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Ryu, Jeongeun, et al. "Removal of fine particulate matter (PM2. 5) via atmospheric humidity caused by evapotranspiration." Environmental Pollution 245 (2019): 253-259.
https://www.sciencedirect.com/science/article/pii/S0269749118309667?casa_token=LbBhtB17AlYAAAAA:76vNidvR3Zi2xPQXjrUDD5Ouax95LLHQrYY79M-AMiYHLtGta2iiojw0z-Roxq07PvtsX8go4g

Zheng, Tongshu, et al. "Field evaluation of low-cost particulate matter sensors in high-and low-concentration environments." Atmospheric Measurement Techniques 11.8 (2018): 4823-4846.
https://amt.copernicus.org/articles/11/4823/2018/

Chen, Jungang, et al. "The concentrations and reduction of airborne particulate matter (PM10, PM2. 5, PM1) at shelterbelt site in Beijing." Atmosphere 6.5 (2015): 650-676.
https://www.mdpi.com/2073-4433/6/5/650
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Pre-1930 unstable relationship between climate and tree-ring width of Pinus taiwanensis hayata in southeastern China FengWangabcDominiqueArseneaultaBiaoPanbQianLiaobJunjiSugiyamabc Dendrochronologia Volume 57, October 2019, 125629 https://doi.org/10.1016/j.dendro.2019.125629
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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 Science,63(6), 625-644. https://doi.org/10.1051/forest:2006042 2...