首页> 外文会议>Fifth Conference on Thermophotovoltaic Generation of Electricity; Sep 16-19, 2002; Rome, Italy >Selective Emitters for High Efficiency TPV Conversion: Materials Preparation and Characterisation
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Selective Emitters for High Efficiency TPV Conversion: Materials Preparation and Characterisation

机译:高效TPV转换的选择性发射极:材料制备和表征

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Optimising the spectral emissivity of the IR radiation source in a TPV generator is one of the crucial steps towards high efficiency TPV conversion. In this paper we present different approaches to the preparation of selective emitters to be coupled to high efficiency photovoltaic cells. The emitters are designed to work at a temperature of about 1500K and they have been prepared to be used either as external coatings for the burner or as a structural material for the burner itself. Composite ceramics containing rare earth cations, prepared by slip-casting, with various concentration of rare earths were prepared by Slip Casting and Slurry Coating. Rare earth oxides have been incorporated into different oxide matrices, namely Silica, Alumina, Zirconia and their combination. The final aim was to find the material that exhibits the best performance in terms of both high selective power emission, good efficiency along with acceptable thermo-structural properties (high temperature thermal shock resistance, good strength, no creep). The power density emitted by samples as function of the temperature has been tested in the range 1000nm-5000nm. The high temperature emission measurements and the structural tests indicate that a good compromise between the functional and the thermo-structural properties may be reached. The results of the tests on the emitter coatings carried out in a TPV generator at the operating conditions are also presented in this paper.
机译:在TPV发生器中优化IR辐射源的光谱发射率是实现高效TPV转换的关键步骤之一。在本文中,我们提出了准备与高效光伏电池耦合的选择性发射极的不同方法。发射器设计为在约1500K的温度下工作,它们已经准备好用作燃烧器的外部涂层或用作燃烧器本身的结构材料。通过流延浇铸和浆料涂覆制备了通过滑铸法制备的,具有各种浓度的稀土元素的包含稀土阳离子的复合陶瓷。稀土氧化物已被掺入不同的氧化物基质中,即二氧化硅,氧化铝,氧化锆及其组合。最终目的是找到一种在高选择性功率发射,良好效率以及可接受的热结构特性(高温抗热震性,良好的强度,无蠕变)方面均表现出最佳性能的材料。样品发射的功率密度随温度的变化已在1000nm-5000nm范围内进行了测试。高温排放测量和结构测试表明,可以在功能和热结构特性之间取得良好的折衷。本文还介绍了在TPV发生器中在运行条件下进行的发射极涂层测试的结果。

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