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Chemistry and Structure of Birch Bark Support Passive Radiative Cooling

Perotta, R.; Liao, M.; Li, P.; Ek, M.; Schott, F.; Hall, S.; Jonsson, M. P.; Lintunen, A.; Hedenqvist, M. S.; Shanker, R.; Svagan, A. J.

2026-08-28 plant biology
10.64898/2026.08.27.747190 bioRxiv
Show abstract

White-barked birches extend to the northern limit of tree growth, and their bark is known to reduce solar damage during winter and early-spring by limiting solar heating and the incidence of harmful freeze-thaw events. The physical basis for this protection, however, has remained unclear. Here, we show that extracted betulin, the dominant triterpenoid responsible for the bark's whiteness, and Himalayan birch bark, both exhibit passive radiative cooling. Under low solar irradiance, bark and betulin-pellets reach temperatures below that of a shaded reference, and pellets cool more than bark. The cooling arises from high solar reflectance, which suppresses solar heating, and substantial mid-infrared emission, which drives radiative heat loss toward outer space. These findings help explain how bark-whiteness may contribute to protecting birch trees from solar-induced thermal stress.

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