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Application of rutile and anatase onto cotton fabric and their effect on the NIR reflection/surface temperature of the fabric

机译:金红石和锐钛矿在棉织物上的应用及其对NIR反射/织物表面温度的影响

摘要

NIR irradiation accounts for 52% of the solar irradiance energy reaching the earth, most of which is transferred to thermal energy. This work was undertaken in order to investigate the possibility of applying NIR reflective coatings on cotton fabric with the purpose of surface temperature reduction when irradiated with solar light. Commercial titania was modified by means of calcination treatments. Phase transition from anatase to rutile and growth in particle size were induced, and both processes resulted in an increase of NIR reflectance of the calcined TiO2. Irregular-shaped TiO2 particles with sizes of 293-618 nm were obtained. The highest solar reflectance occurred in the TiO2 sample with an anatase:rutile ratio of 35:65 and a particle diameter of 563 nm. By applying the NIR reflective coating consisting of calcined TiO2 on cotton fabric, a lower surface temperature was recorded with a maximum difference of 3.9¢XC.
机译:近红外辐射占到达地球的太阳辐射能量的52%,其中大部分被转换为热能。进行这项工作是为了研究在棉织物上涂覆NIR反射涂层的可能性,目的是降低太阳光照射时的表面温度。商业二氧化钛通过煅烧处理进行了改性。诱导了从锐钛矿相到金红石相的转变以及粒径的增长,并且这两个过程均导致煅烧TiO2的NIR反射率增加。获得尺寸为293-618nm的不规则形状的TiO 2颗粒。在锐钛矿:金红石比为35∶65且粒径为563nm的TiO 2样品中出现最高的太阳反射率。通过在棉织物上涂覆由煅烧的TiO2组成的NIR反射涂层,可以记录到较低的表面温度,最大差值为3.9¢XC。

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