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Mixed oxides derived from layered double hydroxides as novel catalysts for phenol photodegradation

机译:衍生自层状双氢氧化物作为苯酚光降解的新型催化剂的混合氧化物

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The removal of organic pollutants is nowadays a very challenging aspect of the environmental research. There are strong interests to develop novel semiconducting photocatalysts able to efficiently promote advanced oxidation reactions. The development of photocatalysts based on the mixtures of mixed oxides derived from layered double hydroxides (LDHs) - a family of naturally occurring anionic clays - might offer novel environmental-friendly solutions for the cost effective removal of organic pollutants. This work presents ZnO/ZnAl2O4, ZnO/Zn2TiO4 and ZnO/ZnCr2O4 as novel photocatalytic formulations for phenol degradation under UV irradiation. They were obtained by the controlled thermal treatment of the layered double hydroxides matrices (LDHs), as precursors materials, type ZnM-LDH (M= Al~(3+), Cr~(3+) or Ti~(4+)). The LDHs were synthesized by the co-precipitation method at a constant pH. Controlled calcination at 650°C gives rise to solutions of mixed metal oxides. The structural and nanoarchitectonics characteristics of the studied catalysts were described by: XRD, SEM/TEM and TG/DTG techniques. Results show that in the photocatalytic process of the phenol degradation from aqueous solutions, ZnO/ZnCr2O4 and ZnO/ZnAl2O4 showed the best performance degrading ~98% of phenol after 3.5 hs and 5 hs, respectively; while ZnO/Zn2TiO4 has degraded almost 80 % after 7.5 hs of UV irradiation. These results open new opportunities in the development of new cost effective photoresponsive formulations able to facilitate the photo-degradation of the organic pollution as "green" solution for removal of dangerous pollutants.
机译:如今是一种非常具有挑战性的环境研究的有机污染物的去除。开发新型半导体光催化剂的兴趣强烈兴趣,能够有效地促进先进的氧化反应。基于分层双氢氧化物(LDHS)的混合氧化物混合物的光催化剂的开发 - 一种天然存在的阴离子粘土的家族 - 可以为有效的有机污染物的成本效果进行新的环境友好型解决方案。本作品呈ZnO / ZNAL2O4,ZnO / Zn2TiO4和ZnO / ZnCr2O4作为UV照射下的酚类降解的新型光催化剂制剂。它们是通过层状双氢氧化物基质(LDHS)的受控热处理而获得的,作为前体材料,ZnM-LDH型(M = Al〜(3+),Cr〜(3+)或Ti〜(4+)) 。通过共沉淀法在恒定pH下合成LDH。 650℃的受控煅烧产生混合金属氧化物的溶液。通过:XRD,SEM / TEM和TG / DTG技术描述了研究催化剂的结构和纳米建筑学特性。结果表明,在水溶液中酚类降解的光催化过程中,ZnO / ZnCr2O4和ZnO / Znal2O4分别显示出3.5Hs和5Hs后的最佳性能〜98%的苯酚;虽然ZnO / Zn2TiO4在7.5 Hs的UV照射后降解了近80%。这些结果开辟了开发新的具有促进有机污染照片作为“绿色”解决方案的新成本效益的光响应配方的新机遇,以便去除危险污染物。

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