 Lehmann, J. (1970): Damage by accumulation of soluble salts in stonework. In: Thompson, G. (Hrsg.):,The International Institute for Conservation of Historic and Artistic Works, London 35-46.
Lehmann:1987 Lehmann, Januz (1987): The Methodology for the cleaning and desalting of stone objects in Goluchow Castle Museum. In: Grimstad, Kirsten (Hrsg.): Preprints of the 8th Triennial Meeting, ICOM Committee for Conservation, Sydney, Australia, 6-11 September, 487-492.
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Leitner.etal:1990 Leitner, H. u. Weber J. (1990): Verhalten von Mauersalzen und deren schädigende Wirkung in Bezug auf romanische Wandmalerei am Beispiel der Pfarrkirche von St. Georgen ob Judenburg (STMK), Eine Fallstudie zur Erstellung eines Erhaltungskonzeptes. Konzept 06/1990, Wien.
Leitner.etal:2003 Leitner, Heinz; Laue, Steffen; Siedel, Heiner (Hrsg.) (2003): Mauersalze und Architekturoberflächen, Hochschule für Bildende Künste, Dresden
Leitner:2003 Leitner, Heinz (2003): Die Rolle des Restaurators im interdisziplinären Feld der Erhaltung von salzbelasteten Wandmalereien. In: Leitner, Heinz; Laue, Steffen; Siedel, Heiner (Hrsg.): Mauersalze und Architekturoberflächen, Hochschule für Bildende Künste, 65-71.
Leitner:2005 Leitner, Hans (2005): The Treatment of Wall Paintings affected by Salts: An Interdisciplinary Task as seen from a Conservator's Perspective. In: Bauinstandsetzen und Baudenkmalpflege, 11 (6), 365-380
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Leonard:1990 Leonard, Karl W. (1990): Report on Crystallisation Test of Indiana Limestone., Indiana Geological Survey.
Leonhardt.etal:2017 Leonhardt, Christian; Leonhardt, Sabine; Heller, Julika (2017): Development of a network-based climate monitoring system for climate assessment and regulation. 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 297-301, 10.5165/hawk-hhg/349.
Leonhardt:2012 Leonhardt, C. (2012): Interne Berichte zu Salzanalysen im Schwahl 2010 bis 2012. Interne Berichte aus den Jahren 2010 bis 2012 begleitend zu Probenahmen und deren Salzanalysen im Schwahl..
Leschnik.etal:2000 Leschnik, W.; Schlemm, U. (2000): Measurement of the Moisture and Salt Content of Building Materials. In: Uomoto, T. (Hrsg.): Seiken symposium; Non-destructive testing in civil engineering 2000,New York; Elsevier 209-218.
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Lewin.etal:1974 Lewin, S. Z.; Baer, N. S. (1974): Rationale of the barium hydroxide-urea treatment of decayed stone. In: Studies in Conservation, 19 (1), 24-35
Lewin.etal:1978 Lewin, Seymour Z.; Charola, A. E. (1978): Scanning electron microscopy in the diagnosis of 'diseased' stone. In: Scanning Electron Microscopy, 1 (), 695-704
Lewin.etal:1979a Lewin, S. Z.; Charola, A. E. (1979): X-ray powder diffraction investigation of the monumental stone of the Castel dell'Ovo, Naples, Italy. In: Advances in X-ray Analysis, 22 (), 169-80
Lewin.etal:1980 Lewin, S. Z.; Charola, A. E. (1980): Aspects of crystal growth and recrystallization mechanisms as revealed by scanning electron microscopy. In: Scanning Electron Microscopy, 1 (), 551-558
Lewin.etal:1981 Lewin, S. Z.; Charola, A. E. (1981): An HF-SEM technique for characterization of the weathering properties of building stones. I: granite. In: Jahari, O. (Hrsg.): Scanning electron microscopy/1981/I, SEM Inc., 555-561.
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Lewin:1980 Lewis, B. (1980): Nucleation and Growth theory. In: Pamplin, Brian R. (Hrsg.): Crystal Growth, Pergamon, New York, 23-64.
Lewin:1982 Lewin, Seymour Z. (1982): The Mechanism of Mosonry Decay Through Crystallization, National Academy of Sciences, Washington, D.C.
Lewin:1990 Lewin, Seymour Z. (): The susceptibility of calcareous stone to salt decay. In:: Proceedings of the 1st International Symposium: The Conservation of Monuments in the Mediterranean Basin: The influence of coastal environment and salt spray on limestone and marble. Bari, 7-10 June 1989,.
Lewin:etal:1979 Lewin, Seymour Z.; Charola, A. E. (1979): The physical chemistry of deteriorated brick and its impregnation technique. In:: Il mattone di venezia. Stato delle conoscenze tecnico-scientifiche. Atti del convegno, Venezia, Fondazione Cini, 22-23 Ottobre 1979,Laboratorio per lo Studio Della Dinamica Delle Grandi Masse Del C.N.R., Venezia 189-214.
