Preview

Zhurnal Prikladnoii Spektroskopii

Advanced search
Open Access Open Access  Restricted Access Subscription Access

Spectroscopy of Moroccan Marbles and Ornamental Stones

Abstract

The physical characteristics of several series of marble samples taken from different regions of Morocco were experimentally determined. These characteristics include optical, elemental, and crystalline properties. The marbles and stones analyzed exhibited a variety of colors, including gray, white, black, yellow, and brown. For reference purposes, three white marble samples from Carrara, Italy; Drama; and Kozani, Greece were studied under the same conditions. A white marble sample from the 18th-century Moulay Ismail Mausoleum in Meknes was also studied under the same conditions. Using optical absorption spectroscopy, we identified bands attributed to ferrous and ferric ions (Fe2⁺ and Fe3⁺), which play a fundamental role in marble coloring. Other bands alongside long wavelengths were identified in accordance with crystalline and elemental studies and attributed to carbonates. Electron paramagnetic resonance (EPR) spectra revealed varying concentrations of Mn2⁺ ions in all the marbles studied. EPR lines attributed to Fe3⁺ ions distinguished ions resulting from Ca²⁺ substitution in the calcite lattice from those in iron oxides, clay minerals, and silicates. These identified ions are considered chromogenic elements responsible for the marbles' coloration.

About the Authors

S. Khrissi
Laboratory of Materials, Processes, Environment and Quality, National School of Applied Sciences, Cadi Ayyad University ; Laboratory of Materials and Archaeomaterials Spectrometry (LASMAR), URL-CNRST, N◦7, Faculty of Sciences, Moulay Ismail University
Morocco

Safi, Meknes 



M. Haddad
Laboratory of Materials and Archaeomaterials Spectrometry (LASMAR), URL-CNRST, N◦7, Faculty of Sciences, Moulay Ismail University
Morocco

Meknes 



L. Bejjit
Laboratory of Materials and Archaeomaterials Spectrometry (LASMAR), URL-CNRST, N◦7, Faculty of Sciences, Moulay Ismail University
Morocco

Meknes 



S. A. Lyazidi
Laboratory of Materials and Archaeomaterials Spectrometry (LASMAR), URL-CNRST, N◦7, Faculty of Sciences, Moulay Ismail University
Morocco

Meknes 



M. El Amraoui
Laboratory of Materials and Archaeomaterials Spectrometry (LASMAR), URL-CNRST, N◦7, Faculty of Sciences, Moulay Ismail University
Morocco

Meknes 



H. Lifi
Cadi Ayyad University in Marrakech, National School of Applied Sciences of Safi, MISCOM Laboratory, Route sidi Bouzid
Morocco

Safi 



C. Falguères
National Museum of Natural History, UMR7194
France

Paris 



References

1. N. V. Vagenas, C. G. Kontoyannis, Vibr. Spectr., 32, No. 2, 261–264 (2003).

2. S. Gunasekaran, G. Anbalagan, Spectrochim. Acta, Part A: Mol. and Biomolec. Spectrosc., 69, No. 2, 383–390 (2008).

3. D. E. Sarıcı, Constr. and Build. Mater., 102, 416–421 (2016).

4. H. Ouali, R. Ajakane, Int. J. Inn. Appl. Studies, 11, No. 3, 778–784 (2015).

5. F. Origlia, E. Gliozzo, A. Gandin, M. Meccheri, J. E. Spangenberg, I. T. Memmi, Environ. Earth Sci., 66, No. 1, 209–222 (2012).

6. A. Bouhaouli, V. Caraman, E. Hilali, Les Marbres du Maroc, Mines, Géologie et Énergie, 45, 35–102 (1979).

7. R. Perrier, Mines le Mausolée, Géologie et Énergie, Rabat, 708, 54–64 (1995).

8. I. E. A. El Hassani, H. El Azhari, Bull. de l’Institut Scientifique, Rabat, 31, 41–54 (2009).

9. S. J. Gaffey, Am. Mineralogist, 71, No. 1-2, 151–162 (1986).

10. I. Longhi, M. Sgavetti, R. Chiari, C. Mazzoli, Int. J. Rem. Sens., 22, No. 18, 3763–3782 (2001).

11. S. J. Gaffey, Geology, 13, No. 4, 270–273 (1985).

12. G. R. Hunt, Geophysics, 42, No. 3, 501–513 (1977).

13. S. Khrissi, M. Haddad, L. Bejjit, et al., J. Appl. Spectrosc., 92, 839–849 (2025). https://doi.org/10.1007/s10812-025-01978-y.

14. N. Zaini, F. van der Meer, H. van der Werff, Rem. Sens., 4, No. 4, 987–1003 (2012).

15. R. N. Clark, G. A. Swayze, R. Wise, K. E. Livo, T. Hoefen, R. F. Kokaly, S. J. Sutley, US Geological Survey, Digital Data Series, 231 (2007), http://www.speclab.cr.usgs.gov/spectral.lib04/spectrallib.desc+plots.html (accessed 07/12/2024).

16. S. L. Reddy, R. L. Frost, G. Sowjanya, N. C. G. Reddy, G. S. Reddy, B. J. Reddy. Adv. Cond. Matter Physics, 1–8 (2008).

17. A. M. Qaid, H. T. Basavarajappa, S. Rajendran J. Indian Soc. Rem. Sens., 37, No. 2, 305–315 (2009).

18. N. O. Gopal, K. V. Narasimhulu, J. L. Rao, J. Phys. and Chem. Solids, 65, No. 11, 1887–1893 (2004).

19. N. O. Gopal, K. V. Narasimhulu, J. L. Rao, Spectrochim. Acta, Part A: Mol. and Biomolec. Spectroscopy, 60, No. 11, 2441–2448 (2004).

20. F. Van der Meer Rem. Sens. Rev., 13, No. 1-2, 67–94 (1995).

21. R. J. Reeder Rev. Mineralogy and Geochem., 11, No. 1, 1–47 (1983).

22. J. K. Crowley J. Geophys. Res.: Solid Earth, 96, B10, 16231–16240 (1991).

23. R. N. Clark, T. V. King, M. Klejwa, G. A. Swayze, N. Vergo, J. Geophys. Res.: Solid Earth, 95, B8, 12653–12680 (1990).

24. R. Baissa, K. Labbassi, P. Launeau, A. Gaudin, B. Ouajhain, J. African Earth Sci., 61, No. 1, 1–9 (2011).

25. M. Sgavetti, G. Serventi, G. Tampella, G. Pedrazzi, C. Carli, L. Pompilio, F. Franchi, C. Tellini, Icarus, 245, 184–197 (2015).

26. N. Zaini, F. van der Meer, H. van der Werff, Rem. Sens., 6, No. 5, 4149–4172 (2014).

27. A. López, R. L. Frost, J. Near Infrared Spectroscopy, 23, No. 1, 41–48 (2015).

28. J. Jehlička, A. Šťastná, R. Přikryl. Spectrochim. Acta, Part A: Mol. and Biomolec. Spectroscopy, 73, No. 3, 404–409 (2009).

29. K. Polikreti, Y. Maniatis, Archaeometry, 44, No, 1, 1–21 (2002).


Review

For citations:


Khrissi S., Haddad M., Bejjit L., Lyazidi S., El Amraoui M., Lifi H., Falguères C. Spectroscopy of Moroccan Marbles and Ornamental Stones. Zhurnal Prikladnoii Spektroskopii. 2026;93(4):572-1-572-8.

Views: 5

JATS XML

ISSN 0514-7506 (Print)