Preparation of NiFe2O4 Nanoparticles by Solution Combustion Method as Photocatalyst of Congo red
IF 1.3
Q3 ENGINEERING, CHEMICAL
P. Hariani, M. Said, A. Rachmat, F. Riyanti, Handayani Citra Pratiwi, Widya Twiny Rizki
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引用次数: 16
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Abstract
NiFe2O4 nanoparticles had been successfully synthesized by solution combustion method using urea fuel (organic precursor). The synthesized NiFe2O4 were characterized by X-ray diffraction (XRD), Scanning electron microscopy-Electron Dispersive X-ray Spectroscopy (SEM-EDs), Transmission Electron Microscopy (TEM), Fourier Transform Infra-Red (FTIR), Vibrating Sample Magnetometer (VSM), UV-Vis Diffuse Reflectance Spectroscopy (UV-Vis DRS), and Point of Zero Charge (pHpzc). NiFe2O4 nanoparticles irradiated with visible light were employed to degrade Congo red dye with the following variable: solution pH (3–8), H2O2 concentration (0.5–3 mM), and Congo red concentration (100–600 mg/L). XRD analysis results showed that the NiFe2O4 nanoparticles had a cubic spinel structure. The particle sizes are in the range of 10–40 nm. The magnetic properties of NiFe2O4 nanoparticles determined using VSM showed a magnetization saturation value of 47.32 emu/g. UV-Vis DRS analysis indicated that NiFe2O4 nanoparticles had an optical band gap of 1.97 eV. The success of synthesis was also proven by the EDS analysis results, which showed that the synthesized NiFe2O4 nanoparticles composed of Ni, Fe, and O elements. The removal efficiency of Congo red dye was 96.80% at the following optimum conditions: solution pH of 5.0, H2O2 concentration of 2 mM, Congo red dye concentration of 100 mg/L, and contact time of 60 min. The study of the photodegradation kinetics follows a pseudo-first order reaction with a rate constant value of 0.0853 min−1. Copyright © 2021 by Authors, Published by BCREC Group. This is an open access article under the CC BY-SA License (https://creativecommons.org/licenses/by-sa/4.0).
溶液燃烧法制备纳米NiFe2O4刚果红光催化剂
以尿素为燃料(有机前驱体),采用溶液燃烧法制备了纳米NiFe2O4。采用x射线衍射(XRD)、扫描电镜-电子色散x射线能谱(SEM-EDs)、透射电镜(TEM)、傅里叶变换红外(FTIR)、振动样品磁强计(VSM)、紫外-可见漫反射光谱(UV-Vis DRS)和零电荷点(pHpzc)对合成的NiFe2O4进行了表征。采用可见光照射下NiFe2O4纳米颗粒降解刚果红染料,条件为溶液pH(3-8)、H2O2浓度(0.5 - 3mm)、刚果红浓度(100 - 600mg /L)。XRD分析结果表明,纳米NiFe2O4具有立方尖晶石结构。颗粒尺寸在10-40 nm之间。采用VSM法测定纳米NiFe2O4的磁性能,磁化饱和值为47.32 emu/g。紫外-可见DRS分析表明,纳米NiFe2O4具有1.97 eV的光学带隙。EDS分析结果表明,合成的NiFe2O4纳米粒子由Ni、Fe和O元素组成,证明了合成的成功。在溶液pH为5.0、H2O2浓度为2 mM、刚果红染料浓度为100 mg/L、接触时间为60 min的最佳条件下,刚果红染料的去除率为96.80%。光降解动力学研究遵循准一级反应,速率常数为0.0853 min−1。版权所有©2021作者,BCREC集团出版。这是一篇基于CC BY-SA许可(https://creativecommons.org/licenses/by-sa/4.0)的开放获取文章。
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期刊介绍:
Bulletin of Chemical Reaction Engineering & Catalysis, a reputable international journal, provides a forum for publishing the novel technologies related to the catalyst, catalysis, chemical reactor, kinetics, and chemical reaction engineering. Scientific articles dealing with the following topics in chemical reaction engineering, catalysis science and engineering, catalyst preparation method and characterization, novel innovation of chemical reactor, kinetic studies, etc. are particularly welcome. However, articles concerned on general chemical engineering process are not covered and out of scope of this journal