首页> 外文期刊>The Korean journal of chemical engineering >Sonocatalytic and photocatalytic efficiency of transition metal-doped ZnO nanoparticles in the removal of organic dyes from aquatic environments
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Sonocatalytic and photocatalytic efficiency of transition metal-doped ZnO nanoparticles in the removal of organic dyes from aquatic environments

机译:掺杂过渡金属的ZnO纳米粒子在水生环境中去除有机染料的声催化和光催化效率

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摘要

The present study investigated the efficiency of transition metal-doped ZnO nanoparticles (NPs) in the removal of Direct Blue 71 from aqueous solutions through photocatalytic (UV and visible light) and sonocatalytic processes. The ZnO particles were synthesized and analyzed by the SEM, XRD, FTIR, AFM, DLS, and zeta potential. The reaction conditions were optimized by concerned catalyst (i.e., dopant percentage and catalyst amount), solution pH, catalyst dose and initial dye concentration. The results demonstrated that the Ag-doped ZnO NPs could provide the highest UV light-based photocatalytic efficiency, while the Cu-doped NPs present the greatest sonocatalytic and visible light-based photocatalytic efficiencies. In all processes, the dye removal efficiency was better in acidic pH. Based on the insignificant difference of efficiency over the acidic range of pH, the natural pH of the dye, i.e., 5.6, was considered as the optimal pH value. Also, the increase of dopant percentage enhanced the decolorization efficiency of the catalysts. However, 2.5% dopant amount was selected as the optimal dopant content due to the negligible difference in the decolorization percentages observed using the 2.5 and 5% dopant percentages. Furthermore, the increase of catalyst dose and contact time increased the removal efficiency, while the increase of initial dye concentration resulted in a lower extent of dye decolorization.
机译:本研究研究了过渡金属掺杂的ZnO纳米颗粒(NPs)通过光催化(UV和可见光)和声催化过程从水溶液中去除直接蓝71的效率。合成了ZnO颗粒,并通过SEM,XRD,FTIR,AFM,DLS和Zeta电位进行了分析。通过关注的催化剂(即,掺杂剂百分比和催化剂量),溶液pH,催化剂剂量和初始染料浓度来优化反应条件。结果表明,Ag掺杂的ZnO NPs可以提供最高的基于UV光的光催化效率,而Cu掺杂的NPs则表现出最大的声催化和可见光基光催化效率。在所有过程中,酸性pH下的染料去除效率都更高。基于在pH的酸性范围内效率的微小差异,染料的天然pH即5.6被认为是最佳pH值。而且,掺杂剂百分比的增加增强了催化剂的脱色效率。然而,由于使用2.5%和5%的掺杂剂百分比观察到的脱色百分比的差异可忽略,所以选择2.5%的掺杂剂数量作为最佳掺杂剂含量。此外,催化剂剂量和接触时间的增加增加了去除效率,而初始染料浓度的增加导致染料脱色的程度降低。

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