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Surface Characteristics and Photocatalytic Gas Degradation of Nonmetal Element-Doped Titania

机译:非金属元素掺杂二氧化钛的表面特性和光催化气体降解

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The present study explored the characteristics and the photocatalytic activities of S-doped TiO2 (S-TiO2) and N-doped TiO2 (N-TiO2) for the decomposition of gas-phase isopropyl alcohol, according to calcination temperatures. The characteristics of the prepared photocatalysts were determined using an X-ray diffractometer, a scanning electron microscope, a diffuse reflectance ultraviolet-visible-near infrared spectrophotometer, and a Fourier-transform infrared spectrometer. The average degradation efficiency of isopropyl alcohol by the S-TiO2 calcined at 350 °C was 40 %, whereas it was 98 % for the S-TiO2 calcined at 550 °C. However, the average degradation efficiency of isopropyl alcohol decreased to 92 % when the calcination temperature was further increased from 550 to 650 °C. The average degradation efficiency of isopropyl alcohol by the N-TiO2 calcined at 350 °C was 93 %, whereas it was close to 100 % for the N-TiO2 calcined at 550 and 650 °C. Moreover, the acetone generation yields as determined using the S- and N-TiO2 were 86 and 58 %, respectively, for the calcination temperature of 350 °C, whereas they were 78 and 69 %, respectively, for the calcination temperature of 650 °C. Consequently, as-prepared S-TiO2 and N-TiO2 photocatalysts could be applied to purification of airborne isopropyl alcohol under visible-light irradiation, but the formation of acetone should be considered for their applications.
机译:本研究根据煅烧温度探索了S掺杂的TiO2(S-TiO2)和N掺杂的TiO2(N-TiO2)的特性及其光催化分解气相异丙醇的能力。使用X射线衍射仪,扫描电子显微镜,漫反射紫外-可见-近红外分光光度计和傅立叶变换红外光谱仪来确定所制备的光催化剂的特性。在350°C下煅烧的S-TiO2的平均异丙醇降解效率为40%,而在550°C下煅烧的S-TiO2的平均降解效率为98%。然而,当煅烧温度从550℃进一步提高时,异丙醇的平均降解效率降低至92%。在350°C下煅烧的N-TiO2的平均异丙醇降解效率为93%,而在550和650°C下煅烧的N-TiO2的平均降解效率接近100%。此外,在350°C的煅烧温度下,使用S-和N-TiO2测得的丙酮生成量分别为86%和58%,而在650°C的煅烧温度下分别为78%和69%。 C。因此,可以将制得的S-TiO2和N-TiO2光催化剂用于可见光照射下的空气中异丙醇的提纯,但在应用中应考虑丙酮的形成。

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