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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Development of ZrB2-Based Single Layer Absorber Coating and Molten Salt Corrosion of Bulk ZrB2-SiC Ceramic for Concentrated Solar Power Application
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Development of ZrB2-Based Single Layer Absorber Coating and Molten Salt Corrosion of Bulk ZrB2-SiC Ceramic for Concentrated Solar Power Application

机译:基于ZRB2的单层吸收剂涂料和浓缩太阳能应用的散装ZRB2-SIC陶瓷熔盐腐蚀的研制

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摘要

This study has dual objectives, one to develop single layer ZrB2-SiC-based ceramic absorber coating on stainless substrate, and another aim is to explore the degradation of ZrB2-SiC bulk ceramic in molten solar salt. In particular, we report the molten salt corrosion behavior of earlier developed ZrB2-SiC ceramic composite at 400 degrees C for 100 h. The corrosion rate in solar salt was determined to be 0.73 +/- 0.09 mg h(-1)/cm(2) by gravimetric analysis. Binary and ternary oxide phases were formed due to electrochemical corrosion. The hot-pressed bulk ZrB2-SiC ceramic exhibits a high solar absorptance of 0.848 and also a high thermal emissivity of 0.66. A one-layer solar selective absorber coating without antireflection layer was developed using the ceramic disk as a sputtering target. When deposited using radio frequency (RF) magnetron sputtering technique on stainless steel substrate, a solar absorptance of 0.769 and thermal emissivity of 0.15 was obtained for an amorphous coating of thickness similar to 90 nm, without antireflection coating. The composition, determined by electron probe microanalyzer and X-ray photoelectron spectroscopy techniques, revealed nonstoichiometric phases in the layer with a relatively higher concentration of the lighter elements. The implication of the present work for concentrated solar power application is discussed.
机译:本研究有两个目标,一个是在不锈钢基底上开发单层ZrB2-SiC基陶瓷吸收涂层,另一个目标是探索ZrB2-SiC块体陶瓷在熔融太阳盐中的降解。特别是,我们报告了早期开发的ZrB2-SiC陶瓷复合材料在400℃下100小时的熔盐腐蚀行为。通过重量分析确定,在太阳盐中的腐蚀速率为0.73+/-0.09 mg h(-1)/cm(2)。电化学腐蚀形成了二元和三元氧化物相。热压块状ZrB2-SiC陶瓷的太阳吸收率高达0.848,热发射率高达0.66。以陶瓷片为溅射靶,研制了一种无增透层的单层太阳能选择性吸收涂层。当使用射频(RF)磁控溅射技术在不锈钢衬底上沉积时,对于厚度类似于90 nm的非晶涂层,在没有增透涂层的情况下,获得了0.769的太阳吸收率和0.15的热发射率。通过电子探针微分析仪和X射线光电子能谱技术确定的成分显示,该层中存在非化学计量相,且较轻元素的浓度相对较高。讨论了目前工作对集中太阳能应用的意义。

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