首页> 外文会议>International Conference on Key Engineering Materials >WO_3/Nb_2O_5 Nanoparticles-Decorated Hierarchical Porous ZnO Microspheres for Enhanced Photocatalytic Degradation of Palm Oil Mill Effluent and Simultaneous Production of Biogas
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WO_3/Nb_2O_5 Nanoparticles-Decorated Hierarchical Porous ZnO Microspheres for Enhanced Photocatalytic Degradation of Palm Oil Mill Effluent and Simultaneous Production of Biogas

机译:WO_3 / NB_2O_5纳米粒子装饰的等级多孔ZnO微球,用于增强棕榈油磨流出物的光催化降解,同时生产沼气

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Conventionally, palm oil mill effluent (POME) was treated using open ponding system, which nevertheless long retention times and large treatment areas were required. In this report, heterogeneous photocatalysis was used to degrade the POME and simultaneously assessed the biogas formation. Characterization of the chemically prepared hierarchical porous ZnO microspheres showed that wurtzite was the predominant crystalline phase with a band gap energy of 3.22 eV. Moreover, the as-prepared ZnO were assembled by large numbers of interleaving nanosheets and formed an open porous structure. Under UV irradiation, the as-prepared ZnO demonstrated photocatalytic property on POME degradation. The WO_3 and Nb_2O_5 decorated ZnO photocatalysts (WO_3/ZnO and Nb_2O_5/ZnO) with improved photocatalytic performances were also prepared using a simple and rapid way. Significantly, in the presence of WO_3/ZnO and Nb_2O_5/ZnO composites, the degradation of POME achieved 68.3% and 91.7%, respectively after 240 min irradiation. Interestingly, the assessment of the biogas formation showed that the photocatalytic reactions over Nb_2O_5/ZnO and WO_3/ZnO composites generated higher amount of biogas products (CH_4 + CO_2) compared to that of ZnO. The photocatalytic enhancement was attributed to the high separation efficiency of photogenerated electron-hole pairs based on the formation of heterojunction structures between the WO_3/Nb_2O_5 and ZnO. The observed findings also revealed that the photocatalytic technology using hierarchical WO_3/ZnO and Nb_2O_5/ZnO composites had the potential to efficiently treat wastewater.
机译:传统上,使用开放的池系统处理棕榈油磨流出物(Pome),仍需要长期保留时间和大治疗区域。在本报告中,使用异质光催化用于降解底物并同时评估沼气形成。化学制备的分层多孔ZnO微球的表征显示,紫立岩是具有3.22eV的带隙能量的主要结晶相。此外,通过大量交织的纳米片组装制备的ZnO并形成开放的多孔结构。在紫外线辐射下,制备的ZnO在沼泽降解上显示了光催化性质。使用简单快捷的方式制备具有改善的光催化性能的WO_3和NB_2O_5装饰ZnO光催化剂(WO_3 / ZnO和Nb_2O_5 / ZnO)。显着地,在WO_3 / ZnO和Nb_2O_5 / ZnO复合材料的存在下,在240分钟照射后,Pome的降解分别达到68.3%和91.7%。有趣的是,沼气形成的评估表明,与ZnO相比,对Nb_2O_5 / ZnO和WO_3 / ZnO复合材料的光催化反应产生了更高量的沼气产品(CH_4 + CO_2)。基于WO_3 / NB_2O_5和ZnO之间的异质结结构的形成,光催化增强归因于光催化电子空穴对的高分离效率。所观察到的结果还显示使用等级WO_3 / ZnO和Nb_2O_5 / ZnO复合材料的光催化技术具有有效地处理废水。

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