太陽光の水蒸発への効果のメカニズムを解明(Why The Sun Is So Good At Evaporating Water)

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2025-06-24 ノースカロライナ州立大学(NCState)

ノースカロライナ州立大学の研究チームは、太陽光による水の蒸発が単なる熱ではなく、「揺らぎ電場(光の電磁場)」の作用によって加速されることを発見した。実験では、同じ熱量を与えても電場がない場合は蒸発が進まないことを示し、光特有の電場が水分子に直接作用して蒸発を促す決定的要因であることを立証。この発見は、気候モデルの精度向上や、淡水化装置・蒸発冷却システムなどの設計改善に大きく貢献する可能性がある。

<関連情報>

入射電界の振動が界面水の蒸発を促進する Oscillations in incident electric field enhances interfacial water evaporation

Saqlain Raza,Cong Yang,Xin Qian and Jun Liu
Materials Horizons  Published:13 Jun 2025
DOI:https://doi.org/10.1039/D5MH00353A

太陽光の水蒸発への効果のメカニズムを解明(Why The Sun Is So Good At Evaporating Water)

Abstract

The observed superthermal evaporation rate of water from porous hydrogels has been attributed to different reasons, such as the formation of intermediate water state with reduced latent heat, and the emission of water clusters cleaved off by photons. However, it remains unclear how the electromagnetic field interacts with the liquid–vapor interface and enhances evaporation at the molecular level. Here, we employed non-equilibrium molecular dynamics simulations to investigate interfacial evaporation from pure water and polyvinyl alcohol hydrogels. Our results show that the evaporation rate remains consistent for a given interfacial heat input, regardless of hydrogel presence, suggesting that forming different water states alone does not enhance evaporation. When an alternating electric field is applied, we observed enhanced evaporation due to the cleavage of water molecules and clusters formed in the interface region, particularly when water was confined within hydrogels.

1700応用理学一般
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