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首页> 外文期刊>Thermal engineering >Conversion of Solar Radiation into Vapor: New Possibilities Offered by Nanomaterials (Review)
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Conversion of Solar Radiation into Vapor: New Possibilities Offered by Nanomaterials (Review)

机译:将太阳辐射转换为蒸气:纳米材料提供的新可能性(审查)

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摘要

Abstract— The current state in converting solar radiation into steam using nanotechnologies and nanomaterials is considered. The main attention is paid to the use of novel nanostructured materials, including graphene components to generate steam, in particular, to the use of the latter as floating or volumetric solar absorbers. The absorbers of the above types have been classified, their physical and technological characteristics have been considered, and preferable variants for various applications have been established. It is stressed that the question on the efficiency of surface or volumetric absorbers has to be considered as applied to specific applications. The thermophysical processes that occur during the radiation absorption and the heating of the nanofluid have been described for different absorption patterns. Models that underlie the description of the thermophotonics and nanoplasmonics processes during the solar radiation absorption by nanocomponents have been formulated. The basic processes that occur under nanoplasmonic heating of nanocomponents by solar radiation and the heat-and-mass exchange between nanocomponents and the surrounding medium have been investigated. Special attention is paid to steam generation by plasmonic nanoparticles and graphene flakes, which are currently considered the basic elements for prospective efficient solar radiation conversion systems. The properties of the materials used to absorb solar radiation and their components are described. The materials that have already shown a high solar absorption coefficient are listed. The properties of nanofluids used for volumetric absorption of solar radiation and the subsequent localized heating are described. The significant role of novel steam-generation mechanisms based on plasmonic nanoparticles and graphene flakes is stressed. Mesoscopic and nanostructured solar radiation absorbers are presented that ensure the generation of steam used not only to produce energy but also to desalinate and sterilize water. The main unsolved problems of applying nanocomponents for the solar thermal industry are considered and new tasks are set, the solution of which will allow taking important steps towards using the above systems for solar energy conversion.
机译:摘要 - 考虑了使用纳米技术和纳米材料将太阳辐射转换为蒸汽的当前状态。主要注意力是使用新型纳米结构材料的使用,包括石墨烯部件,特别是将后者用作浮动或体积太阳能吸收剂的蒸汽。已经分类了上述类型的吸收,已经考虑了物理和技术特征,并且已经建立了各种应用的优选变体。强调,关于表面或体积吸收剂效率的问题必须被认为适用于特定应用。已经针对不同的吸收图案描述了在辐射吸收和纳米流体的加热期间发生的热物理过程。已经配制了纳米组分在太阳系中的太阳辐射吸收期间嗜热源性和纳米体处理的描述的模型。研究了通过太阳辐射和纳米复共和周围培养基之间的纳米组件的纳米组件的纳米膜加热下发生的基本过程。通过等离子体纳米粒子和石墨烯片来支付特别注意的蒸汽,目前被认为是前瞻性高效太阳辐射转换系统的基本元素。描述了用于吸收太阳辐射及其组分的材料的性质。列出了已经示出了高太阳能吸收系数的材料。描述了用于太阳辐射的体积吸收和随后的局部加热的纳米流体的性质。基于等离子体纳米粒子和石墨烯薄片的新型蒸汽发生机制的重要作用受到抗压。提出了介绍和纳米结构的太阳辐射吸收剂,以确保使用的蒸汽不仅用于产生能量而且产生脱盐和灭菌水。考虑了用于太阳能热产业的纳米组分的主要未解决的问题,并设定了新的任务,其解决方案将允许采用上述太阳能转换系统进行重要步骤。

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