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1. Bréda, N., Huc, R., Granier, A., & Dreyer, E. (2006). Temperate forest trees and stands under severe drought: a review of ecophysiological responses, adaptation processes and long-term consequences. Annals of Forest Science63(6), 625-644.

https://doi.org/10.1051/forest:2006042

2. Doukalianou, F., Kitikidou, K., Radoglou, K., Milios, E., Orfanoudakis, M., & Lagomarsino, A. (2020). Carbon mitigation in the peri urban forest of Xanthi, Greece: a GIS mapping application. Euro-Mediterranean Journal for Environmental Integration5(2), 1-12.

https://doi.org/10.1007/s41207-020-00170-2

3. Doukalianou, F., Radoglou, K., Agnelli, A. E., Kitikidou, K., Milios, E., Orfanoudakis, M., & Lagomarsino, A. (2019). Annual Greenhouse-Gas Emissions from Forest Soil of a Peri-Urban Conifer Forest in Greece under Different Thinning Intensities and Their Climate-Change Mitigation Potential. Forest Science65(4), 387-400.

https://doi.org/10.1093/forsci/fxy069
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Ryu, Jeongeun, et al. "Removal of fine particulate matter (PM2. 5) via atmospheric humidity caused by evapotranspiration."Environmental Pollution245 (2019): 253-259. https://www.sciencedirect.com/science/article/pii/S0269749118309667?casa_token=LbBhtB17AlYAAAAA:76vNidvR3Zi2xPQXjrUDD5Ouax9..
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Impacts of growing‐season climate on tree growth and post‐fire regeneration in ponderosa pine and Douglas‐fir forests Lacey E. Hankin Philip E. Higuera Kimberley T. Davis Solomon Z. Dobrowski Ecosphere First published: 05 April 2019 https://doi.org/10.1002/ecs2.2679