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Photocatalytic TMO-NMs adsorbent: Temperature-Time dependent Safranine degradation sorption study validated under optimized effective equilibrium models parameter with standardized statistical analysis

机译:光催化TMO-NMs吸附剂:取决于温度-时间的藏红花降解通过优化的有效平衡模型参数和标准化统计分析对吸附研究进行了验证

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摘要

In this paper, chemically synthesized copper oxide nanoparticles (CuO-NPs), were employed for two processes: one is photocatalytic degradation and second one adsorption for the sorption of safranine (SA) dye in an aqueous medium at pH = 12.01. The optimized analytes amount (nano-adsorbent = 0.10 g, conc. range of SA dye 56.13 ppm to 154.37 ppm, pH = 12.01, temperature 303 K) reached to equilibrium point in 80 min, which acquired for chemical adsorption-degradation reactions. The degredated SA dye data’s recorded by UV-visible spectroscopy for the occurrence of TMO-NMs of CuO-NPs at anticipated period of interval. The feasible performance of CuO-NPs was admirable, shows good adsorption capacity qm = 53.676 mg g−1 and most convenient to best fitted results establish by linear regression equation, corresponded for selected kinetic model (pseudo second order (R2 = 0.9981), equilibrium isotherm models (Freundlich, Langmuir, Dubnin-Radushkevich (D-R), Temkin, H-J and Halsey), and thermodynamic parameters (∆H° = 75461.909 J mol−1, ∆S° = 253.761 J mol−1, ∆G° = −1427.93 J mol−1, Ea = 185.142 J mol−1) with error analysis. The statistical study revealed that CuO-NPs was an effective adsorbent certified photocatalytic efficiency (η = 84.88%) for degradation of SA dye, exhibited more feasibility and good affinity toward adsorbate, the sorption capacity increases with increased temperature at equilibrium point.
机译:本文采用化学合成的氧化铜纳米颗粒(CuO-NPs)进行两个过程:一个是光催化降解,第二个是在pH == 12.01的水性介质中吸附藏红花(SA)染料。最优化的分析物量(纳米吸附剂= 0.10 g,SA染料的浓度范围为56.13 ppm至154.37 ppm,pH = 12.01,温度303 K)在80 min内达到平衡点,用于化学吸附-降解反应。通过紫外可见光谱记录的降解的SA染料数据是在预期的时间间隔内CuO-NPs的TMO-NMs的发生。 CuO-NPs的可行性能令人赞叹,具有良好的吸附容量qm = 53.676 mg g -1 ,并且最容易通过线性回归方程建立最佳拟合结果,对应于选定的动力学模型(伪二阶) (R 2 = 0.9981),平衡等温模型(Freundlich,Langmuir,Dubnin-Radushkevich(DR),Temkin,HJ和Halsey)和热力学参数(∆H°= 75461.909 J mol -1 ,∆S°= 253.761 J mol −1 ,∆G°= −1427.93 J mol -1 ,Ea = 185.142 J mol −1 )的误差分析。统计研究表明,CuO-NPs对SA染料的降解是一种有效的吸附剂认证的光催化效率(η= 84.88%),具有更大的可行性和对被吸附物的良好亲和力,吸附能力在平衡点温度升高,温度升高。

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