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Enhanced Thermal Stability of W-Ni-Al[subscript 2]O[subscript 3] Cermet-Based Spectrally Selective Solar Absorbers with Tungsten Infrared Reflectors

机译:钨红外反射镜增强W-Ni-al [下标2] O [下标3]金属陶瓷光谱选择性太阳能吸收剂的热稳定性

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摘要

Solar thermal technologies such as solar hot water and concentrated solar power trough systems rely on spectrally selective solar absorbers. These solar absorbers are designed to efficiently absorb the sunlight while suppressing re-emission of infrared radiation at elevated temperatures. Efforts for the development of such solar absorbers must not only be devoted to their spectral selectivity but also to their thermal stability for high temperature applications. Here, selective solar absorbers based on two cermet layers are fabricated on mechanically polished stainless steel substrates using a magnetron sputtering technique. The targeted operating temperature is 500–600 °C. A detrimental change in the morphology, phase, and optical properties is observed if the cermet layers are deposited on a stainless steel substrate with a thin nickel adhesion layer, which is due to the diffusion of iron atoms from the stainless steel into the cermet layer forming a FeWO[subscript 4] phase. In order to improve thermal stability and reduce the infrared emittance, tungsten is found to be a good candidate for the infrared reflector layer due to its excellent thermal stability and low infrared emittance. A stable solar absorptance of ≈0.90 is demonstrated, with a total hemispherical emittance of 0.15 at 500 °C.
机译:诸如太阳能热水和集中式太阳能槽系统之类的太阳能技术依赖光谱选择性太阳能吸收器。这些太阳能吸收器旨在有效吸收阳光,同时抑制高温下红外辐射的重新发射。开发这种太阳能吸收器的努力不仅必须致力于其光谱选择性,还必须致力于其在高温应用中的热稳定性。在此,使用磁控溅射技术在机械抛光的不锈钢基板上制造基于两个金属陶瓷层的选择性太阳能吸收器。目标工作温度为500–600°C。如果将金属陶瓷层沉积在具有薄镍粘附层的不锈钢基材上,则会观察到形态,相和光学性质的不利变化,这是由于铁原子从不锈钢扩散到金属陶瓷层中而形成的FeWO [下标4]相。为了改善热稳定性并降低红外发射率,发现钨由于其优异的热稳定性和低红外发射率而成为红外反射器层的良好候选者。证明了约0.90的稳定太阳吸收率,在500°C下总半球发射率为0.15。

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