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Optical properties of high temperature molten salt mixtures for volumetrically absorbing solar thermal receiver applications

机译:体积吸收太阳能热接收器应用的高温熔融盐混合物的光学性质

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摘要

Molten salts are promising candidates for liquid volumetric absorbers in concentrated solar power systems. To characterize absorption and heat transfer performance in high temperature applications, their optical properties are required. Thus a method for experimentally determining the absorption coefficient of non-scattering high temperature semi-transparent liquids for large (similar to 1 m-deep) direct absorption solar receiver applications was developed. It was used to measure the absorption coefficient in liquids over a broad spectral range and temperatures up to 800 degrees C in a 40 wt.% KNO3:60 wt.% NaNO3 binary nitrate molten salt mixture (solar salt) and a 50 wt.% KCI:50 wt.% NaCI binary chloride molten salt mixture. The binary nitrate and binary chloride both demonstrated well distributed solar absorption (>95% absorption through 1 m and 2 m, respectively). At 400 degrees C, the binary nitrate is optically thick in its re-emission spectrum and behaves as a blackbody radiator. The effects of thermal decomposition were also shown to have significant consequences on the overall performance of the binary nitrate mixture, transforming it into an opaque surface absorber following thermal degradation (>95% in <0.25 m). The implications of these results for solar receiver design are discussed in terms of volumetric absorption, total effective emissivity, and capture efficiency. The measurement technique developed and results are relevant in a variety of high temperature applications including heat transfer systems, materials processing, pharmaceuticals, and food processing facilities. (C) 2017 Elsevier Ltd. All rights reserved.
机译:熔融盐是集中式太阳能发电系统中液体体积吸收剂的有希望的候选者。为了表征高温应用中的吸收和传热性能,需要它们的光学性能。因此,开发了一种用于实验确定大型(类似于1 m深)直接吸收太阳能接收器应用的非散射高温半透明液体的吸收系数的方法。它用于在40%(重量)KNO3:60%(重量)NaNO3二元硝酸盐熔融盐混合物(太阳能盐)和50%(重量)的KNO3:60%(重量)的宽光谱范围和温度高达800摄氏度的温度下测量液体中的吸收系数。 KCl:50重量%NaCl二元氯化物熔融盐混合物。二元硝酸盐和二元氯化物均表现出良好的太阳吸收分布(分别通过1 m和2 m吸收> 95%)。在400摄氏度时,二元硝酸盐的再发射光谱在光学上较厚,并表现为黑体辐射体。还显示出热分解的影响对二元硝酸盐混合物的整体性能具有重大影响,在热降解后将其转变为不透明的表面吸收剂(在<0.25 m中> 95%)。从体积吸收,总有效发射率和捕获效率方面讨论了这些结果对太阳能接收器设计的影响。所开发的测量技术和结果与各种高温应用相关,包括传热系统,材料加工,制药和食品加工设施。 (C)2017 Elsevier Ltd.保留所有权利。

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