PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 14, 2026The Holocene0 citations

Reconstruction of paleoclimate and ecosystem changes in Western Iran using cave sediments from the Mid-Holocene Epoch (Northgrippian Age)

View Full Paper
OROmid RahimiEAEmel AYDIN

Key Points

  • To reconstruct paleoclimate and ecosystem changes in Western Iran during the Mid-Holocene Northgrippian Age.
  • Analyzed 77 cm sediment sequence from Qalucheh Cave using radiocarbon dating.
  • Employed geochemical analysis and XRF to assess elemental concentrations and key proxies like Mg/Ca, Sr/Cu, and Rb/Sr ratios.
  • Identified three climate phases based on sediment characteristics.
  • Stages A and C show humid conditions with high soil fertility and vegetation.
  • Stage B indicates arid conditions leading to ecosystem degradation and low water availability.
  • Findings connect climate fluctuations to effects on human settlements and agriculture.

Abstract

This study investigates paleoclimate and ecosystem changes during the Mid-Holocene Northgrippian Age in Western Iran, using geochemical analysis of sedimentary layers from Qalucheh Cave, Kurdistan Province. A 77 cm sediment sequence was analyzed, spanning approximately 1740 years (4140–5880 years BP), with radiocarbon dating confirming its chronological framework. Through XRF analysis and key geochemical proxies such as Mg/Ca, Sr/Cu, Rb/Sr ratios, and elemental concentrations (Zr, Ba, Ti), three distinct climate phases were identified. Stages A (4140–4700 years BP) and C (5400–5880 years BP) reflect humid conditions with dense vegetation, high organic carbon levels, and minimal aeolian activity. Conversely, Stage B (4700–5400 years BP) is characterized by arid conditions, reduced vegetation, high dust input, and significant ecosystem degradation. The findings highlight the interplay between climate fluctuations and ecosystem dynamics, emphasizing the critical role of climate in shaping vegetation cover, soil fertility, and water availability. This study also explores the implications of these environmental changes on human settlements and societal adaptation strategies, such as water management and agricultural innovations, which helped mitigate the adverse effects of arid phases. The research underscores the importance of cave sediments as invaluable archives for reconstructing past climate and environmental conditions, offering insights into the resilience and adaptability of ecosystems and human communities during climatic transitions.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Rahimi et al. (2026) studied this question.

synapsesocial.com/papers/69b4b9eb18185d8a3980228dhttps://doi.org/10.1177/09596836261422210
Ask AI
Helpful
Bookmark
Share
View Full Paper