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用于光伏电站高效蒸发冷却和生态修复的全聚合物聚乙烯水凝胶毡

All-Polymer Polyethylene-Hydrogel Felt for Efficient Evaporative Cooling and Ecological Restoration in Photovoltaic Power Plants.

作者信息

Zheng Kaibin, Fu Xifan, Ren Yongshun, Yu Zehua, Huang Zhi, Li Jing, Peng Yuncheng, Chen Chaoji, Liu Kang

机构信息

MOE Key Laboratory of Hydraulic Machinery Transients, School of Power and Mechanical Engineering, Wuhan University, Wuhan, Hubei, 430072, China.

LONGi Central R&D Institute, LONGi Green Energy Technology Co., Ltd, Xi'an, China.

出版信息

Adv Mater. 2025 Sep;37(37):e2501698. doi: 10.1002/adma.202501698. Epub 2025 Jun 22.

Abstract

With the explosive growth of photovoltaic (PV) power station, the energy efficiency and ecological impact of which have emerged as two important points of great concern. In this work, an approach is proposed to cool solar panels and facilitate ecological restoration by engineering moisture cycle in PV plants with an all-polymer hydroscopic felt. Formed by fibers with highly oriented polyethylene (PE) micro-fiber cores and polyacrylamide (PAAm) shells of a few microns in thickness, the felt is ultra-light, anti-corrosive, and demonstrates a high passive heat transfer coefficient of 1100 W m K. Under the solar light of one sun, the felt reduces the temperature of solar cells by 28 °C, and increases the output power by 20.4%. Moreover, the felt regenerates to the original state in only 1.3 times the evaporation time. In addition, due to the high evaporation and moisture absorption rate, the PE/hydrogel felt exhibits the ability to raise the ambient humidity in photovoltaic plants by 24% and lower the ambient temperature by 2.6 °C, which significantly promotes the survival rate of surrounding flora. These results show the ability of the all-polymer hydroscopic felt in promoting energy efficiency of PV conversion and offers the potential to augment ecological restoration using PV plants.

摘要

随着光伏电站的迅猛发展,其能源效率和生态影响已成为备受关注的两个重要方面。在这项工作中,提出了一种通过使用全聚合物吸湿毡在光伏电站中构建水分循环来冷却太阳能电池板并促进生态恢复的方法。该毡由具有高度取向的聚乙烯(PE)微纤维芯和厚度为几微米的聚丙烯酰胺(PAAm)壳的纤维形成,具有超轻、耐腐蚀的特性,并且表现出1100 W m K的高被动传热系数。在一个太阳的太阳光下,该毡可使太阳能电池的温度降低28°C,并使输出功率提高20.4%。此外,该毡仅需1.3倍的蒸发时间就能恢复到原始状态。此外,由于高蒸发和吸湿率,PE/水凝胶毡具有将光伏电站中的环境湿度提高24%并将环境温度降低2.6°C的能力,这显著提高了周围植物的成活率。这些结果表明全聚合物吸湿毡在提高光伏转换能源效率方面的能力,并为利用光伏电站增强生态恢复提供了潜力。

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