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制备及表征可再生壳聚糖包覆纳米硒化镍光催化体系用于降解有毒偶氮染料。

Development and characterization of regenerable chitosan-coated nickel selenide nano-photocatalytic system for decontamination of toxic azo dyes.

机构信息

Institute of Chemical Sciences, University of Peshawar, Khyber Pakhtunkhwa 25120, Pakistan.

Department of Chemical Engineering, Faculty of Materials and Chemical Engineering, Ghulam Ishaq Khan, Institute of Engineering Sciences and Technology, Topi, Swabi, KP, Pakistan.

出版信息

Int J Biol Macromol. 2021 Jul 1;182:866-878. doi: 10.1016/j.ijbiomac.2021.03.192. Epub 2021 Apr 7.

Abstract

In this investigation, chitosan-coated nickel selenide nano-photocatalyst (CS-NiSe) was successfully prepared through the chemical reduction method. FTIR spectroscopy confirmed the synthesis of CS-NiSe nano-photocatalyst. Further, XRD analysis exhibited a monoclinic crystalline phase of photocatalyst with a crystallite size of 32 nm based on Scherer's equation. The SEM micrographs showed that the photocatalyst has an average particle size of 60 nm. The bandgap of CS-NiSe was (2.85 eV) in the visible region of the spectrum. Due to this reason, the CS-NiSe was applied under solar light illumination for the photocatalytic activity of Erythrosine and Allura red dyes. The CS-NiSe presented the highest degradation efficiency of 99.53% for Erythrosine dye in optimized experimental conditions of 100 min at 30 °C, 30 ppm concentration, pH 5.0, and 0.14 g catalyst dose. For Allura red dye, a high degradation of 96.12% was attained in 120 min at pH 4.0, 100 ppm initial dye concentration, 35 °C temperature, and 0.1 g catalyst dose. The CS-NiSe showed excellent degradation efficiency and reduced to (95% for Erythrosine and 91% for Allura red dye) after five consecutive batches. Moreover, the statistical and neural network modelling analysis showed the significant influence of all studied variables on dyes degradation performance. The results demonstrated that CS-NiSe exhibited excellent photocatalytic performances for Erythrosine and Allura red dyes and could be a better photocatalyst for removing these dyes from industrial effluents.

摘要

在这项研究中,通过化学还原法成功制备了壳聚糖包覆的镍硒纳米光催化剂(CS-NiSe)。傅里叶变换红外光谱(FTIR)证实了 CS-NiSe 纳米光催化剂的合成。此外,X 射线衍射(XRD)分析表明,催化剂具有单斜晶相,基于谢乐公式计算出的晶粒尺寸为 32nm。扫描电子显微镜(SEM)照片显示,催化剂的平均粒径为 60nm。CS-NiSe 的能带隙为 2.85eV,位于光谱的可见光区域。由于这个原因,CS-NiSe 在太阳光照射下用于 Erythrosine 和 Allura 红染料的光催化活性。在优化的实验条件下,即 30°C、30ppm 浓度、pH5.0 和 0.14g 催化剂剂量下,CS-NiSe 对 Erythrosine 染料的最高降解效率为 99.53%。对于 Allura 红染料,在 pH4.0、100ppm 初始染料浓度、35°C 温度和 0.1g 催化剂剂量下,120min 内达到了 96.12%的高降解率。CS-NiSe 表现出优异的降解效率,在连续五次批处理后降至(Erythrosine 为 95%,Allura 红染料为 91%)。此外,统计和神经网络模型分析表明,所有研究变量对染料降解性能均有显著影响。结果表明,CS-NiSe 对 Erythrosine 和 Allura 红染料表现出优异的光催化性能,可能是从工业废水中去除这些染料的更好光催化剂。

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