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Developments in the synthesis of flat plate solar selective absorber materials via sol–gel methods: A review

机译:溶胶-凝胶法合成平板太阳能选择性吸收材料的研究进展

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摘要

There is a great demand for low-cost and environmentally friendly techniques for synthesizing high quality solar selective absorber (SSA) coatings. Such coatings are capable of absorbing most of the incoming solar radiation (high absorptance) without losing much of the thermal energy through re-radiation from heated surface (low emittance). Sol–gel techniques are promising synthesis methods for these SSA coatings. The optical properties and durability of the SSA coating can be easily controlled by fine-tuning relevant design parameters such as heating temperature or precursor concentrations in the synthesis process. In light of this, there are many knowledge gaps that need to be filled in the context of technicalities regarding the sol–gel processes and the optical and morphological characteristics of these coatings. Comprehensive understanding of these characteristics is a vital component in the optimal design of SSA coatings and therefore, the aim of this paper is to identify these technical issues and review developments in the synthesis of flat-plate SSA materials produced by sol–gel methods.
机译:对于用于合成高质量的太阳能选择性吸收剂(SSA)涂层的低成本和环境友好的技术有很大的需求。这种涂层能够吸收大部分入射的太阳辐射(高吸收率),而不会因从受热表面再辐射而损失大量热能(低发射率)。溶胶凝胶技术是这些SSA涂料的有前途的合成方法。通过微调相关的设计参数(例如合成过程中的加热温度或前体浓度),可以轻松控制SSA涂层的光学性能和耐用性。鉴于此,在关于溶胶-凝胶工艺以及这些涂料的光学和形态特征的技术性方面,需要填补许多知识空白。全面了解这些特性是SSA涂层优化设计的重要组成部分,因此,本文的目的是确定这些技术问题并回顾通过溶胶-凝胶法生产的平板SSA材料的合成进展。

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