Li.etal:2022 Li,L.; Kohler, F.; Dziadkowiec, J.; Røyne, A.; Marzal, R.M.E.; Bresme, F.; Jettestuen, E.; Dysthe, D.K. (2022): Limits to Crystallization Pressure. In: Langmuir, 38 (37), Webadresse
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Liegey:1996 Liégey, Anne (1996): Etude pour le dessalement de tablettes cunéiformes en terre crue = Study for the desalting of cuneiform tablets in unbaked earth. 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 105-113.
Lindmark:1996a Lindmark, S. (1996): Influence of testing conditions on salt frost resistance of concrete. In: Sjostrom, C. (Hrsg.): 7th International conference: Durability of Building Matererials and Components, Stockholm; 1996; VOL 1,London; Spon 443-452.
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Lindmark:1999 Lindmark, S. (1999): A major mechanism of salt frost scaling of brittle, porous building materials. In::,Norsk Betongforening 331-333.
Lindstroem.etal:2014 Lindström, N.; Talreja, T.; Linnow, K.; Steiger, M. (2014): Crystallization behavior of a Na2SO4–MgSO4 salt mixture and comparison to single salt behavior. 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 151-165, 10.5165/hawk-hhg/258.
Lindstroem.etal:2015 Nadine Lindström; Nicole Heitmann; Kirsten Linnow; Michael Steiger (2015): Crystallization behavior of NaNO3–Na2SO4 salt mixtures in sandstone and comparison to single salt behavior. In: Applied Geochemistry, 63 (), 116 - 132, Webadresse, https://doi.org/10.1016/j.apgeochem.2015.07.007
Lindstroen.etal:2016 Nadine Lindström; Tanya Talreja; Kirsten Linnow; Amelie Stahlbuhk; Michael Steiger (2016): Crystallization behavior of Na2SO4–MgSO4 salt mixtures in sandstone and comparison to single salt behavior. In: Applied Geochemistry, 69 (), 50 - 70, Webadresse, https://doi.org/10.1016/j.apgeochem.2016.04.005
Ling.etal:1996 Ling, Denise; Smith, Sandra M. (1996): To desalinate or not to desalinate? That is the question. 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 65-74.
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Linnow.etal:2006 Linnow, Kirsten; Zeunert, Anke; Steiger, Michael (2006): Investigation of Sodium Sulfate Phase Transitions in a Porous Material Using Humidity- and Temperature-Controlled X-ray Diffraction. In: Analytical Chemistry, 78 (13), 4683-4689, Webadresse, https://doi.org/10.1021/ac0603936
Linnow.etal:2007 Linnow, Kirsten; Steiger, Michael (2007): Determination of equilibrum humidities using temperature and humidity controlled X-ray diffraction (RH-XRD). In: Analytica Chimica Acta, (583), 197-201, 10.1016/j.aca.2006.09.054
Linnow.etal:2007b Linnow, Kirsten; Halsberghe, Lieve; Steiger, Michael (2007): Analysis of calcium acetate efflorescences formes on ceramic tiles in a museum environment. In: Journal of Cultural Heritage, (8), 44-52, 10.1016/j.culher.2006.09.004
Linnow.etal:2007c Linnow, Kirsten; Juling, Herbert; Steiger, Michael (2007): Investigation of NaCl deliquescence in porous substrates using RH-XRD. In: Environmental Geology, 52 (2), 317-327, 10.1007/s00254-006-0590-9
Linnow.etal:2009 Linnow, Kirsten; Steiger, Michael (2009): Modeling the properties of pore solutions in porous building materials. In: Franke, Lutz; Deckelmann, Gernod; Espinosa-Marzal, Rosa (Hrsg.): Simulation of Time Dependent Degradation of Porous Materials, Cuvilliers Verlag, 167-182.
Linnow.etal:2012 Linnow, Kirsten; Steiger, Michael; Lemster, Christine; Clercq, Hilde; Jovanović, Maja (2012): In situ Raman observation of the crystallization in NaNO3–Na2SO4–H2O solution droplets. In: Environmental Earth Sciences, (), 1-12, Webadresse, 10.1007/s12665-012-1997-0
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Lubelli.etal.2023 Lubelli, B.; des Bouvrie, e.; Nijlanf, T.G.; Kamat, A. (2023): Plasters with mixed-in crystallization inhibitors: Results of a 4-year monitoring of on-site application. In: Journal of Cultural Heritage, 59 (), 10-22, Webadresse
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Lubelli.etal:2001 Lubelli, B.; van Hees, R. P. J.; Pel, L. (2001): The role of the pointing mortar in the damage due to salt crystallisation. In: Brebbia, C. A. (Hrsg.): Structural Studies, Repairs and Maintenance of Historical Buildings VII,WIT Press, Southampton 537-547.
