首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Black oxide nanoparticles as durable solar absorbing material for high-temperature concentrating solar power system
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Black oxide nanoparticles as durable solar absorbing material for high-temperature concentrating solar power system

机译:黑色氧化物纳米颗粒作为高温聚光太阳能系统的耐用太阳能吸收材料

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摘要

Concentrating solar power is becoming an increasingly important part of the renewable energy portfolio. However, further cost reduction is desired to make CSP competitive with traditional energy technologies. Higher operating temperature is considered an attractive avenue leading to higher power conversion efficiency and lower cost, but tremendous technical challenges exist with higher temperature operation of CSP, with one of the main issues being the lack of a high-performance solar absorbing material that is durable at 750 degrees C or above. In this work, a black oxide material, made of cobalt oxide nanoparticles, is synthesized and utilized as a high-temperature solar absorbing material. The nanoparticles are embedded in a dielectric matrix through a scalable spray coating process. The top layer of the coating is further improved with light-trapping structures using sacrificial fillers introduced from the same coating process. After the surface modification of cobalt oxide coating, we achieved a high thermal efficiency of 88.2%. More importantly, the coating shows no degradation after 1000-h annealing at 750 degrees C in air, while the existing commercial light absorbing coating was reported to degrade by long-term exposure at high temperature. Our findings suggest that the materials and processes developed here are promising for solar absorbing coating for future high-temperature CSP systems. (C) 2014 Elsevier B.V. All rights reserved.
机译:集中太阳能已成为可再生能源组合中越来越重要的一部分。但是,需要进一步降低成本以使CSP与传统能源技术竞争。较高的工作温度被认为是导致较高的功率转换效率和较低成本的诱人途径,但是CSP的较高温度操作存在巨大的技术挑战,主要问题之一是缺乏耐用的高性能太阳能吸收材料在750摄氏度或以上。在这项工作中,合成了由氧化钴纳米颗粒制成的黑色氧化物材料,并将其用作高温太阳能吸收材料。通过可缩放的喷涂工艺将纳米颗粒嵌入介电基质中。使用从同一涂层工艺引入的牺牲填料,通过光陷获结构进一步改善了涂层的顶层。经过氧化钴涂层的表面改性,我们获得了88.2%的高热效率。更重要的是,该涂层在空气中在750摄氏度下进行1000h退火后,没有表现出降解,而据报道,现有的商用吸光涂层由于在高温下长期暴露而降解。我们的发现表明,这里开发的材料和工艺有望用于未来高温CSP系统的太阳能吸收涂层。 (C)2014 Elsevier B.V.保留所有权利。

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