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Characterization of Environmental Dust in the Dammam Area and Mud After-Effects on Bisphenol-A Polycarbonate Sheets

机译:达曼地区的环境粉尘特征以及双酚A聚碳酸酯薄板的泥浆后效应

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摘要

Owing to recent climate changes, dust storms are increasingly common, particularly in the Middle East region. Dust accumulation and subsequent mud formation on solid surfaces in humid environments typically have adverse effects on surface properties such as optical transmittance, surface texture, and microhardness. This is usually because the mud, which contains alkaline and ionic species, adheres strongly to the surface, often through chemical bonds, and is therefore difficult to remove. In this study, environmental dust and the after-effects of mud formed on a polycarbonate sheet, which is commonly used as a protective glass in photovoltaic cells. Ionic compounds (OH) are shown to significantly affect the optical, mechanical, and textural characteristics of the polycarbonate surface, and to increase the adhesion work required to remove the dry mud from the polycarbonate surface upon drying. Such ability to modify characteristics of the polycarbonate surface could address the dust/mud-related limitations of superhydrophobic surfaces.
机译:由于最近的气候变化,沙尘暴越来越普遍,尤其是在中东地区。潮湿环境中固体表面上的灰尘堆积和随后形成的泥浆通常会对诸如光透射率,表面质地和显微硬度之类的表面特性产生不利影响。这通常是因为含有碱性和离子性物质的泥浆经常通过化学键牢固地粘附在表面上,因此很难去除。在这项研究中,环境灰尘和在聚碳酸酯板上形成的泥土的后效应,通常在光伏电池中用作保护性玻璃。已显示离子化合物(OH -)会显着影响聚碳酸酯表面的光学,机械和质构特征,并增加在干燥时从聚碳酸酯表面去除干燥泥浆所需的粘附力。这种改变聚碳酸酯表面特性的能力可以解决与超疏水表面的粉尘/泥浆有关的局限性。

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