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自燃烧纳米粒子增强的光催化性能,用于太阳光照射下偶氮染料的光催化降解和氢气燃料生产。

Enhanced photocatalytic performance of auto-combusted nanoparticles for photocatalytic degradation of azo dye under sunlight illumination and hydrogen fuel production.

机构信息

School of Resources and Environment, University of Electronic Science and Technology of China, P.O. Box 611731, Xiyuan Ave, Chengdu, PR China.

Department of Food Science and Technology, Ayatollah Amoli Branch, Islamic Azad University, Amol, Iran.

出版信息

Chemosphere. 2023 Sep;336:139266. doi: 10.1016/j.chemosphere.2023.139266. Epub 2023 Jun 18.

Abstract

In this study, an innovative nanomaterial was synthesized for hydrogen production from methanolysis on sodium borohydride (NaBH) in order to be a solution for future energy problems. The nanocomposite containing FeCo, which does not contain noble metals, and whose support material is Polyvinylpyrrolidone (PVP), was synthesized by means of a thermal method. TEM, XRD and FTIR characterization methods were used for the analysis of the morphological and chemical structure of the nanocomposite. Nanocomposite particle size was found to be 2.59 nm according to XRD analysis, and 5.45 nm according to TEM analysis for scale of 50 nm. For catalytic properties of nanomaterial in the methanolysis reaction of NaBH, temperature, catalyst, substrate, and reusability experiments were carried out and kinetic calculations were obtained. Among the activation parameters of FeCo@PVP nanoparticles, turnover frequency, enthalpy, entropy and activation energy were calculated as 3858.9 min, 29.39 kJ/mol, -139.7 J/mol.K, and 31.93 kJ/mol, respectively. As a result of the reusability test of the obtained FeCo@PVP nanoparticles catalysts, which was carried out for 4 cycles, the catalytic activity was 77%. Catalytic activity results are given in comparison with the literature. In addition, the photocatalytic activity of FeCo@PVP NPs was evaluated against MB azo dye under solar light irradiation for 75 min and was found to be as 94%.

摘要

在这项研究中,合成了一种用于从硼氢化钠(NaBH)甲醇解中生产氢气的新型纳米材料,以解决未来的能源问题。该纳米复合材料含有铁钴,不包含贵金属,其支撑材料是聚乙烯吡咯烷酮(PVP),通过热法合成。使用 TEM、XRD 和 FTIR 表征方法分析了纳米复合材料的形态和化学结构。根据 XRD 分析,纳米复合材料的粒径为 2.59nm,根据 TEM 分析,粒径为 5.45nm,尺度为 50nm。为了研究纳米材料在 NaBH 甲醇解反应中的催化性能,进行了温度、催化剂、底物和重复使用实验,并进行了动力学计算。在 FeCo@PVP 纳米粒子的活化参数中,计算了转化频率、焓、熵和活化能分别为 3858.9 min、29.39 kJ/mol、-139.7 J/mol.K 和 31.93 kJ/mol。对获得的 FeCo@PVP 纳米粒子催化剂进行了 4 次重复使用测试,结果表明催化剂的催化活性为 77%。将催化活性结果与文献进行了比较。此外,还在 75 分钟的太阳光照射下,评估了 FeCo@PVP NPs 对 MB 偶氮染料的光催化活性,发现其活性为 94%。

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