首页> 外文期刊>International Journal of Photoenergy >Influence of the Textural Parameters of LDH-TiO2 Composites on Phenol Adsorption and Photodegradation Capacities
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Influence of the Textural Parameters of LDH-TiO2 Composites on Phenol Adsorption and Photodegradation Capacities

机译:LDH-TiO2复合材料纹理参数对苯酚吸附和光降解能力的影响

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Layered double hydroxides (LDH) M2+M3+CO32? were synthesized following the sol-gel methodology using Mg-Al, Mg-Fe, and Zn-Al as cation pairs for subsequent use in the preparation of TiO2/LDH materials. The samples were characterized by infrared spectroscopy (IR), scanning electron microscopy (SEM), and the Brunauer–Emmett–Teller (BET) technique to determine the surface area (SA); the results of which were used to determine the roughness of the samples in terms of surface fractal dimension (D). The prepared materials exhibited both adsorption and photocatalytic properties in the removal of phenol in aqueous solution under ultraviolet irradiation. This work studies the relationship between the textural parameters of the materials obtained in relation to their photocatalytic efficiency and adsorption capacity, finding that the surface of the solids, their structural heterogeneity, and roughness condition the photodegradation and adsorption processes, using phenol as reference organic pollutant. The results show that different cation in LDH influences in photocatalytic capacity; the TiO2/ZnAl was the best material in one test, but after 10 times of test, the TiO2/MgFe gave the better photodegradation material. In adsorption capacity, TiO2/ZnAl and TiO2/MgFe have a close rate for phenol adsorption and both were better than TiO2/MgAl. The differences in textural characteristics (surface area, surface roughness, and pore-size distribution) affected phenol adsorption and photodegradation efficiency.
机译:层状双氢氧化物(LDH)M2 + M3 + CO32?使用Mg-Al,Mg-Fe和Zn-AS作为阳离子对在溶胶 - 凝胶方法中合成,以便在制备TiO 2 / LDH材料中使用。通过红外光谱(IR),扫描电子显微镜(SEM)以及Brunauer-Emmett-Teller(Bet)技术的特征在于确定表面积(SA);其结果用于确定样品的粗糙度在表面分形维数(D)方面。制备的材料在紫外线照射下在水溶液中除去苯酚的吸附和光催化性质。这项工作研究了与其光催化效率和吸附容量相关的材料的纹理参数之间的关系,发现固体的表面,其结构异质性和粗糙度条件,使用苯酚作为参考有机污染物的光降解和吸附过程。结果表明,光催化容量的LDH不同阳离子; TiO2 / ZNAL是一次测试中最好的材料,但经过10次测试后,TiO2 / MgFe给出了更好的光降解材料。在吸附能力中,TiO 2 / ZNAL和TiO2 / MGFE具有苯酚吸附的密切速率,两者均优于TiO 2 / mgal。纹理特征(表面积,表面粗糙度和孔径分布)的差异影响了苯酚吸附和光降解效率。

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