首页> 外文会议>NATO Advanced Research Workshop on Role of Interfaces in Environmental Protection; May 27-30, 2002; Miskolc, Hungary >PREPARATION AND PHOTOCATALYTIC APPLICATION OF DIFFERENT TiO_2 AND Zn(OH)_2/ZnO NANOPARTICLES AND HYDROPHILIC/HYDROPHOBIC LAYERED SILICATES
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PREPARATION AND PHOTOCATALYTIC APPLICATION OF DIFFERENT TiO_2 AND Zn(OH)_2/ZnO NANOPARTICLES AND HYDROPHILIC/HYDROPHOBIC LAYERED SILICATES

机译:TiO_2和Zn(OH)_2 / ZnO纳米微粒和亲水/疏水层状硅酸盐的制备及光催化应用

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TiO_2 nanosol particles were prepared by acidic hydrolysis of titanium tetraisopropoxide, and the incorporation of the anatase nanoparticles was next carried out between the layer silicate sheets by heterocoagulation method. TiO_2/montmorillonite nanocomposites with high specific surface areas (a~S_(BET) = 130-284 m~2 g~(-1)) were characterized and tested as photocatalysts by mineralization of phenol. Self-assembled multilayer films from Zn(OH)_2/ZnO nanoparticles and hectorite were prepared and the optical and structural properties were investigated. Significant photodegradation of !!!-naphtol and kerosene was found in the presence of the nanofilms, in the flow photocatalytic experiments. The degradation of 2-chlorophenol was investigated by a combination of TiO_2-based photocatalysis and adsorption. The differently prepared adsorbent-photocatalyst systems were characterized by X-ray diffraction measurements. The most advantageous situation was found when the hexadecylpyridinium chloride-treated montmorillonite was used as adsorbent and Degussa P25 TiO_2 as photocatalyst, for which the highest rate of oxidation of 2-chlorophenol was observed. In this case the photocatalytically recovered adsorbent may be re-used without further regeneration.
机译:通过四异丙醇钛的酸水解制备TiO_2纳米溶胶颗粒,然后通过杂凝法在层状硅酸盐片之间引入锐钛矿纳米颗粒。对高比表面积(a〜S_(BET)= 130-284 m〜2 g〜(-1))的TiO_2 /蒙脱土纳米复合材料进行了表征,并通过苯酚的矿化作用对其进行了测试。制备了由Zn(OH)_2 / ZnO纳米粒子和锂蒙脱石组成的自组装多层薄膜,并研究了其光学和结构性能。在流动光催化实验中,在纳米膜的存在下发现了!!!-萘酚和煤油的显着光降解。结合TiO_2基光催化和吸附研究了2-氯苯酚的降解。通过X射线衍射测量表征不同制备的吸附剂-光催化剂体系。当使用十六烷基吡啶鎓氯化物处理的蒙脱石作为吸附剂,并使用Degussa P25 TiO_2作为光催化剂时,发现了最有利的情况,其观察到了最高的2-氯苯酚氧化速率。在这种情况下,可以将光催化回收的吸附剂重新使用,而无需进一步再生。

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