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Salt-Resistant Carbon Nanotubes/Polyvinyl Alcohol Hybrid Gels with Tunable Water Transport for High-Efficiency and Long-Term Solar Steam Generation

机译:耐盐碳纳米管/聚乙烯醇杂交凝胶,具有可调水运输,用于高效率和长期太阳能蒸汽发电

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摘要

Solar steam generation has emerged as a promising technology for water purification. Carbon materials are the most widely investigated photothermal conversion materials, but it remains challenging to effectively improve the efficiency of carbon-based photothermal films cost effectively. Herein, carbon nanotubes (CNTs)/polyvinyl alcohol (PVA) hybrid gels are designed by simply freezing/thawing the mixture of CNTs and the PVA polymers, in which the CNT light absorbers are well embedded in PVA molecular meshes. Combining the super-hydrophilic feature and the capillary effect of the PVA porous networks, the hierarchical PVA gel enables efficient water transport from internal capillary channels to molecular meshes. Moreover, PVA molecule chains wrapped on the CNT light absorbers also function as energy-absorbing media to reduce heat loss, achieving confinement of thermal energy to the water clusters. With this advanced solar steam generation system, the converted thermal energy can be utilized in situ to drive the vaporization of water around the CNTs. The CNTs/PVA hybrid gel shows a high energy efficiency of 90.5% and water evaporation rate of 2.06 kg m(-2) h(-1) under 1 sun illumination. In addition to taking advantage of the inherent bimodal porous structures, the fabricated evaporator can realize fast and long-term stable solar steam generation.
机译:太阳能蒸汽发电作为净水技术的有希望的技术。碳材料是最广泛研究的光热转化材料,但它保持挑战性,有效地提高了碳基光热膜的成本效率。这里,通过简单地冻结/解冻CNT和PVA聚合物的混合物来设计碳纳米管/聚乙烯醇(PVA)杂化凝胶,其中CNT光吸收剂很好地嵌入PVA分子网中。组合超亲水特征和PVA多孔网络的毛细血管效应,等级PVA凝胶使得能够从内毛细管通道到分子网的有效水运输。此外,在CNT光吸收器上包裹的PVA分子链也用作能量吸收介质以减少热量损失,从而实现热能对水簇的限制。利用这种先进的太阳能蒸汽发生系统,转换后的热能可以原位利用以驱动CNT周围的水的蒸发。 CNT / PVA杂交凝胶显示出高能效90.5%,水蒸发速率为2.06kg m(-2)h(-1)下的阳光照明。除了利用固有的双峰结构外结构之外,制造的蒸发器还可以实现快速和长期稳定的太阳能蒸汽发电。

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