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CNT-Based Solar Thermal Coatings: Absorptance vs. Emittance

机译:基于CNT的太阳能热涂料:吸收率与吸收率

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摘要

A novel approach for fabricating selective absorbing coatings based on carbon nanotubes (CNTs) for mid-temperature solar–thermal application is presented. The developed formulations are dispersions of CNTs in water or solvents. Being coated on stainless steel (SS) by spraying, these formulations provide good characteristics of solar absorptance. The effect of CNT concentration and the type of the binder and its ratios to the CNT were investigated. Coatings based on water dispersions give higher adsorption, but solvent-based coatings enable achieving lower emittance. Interestingly, the binder was found to be responsible for the high emittance, yet, it is essential for obtaining good adhesion to the SS substrate. The best performance of the coatings requires adjusting the concentration of the CNTs and their ratio to the binder to obtain the highest absorptance with excellent adhesion; high absorptance is obtained at high CNT concentration, while good adhesion requires a minimum ratio between the binder/CNT; however, increasing the binder concentration increases the emissivity. The best coatings have an absorptance of ca. 90% with an emittance of ca. 0.3 and excellent adhesion to stainless steel.
机译:提出了一种基于碳纳米管(CNT)用于中温太阳能热应用的选择性吸收涂层的新方法。开发的配方是水或溶剂中CNT的分散。通过喷涂涂覆在不锈钢(SS)上,这些配方提供了太阳能吸收率的良好特征。研究了CNT浓度和粘合剂的类型及其对CNT的比例。基于水分散体的涂层具有更高的吸附,但溶剂基涂层使得能够降低膨胀。有趣的是,发现粘合剂负责高发射率,然而,对于获得对SS衬底的良好粘附至关重要。涂层的最佳性能需要调节CNT的浓度及其与粘合剂的比率,以获得具有优异粘合性的最高吸收率;高吸收率在高CNT浓度下获得,而良好的粘合力需要粘合剂/ CNT之间的最小比率;然而,增加粘合剂浓度增加了发射率。最好的涂料具有CA的吸收率。 90%的含量为CA. 0.3和对不锈钢的优异粘附性。

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