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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Effect of titanium dioxide (TiO2) with different crystal forms and surface modifications on cooling property and surface wettability of cool roofing materials
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Effect of titanium dioxide (TiO2) with different crystal forms and surface modifications on cooling property and surface wettability of cool roofing materials

机译:二氧化钛的影响(TIO 2 ),具有不同的晶体形式和表面改性,冷却性能和凉爽屋顶材料的表面润湿性

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摘要

Abstract The cool roofing materials were fabricated to solve overheating concerns from absorbed solar energy (Ultraviolet-Visible-Near infrared) and infrared thermal energy absorbed from the ambient. In this study, four types of titanium dioxide (TiO2), namely hydrophobic rutile nano-TiO2, hydrophilic anatase nano-TiO2, unmodified rutile TiO2 and unmodified anatase TiO2, were chosen to fabricate cool roofing materials due to their high solar reflectance and excellent actual heat-insulation properties. Matrix is poly (acrylonitrile-styrene-acrylate) (ASA) resin for its excellent weather resistance. The reflectance was measured by an Ultraviolet-Visible-Near infrared (UV–vis–NIR) spectrophotometer and actual heat-insulation properties by a self-designed device. Contact angle analysis was conducted by a contact angle meter. When hydrophobic rutile nano-TiO2 particles (5wt%) introduced, the ASA/TiO2 hybrid material possesses a reflectance of 45.2% throughout NIR and 59.4% throughout the whole solar spectrum. The thermal emissivity in the region of 8–13μm is 0.87, as well as 0.86 in the region of 2.5–15μm. The high solar reflectance and high thermal emissivity lead to cool materials with excellent cooling property. Simultaneously, significant drop in temperature shows excellent cooling property in comparison with unloaded ASA resin. Specifically, a maximum decrease of 34°C can be observed i
机译:<![cdata [ 抽象 制造了很酷的屋顶材料,以解决吸收的太阳能(紫外线可见近红外)和从环境中吸收的红外热能的过热问题。在这项研究中,四种类型的二氧化钛(TiO 2 ),即疏水性金红石纳米TIO 2 ,亲水性anaatase nano-tio 2 ,未修饰的金红石tio 2 和未修饰的anatase TIO 2 ,由于其高太阳能反射率和优异的实际隔热性能而制造了凉爽的屋顶材料。基质是聚(丙烯腈 - 苯乙烯 - 丙烯酸酯)(ASA)树脂,其具有优异的耐候性。通过紫外 - 可见近红外(UV-Vis-NIR)分光光度计和通过自动设计的装置测量反射率。接触角分析通过接触角表进行。当疏水金红石纳米tiO 2 粒子(5 wt%),ASA / TiO 2 混合材料具有在整个NIR中的反射率为45.2%,整个太阳光谱整个太阳光谱59.4%。在8-13 μm的区域中的热发射率为0.87,在2.5-15的区域中为0.86 μm。高太阳反射率和高热发射率导致具有优异冷却性能的冷却材料。同时,与卸载的ASA树脂相比,温度显着下降显示出优异的冷却性能。具体地,可以观察到最大减小34

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