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具有排列通道和疏油性的双功能氧化石墨烯基光热材料用于高效太阳能蒸汽产生

Dual-Functional Graphene Oxide-Based Photothermal Materials with Aligned Channels and Oleophobicity for Efficient Solar Steam Generation.

作者信息

Chen Lihua, Wei Jing, Tian Qi, Han Zhichao, Li Li, Meng Shujuan, Hasi Qi-Meige

机构信息

Key Laboratory of Environment-Friendly Composite Materials of the State Ethnic Affairs Commission, College of Chemical Engineering, Northwest Minzu University, Lanzhou, Gansu 730030, P. R. China.

出版信息

Langmuir. 2021 Aug 24;37(33):10191-10199. doi: 10.1021/acs.langmuir.1c01647. Epub 2021 Aug 9.

Abstract

Desalination by solar steam generation (SSG) has emerged as one of the most efficient approaches to address the issue of global water shortage. In this work, novel graphene oxide (GO)-based solar steam generators (GO-SSGs) with aligned channels were prepared by directional freezing and simple carbonization of a hydrogel composed of GO and poly(vinyl alcohol) (PVA). Benefitting from their excellent light absorption (light absorption efficiency exceeds 94%), better thermal insulation (thermal conductivity, 0.259 W/(m K)), and suitable porous structure, which facilitates rapid water transportation, the GO-SSGs show superior SSG performance with a high solar energy conversion efficiency of up to 92% achieved under an irradiation of 1.0 kW/m. Interestingly, uniquely aligned channels endow them with good salt-rejection performance; the solar energy conversion efficiency of GO-SSGs in 20 wt % NaCl, KCl, and MgCl brine can reach more than 85%. To improve their antifouling performance, a chemically hydrophilic and oleophobic modification was conducted, making it possible to run SSG even in oily wastewater; for instance, a solar energy conversion efficiency of 84% was obtained in an aqueous solution containing 10 wt % -hexadecane. Compared with the existing photothermal materials, these materials show advantages of simple manufacture, high SSG efficiency, superior salt tolerance, and antifouling performance, which make them promising candidates as a kind of new high-performance photothermal materials for desalination even in oily wastewater, thus further expanding the scope of their practical SSG application.

摘要

通过太阳能蒸汽发生(SSG)进行海水淡化已成为解决全球水资源短缺问题最有效的方法之一。在这项工作中,通过对由氧化石墨烯(GO)和聚乙烯醇(PVA)组成的水凝胶进行定向冷冻和简单碳化,制备了具有排列通道的新型氧化石墨烯基太阳能蒸汽发生器(GO-SSG)。得益于其优异的光吸收性能(光吸收效率超过94%)、更好的隔热性能(热导率为0.259W/(m·K))以及有利于水快速传输的合适多孔结构,GO-SSG在1.0kW/m的辐照下表现出卓越的SSG性能,太阳能转换效率高达92%。有趣的是,独特排列的通道赋予它们良好的拒盐性能;GO-SSG在20wt%的NaCl、KCl和MgCl₂盐水中的太阳能转换效率可达到85%以上。为了提高其防污性能,进行了化学亲水性和疏油性改性,使得即使在含油废水中也能运行SSG;例如,在含有10wt%正十六烷的水溶液中获得了84%的太阳能转换效率。与现有的光热材料相比,这些材料具有制造简单、SSG效率高、耐盐性优异和防污性能好等优点,这使得它们有望成为一种新型高性能光热材料,即使在含油废水中也可用于海水淡化,从而进一步扩大其实际SSG应用的范围。

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