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包含超长羟基磷灰石纳米线和碳纳米管的柔韧防火光热纸,用于太阳能驱动的水净化。

Flexible Fire-Resistant Photothermal Paper Comprising Ultralong Hydroxyapatite Nanowires and Carbon Nanotubes for Solar Energy-Driven Water Purification.

机构信息

State Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai, 200050, P. R. China.

出版信息

Small. 2018 Dec;14(50):e1803387. doi: 10.1002/smll.201803387. Epub 2018 Oct 29.

Abstract

Efficient utilization of abundant solar energy for clean water generation is considered a sustainable and environment friendly approach to mitigate the global water crisis. For this purpose, this study reports a flexible fire-resistant photothermal paper by combining carbon nanotubes (CNTs) and fire-resistant inorganic paper based on ultralong hydroxyapatite nanowires (HNs) for efficient solar energy-driven water steam generation and water purification. Benefiting from the structural characteristics of the HN/CNT photothermal paper, the black CNT surface layer exhibits a high light absorbability and photothermal conversion capability, the HN-based inorganic paper acts as a thermal insulator with a high temperature stability, low thermal conductivity, and interconnected porous structure. By combining these advantages, high water evaporation efficiencies of 83.2% at 1 kW m and 92.8% at 10 kW m are achieved. In addition, the HN/CNT photothermal paper has a stable water evaporation capability during recycling and long-time usage. The promising potential of the HN/CNT photothermal paper for efficient production of drinkable water from both actual seawater and simulative wastewater samples containing heavy metal ions, dyes, and bacteria is also demonstrated. The highly flexible HN/CNT photothermal paper is promising for application in highly efficient solar energy-driven seawater desalination and wastewater purification.

摘要

高效利用丰富的太阳能来产生清洁水被认为是缓解全球水危机的一种可持续且环保的方法。为此,本研究报告了一种基于超长长羟基磷灰石纳米线 (HNs) 的 CNTs 和耐燃无机纸的柔性耐燃光热纸,用于高效太阳能驱动的水蒸气产生和水净化。受益于 HN/CNT 光热纸的结构特性,黑色 CNT 表面层表现出高吸光性和光热转换能力,基于 HN 的无机纸作为热绝缘体具有高温稳定性、低热导率和互连多孔结构。通过结合这些优势,在 1kW m 时达到了 83.2%的高水蒸发效率,在 10kW m 时达到了 92.8%。此外,HN/CNT 光热纸在回收和长时间使用过程中具有稳定的水蒸发能力。HN/CNT 光热纸在高效生产饮用水方面具有广阔的前景,包括实际海水和含有重金属离子、染料和细菌的模拟废水样品。高柔性的 HN/CNT 光热纸有望应用于高效太阳能驱动的海水淡化和废水净化。

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