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Experimental study of self-cleaning property of titanium dioxide and nanospray coatings in solar applications

机译:太阳能应用中二氧化钛和纳米喷涂涂料自洁性能的实验研究

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摘要

Nowadays, the urgent need to replace fossil fuels with renewable energy is no secret. Therefore, researching in this area and developing the infrastructures necessary for the optimized utilization of these types of energy, are rising sharply. Among different kinds of renewable energy, due to easy access, solar energy has received special attention and extensive studies have been done, in order to increase the efficiency of the solar collectors and PV panels. One of the prime problems of solar systems in arid regions is the accumulation of dust on transparent surfaces, followed by an intensive drop in the transmission coefficient. In the present study, in a 70-day test period, up to 22% transmission coefficient loss, caused by the accumulation of dust on the surface, was observed. Thus, in order to solve this problem, Nanocoatings were deposited on glass samples to create self-cleaning property. A nanospray was used to create a hydrophobic film on the surface and TiO2 was coated in three different thickness to create a hydrophilic film on sample surfaces. Test results showed that these surface modifications have a significant impact in the reduction of dust accumulation and the loss of the transmission coefficient. Although there was no rain during the test, for samples with surface modification, the transmission coefficient drops were noticeably reduced. After rain simulation, the results indicate that transmission loss reduced from 22% to 0.5% and dust settlement problem was almost completely solved.
机译:如今,用可再生能源替代化石燃料的迫切需求已不是秘密。因此,在这一领域进行研究并开发为优化利用这些类型的能源所必需的基础设施。在各种可再生能源中,由于易于获取,太阳能受到了特别关注,并进行了广泛的研究,以提高太阳能收集器和光伏面板的效率。干旱地区太阳系的主要问题之一是灰尘在透明表面上的积聚,然后透射系数急剧下降。在本研究中,在70天的测试期内,观察到高达22%的传输系数损失,这是由于灰尘在表面上的积聚引起的。因此,为了解决该问题,将纳米涂层沉积在玻璃样品上以产生自清洁性能。使用纳米喷雾在表面上形成疏水膜,并以三种不同厚度涂覆TiO2以在样品表面上形成亲水膜。测试结果表明,这些表面改性对减少粉尘堆积和降低传输系数具有重大影响。尽管在测试过程中没有下雨,但是对于表面改性的样品,透射系数的下降明显降低了。降雨模拟后的结果表明,传输损耗从22%降低到0.5%,灰尘沉降问题几乎完全解决。

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