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Selective solar absorber coatings on receiver tubes for CSP- energy-efficient production process by sol-gel dip-coating and subsequent induction heating

机译:用于CSP节能生产工艺的接收管中的选择性太阳能吸收器涂层通过溶胶 - 凝胶浸涂和随后的感应加热

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The energy efficiency of production processes for components of solar energy systems is an important issue. Other factors, which are important for the production of black selective solar coatings include production speed, cycle time and homogeneity of the coating, as well as the minimization of the quantity of the needed chemical precursors. In this paper a new energy-efficient low-cost production process is presented for production of optically selective coatings for solar thermal absorbers. The used method to produce such coatings is sol-gel dip-coating for which all the solutions have been synthetized at the Solar Energy and Building Physics Laboratory of EPFL. The used precursors are tetraethyl orthosilicate, manganese acetate tetrahydrate, copper chloride dihydrate and cobalt chloride hexahydrate. Solutions were obtained by dissolving these precursors in a solution based on a mixture of absolute ethanol, nitric acid and demineralized water. The layers deposited on sheetlike substrates were annealed in a benchtop furnace. For 2 meter long austenitic stainless steel tubes, a novel, fast and energy-efficient process based on induction heating was developed for the thermal annealing. An induction coil passes along the rube. An alternating current flowing in the coil induces a current in the tube. By resistive heating, the temperature of both the metallic tube wall and the deposited film increases. The homogeneity of the temperature distribution of the tube after a single passage of the coil was monitored by infrared imaging.
机译:太阳能系统组件的生产过程的能源效率是一个重要问题。其他因素对于制造黑色选择性太阳能涂层很重要,包括涂层的生产速度,循环时间和均匀性,以及最小化所需化学前体的量。本文提出了一种新的节能低成本生产过程,用于生产用于太阳能热吸收剂的光学选择性涂层。用于生产这种涂层的使用方法是溶胶 - 凝胶浸涂,其所有溶液在EPFL的太阳能和建筑物物理实验室中合成了所有溶液。使用的前体是甲乙酸四乙酯,乙酸锰四水合物,氯化铜二水合物和氯化钴六水合物。通过将这些前体溶解在基于绝对乙醇,硝酸和脱水水的混合物中,通过将这些前体溶解在溶液中获得的溶液。沉积在片状基板上的层在台式炉中进行退火。对于2米长的奥氏体不锈钢管,基于感应加热的新型,快速和节能的过程是为热退火的热退火。一种感应线圈沿着rube通过。在线圈中流动的交流电引起管中的电流。通过电阻加热,金属管壁和沉积膜的温度增加。通过红外成像监测线圈的单个通道后管的温度分布的均匀性。

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