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首页> 外文期刊>International Journal of Environmental Science and Technology >Response surface methodology (RSM) optimization approach for degradation of Direct Blue 71 dye using CuO-ZnO nanocomposite
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Response surface methodology (RSM) optimization approach for degradation of Direct Blue 71 dye using CuO-ZnO nanocomposite

机译:CuO-ZnO纳米复合材料直接蓝71染料降解响应面方法(RSM)优化方法

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摘要

The present study highlights the synthesis of CuO-ZnO nanocomposite via facile hydrothermal method at 150 A degrees C and autogenous pressure. The structural and textural features of prepared composite material was characterized by several characterization techniques such as X-ray powder diffraction, Fourier transform infrared spectroscopy, Scanning electron microscopy, and energy-dispersive X-ray spectroscopy. The optimized prepared nanocomposite was utilized for photocatalytic degradation of aromatic Direct Blue 71 dye (DB71) under natural sunlight conditions. The catalytic activity results by CuO-ZnO nanocomposite were observed to be higher than the reagent-grade zinc oxide under visible light conditions. The response surface methodology protocol (RSM) with central composite design was optimized by different photodegradation operational parameters such as pH, dye concentration, catalyst amount, and reaction time. The optimized RSM results demonstrated that a quadratic polynomial model was found suitable to define the relation between the photocatalytic activity and operational parameters. Moreover, the observed high R (2) value (0.9786) confirms a strong evaluation of experimental data. To achieve maximum DB71 degradation, optimized condition was found at 177.13 min of contact time, 3.93 solution pH, and 24.34 mg/L of dye concentration with 1.85 g/L of catalyst dose The identical optimum conditions resulted maximum 89.58% DB71 degradation.
机译:本研究突出了150℃的体内水热法合成CuO-ZnO纳米复合材料,并进行自生压力。制备的复合材料的结构和纹理特征的特征在于诸如X射线粉末衍射,傅里叶变换红外光谱,扫描电子显微镜和能量分散X射线光谱的若干表征技术的特征。优化的制备的纳米复合材料用于自然阳光条件下芳香直线71染料(DB71)的光催化降解。观察到CuO-ZnO纳米复合材料的催化活性结果高于可见光条件下的试剂级氧化锌。通过不同的光降解操作参数如pH,染料浓度,催化剂量和反应时间优化了具有中央复合设计的响应表面方法协议(RSM)。优化的RSM结果表明,发现二次多项式模型是适合定义光催化活性和操作参数之间的关系。此外,观察到的高R(2)值(0.9786)证实了对实验数据的强烈评估。为了实现最大DB71的降解,在接触时间为177.13分钟,3.93溶液pH和24.34mg / L染料浓度的催化剂剂量相同的最佳条件,最大89.58%的催化剂,最大为89.58%的DB71降解。

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