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首页> 外文期刊>Russian Journal of Physical Chemistry >Synthesis of Fe_3O_4 Nanoparticles and Their Application in Photo-Fenton Degradation of Direct Red 23 Dye in Aqueous Solutions
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Synthesis of Fe_3O_4 Nanoparticles and Their Application in Photo-Fenton Degradation of Direct Red 23 Dye in Aqueous Solutions

机译:Fe_3O_4纳米粒子的合成及其在水溶液中直红23染料的光芬源降解的应用

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In this paper, synthesized Fe_3O_4 nanoparticles applied as catalyst in photodegradation of Direct Red 23 (DR23) dye using photo-Fenton process in aqueous solution. The Fe_3O_4 nanoparticles were characterized by scanning electron microscopy (SEM), X-ray diffraction (XRD) and Fourier transform infrared spectroscopy (FT-IR). Design of experiments (DOE) based on Taguchi approach was used. Analysis the response of each experiment was based Signal to Noise (S/N) ratio was calculated. The effective parameters for the degradation of dye were determined and optimized using Taguchi (L_9 (3~4)) orthogonal array experimental design method with four factors having three levels for each factor. The Taguchi approach showed that pH 3 (level 1), catalyst amount = 25 mg/L (level 2), H_2O_2 concentration = 15 ppm (level 3), and temperature = 35°C (level 3) was optimum conditions for this process. The factor most influencing the process was determined using analysis of variance (ANOVA) method. The most significant factor in this process was pH. The interaction between pH × catalyst amount was the most influencing interaction. The percent (p (%)) of each factor on the degradation of dye was found to be in the following the order: pH (50.306%), catalyst amount (6.887%), H_2O_2 concentration (39.272%), and temperature (3.456%). The percentage contribution of factors in this process was found to be in the following the order: pH (0.332), catalyst amount (0.101), H_2O_2 concentration (0.291), and temperature (0.082). So first order reaction with k = 0.0472 min~(-1) was observed for the photocatalytic degradation reaction.
机译:本文在水溶液中使用光溶液在水溶液中使用光芬顿工艺在直接红色23(DR23)染料的光降解中施用的合成Fe_3O_4纳米粒子。通过扫描电子显微镜(SEM),X射线衍射(XRD)和傅里叶变换红外光谱(FT-IR),表征Fe_3O_4纳米颗粒。使用基于Taguchi方法的实验(DOE)设计。分析每个实验的响应是基于基于噪声(S / N)比率的信号。使用Taguchi(L_9(3〜4))正交阵列实验设计方法测定并优化用于染料的降解的有效参数,每个因素具有三个级别的四个因素。 TAGUCHI方法表明,pH 3(1),催化剂量= 25mg / L(2级),H_2O_2浓度= 15ppm(水平3),温度= 35℃(水平3)是该过程的最佳条件。利用方差分析(ANOVA)方法确定大多数影响该过程的因素。这个过程中最重要的因素是pH值。 pH×催化剂量之间的相互作用是影响最大的相互作用。发现染料劣化的每种因素的百分比(P(%))是以下顺序:pH(50.306%),催化剂量(6.887%),H_2O_2浓度(39.272%)和温度(3.456 %)。发现该过程中因素的百分比贡献在以下顺序:pH(0.332),催化剂量(0.101),H_2O_2浓度(0.291)和温度(0.082)。因此,对于光催化降解反应,观察到与k = 0.0472分钟〜(-1)的第一顺序反应。

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