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Kinetic Studies on the Catalytic Degradation of Rhodamine B by Hydrogen Peroxide: Effect of Surfactant Coated and Non-Coated Iron (III) Oxide Nanoparticles

机译:过氧化氢罗丹明B催化降解的动力学研究:表面活性剂涂层和非涂层铁(III)氧化物纳米粒子的作用

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摘要

Iron (III) oxide (Fe3O4) and sodium dodecyl sulfate (SDS) coated iron (III) oxide (SDS@Fe3O4) nanoparticles (NPs) were synthesized by the co-precipitation method for application in the catalytic degradation of Rhodamine B (RB) dye. The synthesized NPs were characterized using X-ray diffractometer (XRD), vibrating sample magnetometer (VSM), scanning electron microscopy (SEM), transmission electron microscopy (TEM), and Fourier transform infra-red (FT-IR) spectroscopy techniques and tested in the removal of RB. A kinetic study on RB degradation by hydrogen peroxide (H2O2) was carried out and the influence of Fe3O4 and SDS@Fe3O4 magnetic NPs on the degradation rate was assessed. The activity of magnetic NPs, viz. Fe3O4 and SDS@Fe3O4, in the degradation of RB was spectrophotometrically studied and found effective in the removal of RB dye from water. The rate of RB degradation was found linearly dependent upon H2O2 concentration and within 5.0 × 10−2 to 4.0 × 10−1 M H2O2, the observed pseudo-first-order kinetic rates (kobs, s−1) for the degradation of RB (10 mg L−1) at pH 3 and temperature 25 ± 2 °C were between 0.4 and 1.7 × 104 s−1, while in presence of 0.1% w/v Fe3O4 or SDS@Fe3O4 NPs, kobs were between 1.3 and 2.8 × 104 s−1 and between 2.6 and 4.8 × 104 s−1, respectively. Furthermore, in presence of Fe3O4 or SDS@Fe3O4, kobs increased with NPs dosage and showed a peaked pH behavior with a maximum at pH 3. The magnitude of thermodynamic parameters Ea and ΔH for RB degradation in presence of SDS@Fe3O4 were 15.63 kJ mol−1 and 13.01 kJ mol−1, respectively, lowest among the used catalysts, confirming its effectiveness during degradation. Furthermore, SDS in the presence of Fe3O4 NPs and H2O2 remarkably enhanced the rate of RB degradation.
机译:通过共沉淀法在罗丹明B(RB)的催化降解中,合成了铁(III)氧化物(Fe 3 O 4)和十二烷基硫酸钠(SDS)涂覆的铁(III)氧化铁(SDS @ Fe3O4)纳米颗粒(NPS)(RB)的催化降解染料。使用X射线衍射仪(XRD),振动样品仪(VSM),扫描电子显微镜(SEM),透射电子显微镜(TEM),傅里叶变换红外(FT-IR)光谱技术和测试的合成的NPS表征。在去除RB。进行了过氧化氢(H2O2)的RB降解的动力学研究,评估了Fe3O4和SDS @ Fe3O4磁NP对降解速率的影响。磁NPS,VIZ的活动。 Fe3O4和SDS @ Fe3O4,在RB的降解中被分光光度法研究,发现在从水中移除RB染料的有效性。 RB降解的速率被确定为线性取决于H 2 O 2浓度,在5.0×10-2至4.0×10-1M H 2 O 2内,观察到的伪一阶动力学率(KOB,S-1)用于RB的降解(在pH 3和温度25±2℃下的10mg L-1)在0.4和1.7×104s-1之间,而在0.1%w / v Fe 3 O 4或SDS @ Fe3O4 NPS存在下,Kobs在1.3和2.8×之间104 S-1和2.6和4.8×104 S-1之间。此外,在Fe3O4或SDS @ Fe3O4存在下,Kobs随NPS剂量而增加,并在pH3中显示出最大值的峰值pH行为。在SDS @ Fe3O4存在下,热力学参数EA和ΔH的ΔH为ΔH降解为15.63kJ摩尔-1和13.01 kJ mol-1,分别在使用的催化剂中最低,确认其在降解期间的有效性。此外,在Fe3O4NPS和H 2 O 2存在下的SDS显着提高了RB降解速率。

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