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Preparation of BiVO4/RGO-TNT Nanomaterials for Efficient and Recyclable Photocatalysis of Imidacloprid Insecticide

机译:BIVO4/RGO-TNT纳米材料的制备,以有效且可回收的光催化剂对咪二藻杀虫剂的光催化

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摘要

The photocatalytic composites based on BiVO4, TiO2 nanotubes (TNT) and reduced graphene oxide (RGO) were synthesized by a one-step hydrothermal synthesis method. The properties and structures of the samples were characterized by SEM, XRD, UV-Vis DRS, Raman spectroscopy, photoluminescence spectroscopy and XPS. The effects of RGO-TNT loading, pH, and dosage of catalysts on degradation efficiency were tested. The best removal results were occured on the condition that loading amount of RGO-TNT was 10%, solution pH 10, and catalyst dosage was 1.4 g L~(-1). The obtained ternary composite with 10wt% RGO-TNT exhibited a significant enhancement in photocatalytic efficiency due to the lower band gap with enhanced light absorption and a suppression in the recombination rates of the photogenerated charge carriers, and about 73% of imidacloprid was degraded within 30 min under UV irradiation. Furthermore, BiVO4/RGO-TNT-10 can be reused for 6 times without obvious catalysis loss. Trapping experiments showed that hydroxyl radicals were the main active species in the imidacloprid photocatalytic degradation, and a possible photocatalytic mechanism was proposed based on the results of trapping experiments.
机译:基于BIVO4,TIO2纳米管(TNT)和氧化石墨烯(RGO)的光催化复合材料通过一步水热合成方法合成。样品的特性和结构以SEM,XRD,UV-VIS DRS,RAMAN光谱,光致发光光谱和XPS为特征。测试了RGO-TNT负载,pH和催化剂剂量对降解效率的影响。最好的去除结果是在RGO-TNT的加载量为10%,溶液pH 10的情况下,催化剂剂量为1.4 g L〜(-1)。获得10wt%RGO-TNT获得的三元复合材料表现出显着增强的光催化效率,这是由于较低的带隙,具有增强的光吸收和抑制光生载体的重组速率,约73%的咪二氯托载体的重组速率在30%的范围内被脱落。紫外线照射下的最小值。此外,BIVO4/RGO-TNT-10可以重复使用6次,而不会明显催化损失。捕获实验表明,羟基自由基是咪多肺光催化降解中的主要活性物种,并根据捕获实验的结果提出了可能的光催化机制。

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  • 来源
    《Chemistry Select》 |2022年第22期|共7页
  • 作者单位

    Key Laboratory of Environmental Materials and Pollution Control, the Education Department of Jilin Province, Jilin Normal University, Siping, China;

    College of Environmental Science and Engineering, Jilin Normal University, Siping, China;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 Online;
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