Analysis of the Dynamics of Changes in Soil–eluvial Formations Across the Main Bioclimatic Zones of the Aragats Mountain Massif
DOI:
https://doi.org/10.52340/ggj.2026.06.01.03Keywords:
soil–eluvial formations, bioclimatic factors, weathering crust, belozem, carbonate crustAbstract
The aim of this study is to examine the sequence of soil–eluvial formations using the Aragats Mountain Massif as a representative example. The differentiation of these formations is primarily governed by the influence of bioclimatic factors. Primary soil–eluvial formations, commonly referred to as soil eluvium, are regarded as integrated complexes comprising weathering crusts and soils formed under natural landscape conditions. In Armenia, however, investigating such formations poses a considerable challenge. Owing to centuries of human activity and land use, a substantial proportion of primary soil–eluvial complexes has been either destroyed or significantly transformed. Only in limited areas have soil eluviums retained their original characteristics or remained relatively intact.
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References
Avessalomova, I. A. (2007). Biogeochemistry of landscapes. Moscow State University Press.
Balyan, A. S. (1982). On the paleogeography of Quaternary loose-detrital formations of the Aragats Massif. Uchenye Zapiski Yerevan State University, (2), 130–136.
Balyan, A. S., & Hayrapetyan, T. A. (1979). On the origin and paleogeographical development of whitish soils in Armenia. Uchenye Zapiski Yerevan State University, (1), 103–113.
Balyan, A. S., Hayrapetyan, T. A., Chernyakhovsky, A. G., Balyan, A. O., & Gradusov, B. P. (1975). Primary soil–eluvial formations of the main bioclimatic belts of the Aragats Mountain Massif. Proceedings of the Academy of Sciences of the Armenian SSR, Earth Sciences, 28(2), 78–93.
Bargagli, R. (2005). Biogeochemistry of terrestrial plants. GEOS.
Bashkin, V. N., & Kasimov, N. S. (2004). Biogeochemistry. Nauchny Mir.
Dobrovolsky, V. V. (1979). Scattered metals in nature. Znanie.
Dobrovolsky, V. V. (1998). Fundamentals of biogeochemistry: Textbook for geographical, biological, geological, and agricultural specialties of universities. Vysshaya Shkola.
Environmental geochemistry. (1990). Nedra.
Gevorgyan, F. (2006). Exodynamic weathering system in the territory of the Republic of Armenia. In Geographical science in Armenia: Present and future. Proceedings of the scientific conference dedicated to the 70th anniversary of the foundation of the Armenian Geographical Society (pp. 167–177). Yerevan State University Press.
Glazovskaya, M. A. (1992). Biogeochemical organization of ecological space in natural and anthropogenic landscapes as a criterion for their stability. Izvestiya Rossiiskoi Akademii Nauk. Seriya Geograficheskaya, (5), 5–12.
Glazovskaya, M. A. (2007). Geochemistry of natural and technogenic landscapes. Moscow State University Press.
Kasimov, N. S. (2013). Ecogeochemistry of landscapes. IP Filimonov M. V.
Margaryan, V. G., Avetisyan, G. D., Sargsyan, A. T., & Margaryan, P. N. (2022). Patterns of spatio-temporal distribution of absolute minimum near-surface air temperatures in the Lake Sevan Basin. Izvestiya Rossiiskoi Akademii Nauk. Seriya Geograficheskaya, 86(2), 232–242. https://doi.org/10.31857/S2587556622020078
Nikolaev, V. A., & Kopyl, I. V. (2004). Landscape ecology of agricultural lands. In Geography, society, environment (Vol. 2, Functioning and current state of landscapes, pp. 257–268). Gorodets Publishing House.
Perelman, A. I., & Kasimov, N. S. (1999). Landscape geochemistry. Asteria-2000.
Vinogradov, B. V. (1998). Fundamentals of landscape ecology. GEOS.
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