Lubelli.etal:2004 Lubelli, B.; van Hees, R. Ed.; Groot, C. (2004): The Role of sea salts in the occurence of different damage mechanisms and decay patterns on brick masonry. In: Construction and Building Materials, 18 (2), 119-124, Webadresse, https://doi.org/10.1016/j.conbuildmat.2003.08.017
Lubelli.etal:2005 Lubelli, B.; van Hees, R.P.J.; Larbi, J. (2005): Influence of Brick Properties on Salt Crystallization Damage. In: Bauinstandsetzen und Baudenkmalpflege, 11 (2), 87-96
Lubelli.etal:2006 Lubelli, B.; van Hees, R.P.J.; Huinik, H.P.; Groot, C.J.W.P. (2006): Irreversible dilation of NaCl contaminated lime -cement mortar due to crystallization cycles. In: Cement and Concrete Research, 36 (4), 678-687, https://doi.org/10.1016/j.cemconres.2005.10.008
Lubelli.etal:2006a Lubelli, B.; van Hees, R.P.J.; Huinink, H.P. (2006): Effect of NaCl on the hydric and hygric dilation behaviour of lime-cement mortar. In: HERON, 51 (1), 33-48
Lubelli.etal:2007 Lubelli, B.; van Hee, R.P.J. (2007): Salt Damage and RH Changes: The Case of the Waag Building in Amsterdam. In: Bauinstandsetzen und Baudenkmalpflege, 13 (4), 241-250
Lubelli.etal:2010 Lubelli, Barbara; van Hees, Rob P. J. (2010): Desalination of masonry structures: fine tuning of pore-size distribution of poultices to substrate properties. In: Journal of Cultural Heritage, 11 (1), 10-18, Webadresse
Lubelli.etal:2010a Lubelli, B.; nijland, T.G.; Van Hees, R.P.J.; Hacquebord, A. (2010): “Effect of mixed in crystallization inhibitor on resistance of lime-cement mortar against NaCl crystallization. In: Construction and Building Materials, 24 (12), 2466-2472, Webadresse, https://doi.org/10.1016/j.conbuildmat.2010.06.010
Lubelli.etal:2011 Lubelli, B.; van Hees, R.P.J.; De Clercq, Hilde (2011): Fine tuning of desalination poultices: try-outs in practice. In: Ionannou, Ioannis; Theodoridou, Magdalini (Hrsg.): Proceedings of the Conference "Salt Weathering on Buildings and Stone Sculptures", Limassol, Cyprus, 19.-22. Oct. 2011, 381-388, https://doi.org/10.5165/hawk-hhg/saltwiki/35.
Lubelli.etal:2014 Lubelli, B.; van Hees, R.P.J.; Nijland, T.G. (2014): Salt crystallization damage: how realistic are existing ageing tests?. 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 259-273, 10.5165/hawk-hhg/259.
Lubelli.etal:2014a Lubelli, B.; van Hees, R.P.J.; Nijland, T.G.; Bolhuis, J. (2014): Effect of ethyl silicate on salt crystallization resistance of Maastricht 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 371-387, https://doi.org/10.5165/hawk-hhg/260.
Lubelli.etal:2018 Lubelli, B.; Cnudde, V.; Diaz-Goncalves, T.; Franzoni, E.; van Hees, R.P.J.; Ioannou, I.; Menéndez, B.; Nunes, C.; Siedel, H.; Stefanidou, M.; Vergez-Belmin, V.; Viles, H. (2018): Towards a more effective and reliable salt crystallization test for porous building materials: state of the art. In: Materials and Structures, 51 (2), 55, Webadresse, https://doi.org/10.1617/s11527-018-1180-5
Lubelli.etal:2021 Lubelli, B.; Kamat, A.A.; Quist, W.J. (Hrsg.) (2021): Proceedings of SWBSS 2021 Fifth International Conference on Salt Weathering of Buildings and Stone Sculptures Japanese Brick Chimney, TU Delft Open, Webadresse.
Lubelli.etal:2023 Lubelli, B.; des Bouvrie, e.; Nijlanf, T.G.; Kamat, A. (2023): Plasters with mixed-in crystallization inhibitors: Results of a 4-year monitoring of on-site application. In: Journal of Cultural Heritage, 59 (), 10-22, Webadresse
Lubelli.etal:2023a Lubelli, B.; R{\"o}rig-Daalgard, I.; Aguilar, A. M.; A{\v{s}}krabi{\'c}, M.; Beck, K.; Bl{\"a}uer, C.; Cnudde, V.; D'Altri, A. M.; Derluyn, H.; Desarnaud, J.; {Diaz Gon{\c{c}}alves}, T.; Flatt, R.; Franzoni, E.; Godts, S.; Gulotta, D.; {van Hees}, R.; Ioannou, I.; Kamat, A.; de Kock, T.; Menendez, B.; de Miranda, S.; Nunes, C.; Sassoni, E.; Shahidzadeh, N.; Siedel, H.; Sl{\'i}{\v{z}}kov{\'a}, Z.; Stefanidou, M.; Theodoridou, M.; Veiga, R.; Verg{\`e}s-Belmin, V.}, (2023): 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. In: Materials and Structures, 56 (5), Webadresse
Lubelli:2006 Lubelli, Barbara Antoniette (2006): Sodium chloride damage to porous building materials. Dissertation, Technische Universiteit Delft, Webadresse, file:Diss-B_lubelli_20060310.pdf
Lubelli:2021 Lubelli, B.; RILEM TC 271-ASC members (2021): A new accelerated laboratory test for the assessment of the durability of materials with respect to salt crystallization. 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 55-67, Webadresse.
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