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Influence of dust and mud on the optical chemical and mechanical properties of a pv protective glass

机译:灰尘和灰尘对光伏保护玻璃的光学化学和机械性能的影响

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摘要

Recent developments in climate change have increased the frequency of dust storms in the Middle East. Dust storms significantly influence the performances of solar energy harvesting systems, particularly (photovoltaic) PV systems. The characteristics of the dust and the mud formed from this dust are examined using various analytical tools, including optical, scanning electron, and atomic force microscopies, X-ray diffraction, energy spectroscopy, and Fourier transform infrared spectroscopy. The adhesion, cohesion and frictional forces present during the removal of dry mud from the glass surface are determined using a microtribometer. Alkali and alkaline earth metal compounds in the dust dissolve in water to form a chemically active solution at the glass surface. This solution modifies the texture of the glass surface, thereby increasing the microhardness and decreasing the transmittance of the incident optical radiation. The force required to remove the dry mud from the glass surface is high due to the cohesive forces that result from the dried mud solution at the interface between the mud and the glass. The ability altering the characteristics of the glass surface could address the dust/mud-related limitations of protective surfaces and has implications for efficiency enhancements in solar energy systems.
机译:气候变化的最新发展增加了中东沙尘暴的发生频率。沙尘暴会严重影响太阳能收集系统的性能,尤其是(光伏)光伏系统。使用各种分析工具(包括光学,扫描电子和原子力显微镜检查,X射线衍射,能谱和傅里叶变换红外光谱)检查了灰尘和由此灰尘形成的泥浆的特性。使用微摩擦计测定从玻璃表面除去干泥期间存在的粘附力,内聚力和摩擦力。灰尘中的碱金属和碱土金属化合物溶于水,在玻璃表面形成化学活性溶液。该溶液改变了玻璃表面的质地,从而增加了显微硬度并降低了入射光辐射的透射率。由于在泥浆和玻璃之间的界面处的干燥泥浆溶液产生的内聚力,从玻璃表面除去干燥泥浆所需的力很高。改变玻璃表面特性的能力可以解决与灰尘/泥浆有关的保护表面局限性,并且对提高太阳能系统的效率有影响。

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