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The Early Miocene Paleoclimate of Erzhilansay: Interpretation of Climatic Parameters Using Modern Methods

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dc.contributor.author Zhamangara, Aizhan
dc.contributor.author Akmagambet, Shahizada
dc.contributor.author Nigmatova, Saida
dc.contributor.author Madyarova, Ilnura
dc.contributor.author Kashaganov, Kaisar
dc.contributor.author Zadagali, Aizhan
dc.contributor.author Seidali, Arman
dc.contributor.author Bayshashov, Bolat
dc.date.accessioned 2025-12-29T07:38:43Z
dc.date.available 2025-12-29T07:38:43Z
dc.date.issued 2024
dc.identifier.citation Zhamangara, A.; Akmagambet, S.; Nigmatova, S.; Madyarova, I.; Kashaganov, K.; Zadagali, A.; Seidali, A.; Bayshashov, B. The Early Miocene Paleoclimate of Erzhilansay: Interpretation of Climatic Parameters Using Modern Methods. Sustainability 2025, 17, 143. https://doi.org/10.3390/ su17010143 ru
dc.identifier.issn 2071-1050
dc.identifier.other doi.org/10.3390/ su17010143
dc.identifier.uri http://repository.enu.kz/handle/enu/29132
dc.description.abstract Studying paleoclimatic conditions across geological epochs is essential for understanding climate evolution and its influence on Earth’s biosphere. Leaf macrofossils serve as a crucial data source for reconstructing ancient climates due to their sensitivity to environmental changes. Advanced analytical methods, such as the Climate Leaf Analysis Multivariate Program (CLAMP) and the coexistence approach (CA), enable precise assessment of past climatic parameters using fossilized leaf remains. The Erzhilansay locality, dated to the early Miocene, represents a remarkable site with exceptionally preserved and diverse plant fossils, making it pivotal for paleoclimatic reconstructions. This study reveals that mean annual temperatures and summer temperatures in the early Miocene were relatively stable over millions of years. In contrast, winters were notably milder, exhibiting warmer and more consistent conditions. Precipitation levels were significantly higher, fostering the development of dense vegetation, unlike the arid environment seen today. These findings underscore the importance of employing integrated methodologies to reconstruct ancient climates and interpret geological-scale climate changes. The study also offers critical insights into climate dynamics, supporting the development of strategies to mitigate current environmental challenges. ru
dc.language.iso en ru
dc.publisher Sustainability ru
dc.relation.ispartofseries 17, 143;
dc.subject paleoclimate ru
dc.subject leaf macrofossils ru
dc.subject CLAMP ru
dc.subject coexistence approach ru
dc.subject early Miocene ru
dc.subject Erzhilansay locality ru
dc.title The Early Miocene Paleoclimate of Erzhilansay: Interpretation of Climatic Parameters Using Modern Methods ru
dc.type Article ru


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