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首页> 外文期刊>Advanced Sustainable Systems >Robust and Flexible 3D Photothermal Evaporator with Heat Storage for High‐Performance Solar‐Driven Evaporation
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Robust and Flexible 3D Photothermal Evaporator with Heat Storage for High‐Performance Solar‐Driven Evaporation

机译:坚固灵活的 3D 光热蒸发器,具有储热功能,可实现高性能太阳能驱动蒸发

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Abstract Solar‐driven interfacial steam generation serves as an alternative strategy to alleviate the emergency of the global freshwater shortage. Compared to traditional 2D evaporators, 3D evaporators have drawn further attention for their excellent evaporation performance. However, large volume 3D evaporators suffer from problems related to higher vulnerability to damage and less portable storage. Worse still, 3D evaporators equally behave poorly in dark conditions. Herein, a robust and flexible 3D hydrogel/fiber evaporator mounted with solid–solid phase change materials (SPCMs) for efficient photothermal desalination is reported. The hydrogel fills the spaces of fibers and not only forms a topology‐like structure to strengthen the sunlight absorption (≈0.1% optical transmittance and ≈10% reflectance), but also reinforces the mechanical strength and elasticity of the evaporator (≈4 MPa tensile strength and ≈23 MPa Young's modulus). Notably, highly thermally‐conductive SPCMs fulfill a dual function under light‐dark conditions, facilitating a 3D evaporator for absorbing energy from high‐temperature environment under daylight, and releasing latent heat to sustain evaporation when light is turned off, ultimately achieving evaporation rates of 3.80 and 0.31 kg m–2 h–1 under different conditions. Such a durable 3D hydrogel/fiber evaporator with dramatic evaporation performance opens up promising prospects for freshwater production in remote areas.
机译:摘要太阳能驱动的界面蒸发作为另一种策略来缓解紧急的全球淡水短缺。相比传统的2 d蒸发器,3 d蒸发器进一步关注他们优秀的蒸发性能。大量的3 d蒸发器遭受的问题相关漏洞破坏和高更少的便携式存储。在黑暗的蒸发器同样表现不佳条件。水凝胶/纤维蒸发器安装固相固相相变材料(SPCMs)高效的光热光谱分析报告淡化。水凝胶填充纤维的空间,而不是只有形成一个拓扑结构等加强阳光吸收光学(≈0.1%透射率和反射率≈10%),但也加强了机械强度和弹性蒸发器(≈4 MPa的抗拉强度≈23 MPa杨氏模量)。热导电SPCMs满足双函数在光明列车黑暗条件下,促进一个3 d蒸发器吸收能量在日光下,从高温度环境和释放潜热维持蒸发当灯是关闭的,最终实现蒸发率的3.80和0.31公斤的h - m - 2在不同条件下。水凝胶/纤维与戏剧性的蒸发器蒸发性能开辟了前景远程淡水生产的前景区域。

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