Novel guar gum/MnO2 nanocomposite for photocatalytic degradation of reactive yellow (RY 145) from aqueous solution: optimization by BBD

M. Mehralian, Ahmadreza Fallah Faraghe, M. Khajeh Mehrizi
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Abstract

Purpose This study aims to investigation of the guar gum-manganese dioxide (GG/MnO2) nanocomposite (NC) synthesized using an environment-friendly method and the degradation of reactive yellow (RY 145) dye in the UV system. Design/methodology/approach Characterization of the GG/MnO2 NCs were conducted using field emission scanning electron microscopy, X-ray diffraction and Fourier-transform infrared spectroscopy. Experiments were conducted using a 1 L glass reactor coupled with Ultraviolet (UV-C) blue light bulb of wavelength 250 nm and power of 8 W. Findings The NC (2.25 g/L) displayed high RY 145 dye degradation (81%) with 10 mg/L of concentration at pH 3. The coefficient of determination (R2 0.99) also depicted that the model fits the experimental data. The analysis of variance (ANOVA) showed that the F-values of 464.75, 276.04 and 5.15 are related to the dose of GG/MnO2 NCs, initial concentration of RY 145 dye and solution pH, respectively. Practical implications The GG/MnO2 NCs followed by photo oxidation process (UV-process) could be used to degrade the RY 145 dye from synthetic wastewater. Originality/value There are two main innovations. One is that the novel process is performed successfully for RY 145 dye degradation. The other is that the optimized conditions are obtained by Box–Behnken design. Also, the effects of different variables on the RY 145 dye removal efficiency were investigated.
新型瓜尔胶/二氧化锰纳米复合材料光催化降解水中活性黄(RY 145): BBD优化
目的研究瓜尔胶-二氧化锰(GG/MnO2)纳米复合材料(NC)的环境友好型合成及其对活性黄(RY 145)染料的紫外降解。采用场发射扫描电镜、x射线衍射和傅里叶变换红外光谱对GG/MnO2 NCs进行了表征。实验采用1 L玻璃反应器,配以波长为250 nm、功率为8 W的UV-C蓝光灯泡。结果:在pH值为3时,NC (2.25 g/L)在浓度为10 mg/L时,对RY 145染料的降解率为81%。决定系数(R2 0.99)也表明模型与实验数据拟合。方差分析(ANOVA)表明,f值464.75、276.04和5.15分别与GG/MnO2 NCs剂量、RY 145染料初始浓度和溶液pH有关。实际意义GG/MnO2 NCs +光氧化法(uv法)可用于降解合成废水中的ry145染料。原创性/价值有两个主要的创新。一是新工艺成功地用于r145染料降解。二是通过Box-Behnken设计得到了优化条件。考察了不同因素对r145染料去除率的影响。
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