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Article

Spatiotemporal Trends in Temperature and Rainfall Across the Aberdare Forest Ecosystem, Kenya (1994–2024)

1
Department of Earth and Climate Sciences, University of Nairobi, Nairobi P.O. Box 30197-00100, Kenya
2
Wangari Maathai Institute for Peace and Environmental Studies, University of Nairobi, Nairobi P.O Box 30197-00100, Kenya
3
Department of Philosophy and Religious Studies, University of Nairobi, Nairobi P.O Box 30197-00100, Kenya
*
Author to whom correspondence should be addressed.
Climate 2026, 14(9), 193; https://doi.org/10.3390/cli14090193 (registering DOI)
Submission received: 26 July 2026 / Revised: 8 September 2026 / Accepted: 10 September 2026 / Published: 13 September 2026

Abstract

Montane forests are among the most critical terrestrial biodiversity reservoirs, acting as climate-regulating systems and water towers, and are vital for human well-being across the world. However, they are facing diverse, repeated, and contradictory challenges due to climate variability and change that may undermine their resilience. This study analyzed spatiotemporal trends in temperature and rainfall in the Aberdare Forest ecosystem, Kenya, over the past three decades (1994–2024). ERA5-Land (temperature, 9 km resolution) and CHIRPS-v3 (precipitation, 5 km resolution) provided the gridded climate datasets and were validated against observed station data from the Kenya Meteorological Department (KMD). Trend detection utilized the non-parametric Mann–Kendall (MK) test, while Sen’s slope estimator quantified the magnitude and direction of change. Results show a statistically significant positive trend in temperature, while rainfall demonstrated a statistically non-significant positive trend over the study period. Spatial analysis revealed statistically significant warming across the forest, bamboo, and moorland ecological zones, while rainfall showed positive but non-significant trends, with the magnitude of both temperature and rainfall trends varying across zones. These findings provide robust empirical evidence of significant temporal and spatial warming with no clear corresponding directional change in rainfall, underscoring increasing climate pressures on the Aberdare Forest ecosystem. The results establish one of the first empirically validated long-term climate trend baselines for the Aberdare Forest ecosystem. This benchmark provides critical evidence to inform adaptive governance and responsive management for enhanced resilience of East Africa’s montane forests.
Keywords: Aberdare Forest ecosystem; montane forests; climate variability; temperature trends; rainfall trends; Mann–Kendall test Aberdare Forest ecosystem; montane forests; climate variability; temperature trends; rainfall trends; Mann–Kendall test

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MDPI and ACS Style

Kamau, J.W.; Thenya, T.; Maweu, J. Spatiotemporal Trends in Temperature and Rainfall Across the Aberdare Forest Ecosystem, Kenya (1994–2024). Climate 2026, 14, 193. https://doi.org/10.3390/cli14090193

AMA Style

Kamau JW, Thenya T, Maweu J. Spatiotemporal Trends in Temperature and Rainfall Across the Aberdare Forest Ecosystem, Kenya (1994–2024). Climate. 2026; 14(9):193. https://doi.org/10.3390/cli14090193

Chicago/Turabian Style

Kamau, Julius W., Thuita Thenya, and Jacinta Maweu. 2026. "Spatiotemporal Trends in Temperature and Rainfall Across the Aberdare Forest Ecosystem, Kenya (1994–2024)" Climate 14, no. 9: 193. https://doi.org/10.3390/cli14090193

APA Style

Kamau, J. W., Thenya, T., & Maweu, J. (2026). Spatiotemporal Trends in Temperature and Rainfall Across the Aberdare Forest Ecosystem, Kenya (1994–2024). Climate, 14(9), 193. https://doi.org/10.3390/cli14090193

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