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ZnO-Nd纳米光催化剂在降膜光催化反应器中对活性红198染料的脱色应用。

Application of ZnO-Nd Nano-Photocatalyst for the Reactive Red 198 Dye Decolorization in the Falling-Film Photocatalytic Reactor.

作者信息

Biglar Fatemeh, Talaiekhozani Amirreza, Aminsharei Farham, Park Junboum, Barghi Anahita, Rezania Shahabaldin

机构信息

Faculty of Chemical, Petroleum and Gas Engineering, Semnan University, Semnan 35131-19111, Iran.

Department of Civil Engineering, Jami Institute of Technology, Isfahan 84919-63395, Iran.

出版信息

Toxics. 2021 Oct 8;9(10):254. doi: 10.3390/toxics9100254.

Abstract

A large amount of Reactive red 198 (RR198) is released yearly into the environment. RR198 is toxic for human and aquatic creatures; therefore, it should be removed from wastewater before releasing into the environment. In this study, the nano ZnO-Nd -photo-catalyst for the first time was synthesized by the combustion method. First, the physical characteristics of the generated nano photocatalyst were evaluated using FESEM, XRD, Bandgap calculation, and FTIR analysis. Then, the ZnO-Nd nano-photocatalyst was suspended into the contaminated water with RR198 dye in a falling-film photocatalytic reactor. The effects of parameters such as the amount of HO, catalyst dose, pH, and initial concentration of dye were investigated during the experiments. Finally, the decolorization process with the falling-film photocatalytic reactor was optimized using response surface methodology (RSM). The physical characteristics showed that the average particle size of the synthesized ZnO-Nd was 40 nm. Doping ZnO with Nd reduced the photocatalyst energy bandgap by 14%. The results indicated that the optimum amount of catalyst dose and pH level was 0.1 g/L and 5, respectively. The simultaneous usage of HO and ZnO-Nd with an HO/dye ratio of two increased dye removal performance by 90%. The results demonstrated that the developed equations can be applied to predict the performance of the falling-film photoreactor. This study showed that using the nano ZnO-Nd photocatalyst in a falling-film photocatalytic reactor under optimum operating conditions is an appropriate way to remove RR198 from water.

摘要

每年有大量的活性红198(RR198)被排放到环境中。RR198对人类和水生生物有毒;因此,在排放到环境之前,应将其从废水中去除。在本研究中,首次通过燃烧法合成了纳米ZnO-Nd光催化剂。首先,使用场发射扫描电子显微镜(FESEM)、X射线衍射(XRD)、带隙计算和傅里叶变换红外光谱(FTIR)分析对生成的纳米光催化剂的物理特性进行了评估。然后,将ZnO-Nd纳米光催化剂悬浮在降膜光催化反应器中含有RR198染料的污染水中。实验过程中研究了过氧化氢量、催化剂剂量、pH值和染料初始浓度等参数的影响。最后,使用响应面法(RSM)对降膜光催化反应器的脱色过程进行了优化。物理特性表明,合成的ZnO-Nd的平均粒径为40纳米。用钕掺杂ZnO使光催化剂的能带隙降低了14%。结果表明,催化剂剂量和pH值的最佳值分别为0.1克/升和5。过氧化氢与ZnO-Nd同时使用,过氧化氢与染料的比例为2时,染料去除性能提高了90%。结果表明,所建立的方程可用于预测降膜光反应器的性能。本研究表明,在最佳操作条件下,在降膜光催化反应器中使用纳米ZnO-Nd光催化剂是从水中去除RR198的合适方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8faf/8540491/052ac9ac6639/toxics-09-00254-g001.jpg

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