Chitosan Membrane Embedded With ZnO/CuO Nanocomposites for the Photodegradation of Fast Green Dye Under Artificial and Solar Irradiation.

Analytical Chemistry Insights Pub Date : 2018-03-21 eCollection Date: 2018-01-01 DOI:10.1177/1177390118763361
Eman Alzahrani
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Abstract

Fast Green (FCF) dye is commonly used in both cytology and histology applications. Previous studies have found that it can cause mutagenic and tumorigenic effects in experimental human and animal populations. It can also be a source of skin, eye, respiratory, and digestive irritation. The purpose of this study was to examine the use of thin film membranes to degrade FCF. A thin film membrane of chitosan (CS) was fabricated and subsequently filled with zinc oxide nanoparticles (ZnO) or ZnO/CuO-heterostructured nanocomposites. The CS membrane was used as a matrix, and the nanomaterials were used as photocatalysts. The prepared membranes were characterised by four analytical techniques: atomic force microscopy, scanning electron microscopy, X-ray diffraction, and energy-dispersive X-ray analyses. The photocatalytic activity of the fabricated membranes was evaluated by performing experiments in which aqueous solutions of FCF dye that contained the fabricated membrane were irradiated with solar light or UV light. The photodegradation percentage was spectrophotometrically determined by monitoring the maximum wavelengths (λmax) of FCF at 623 nm for different irradiation times. The decolourisation percentages of the dye under solar light were 57.90% and 60.23% using the CS-ZnO and CS-ZnO/CuO membranes, respectively. When UV light irradiation was employed as the source of irradiation, the photodegradation percentages of FCF were 71.45% and 91.21% using the CS-ZnO and CS-ZnO/CuO membranes, respectively. These results indicated that the best photocatalytic system for the degradation of FCF dye was CS-ZnO/CuO membrane in combination with UV light irradiation. The study also found that it was easy to separate the prepared membranes after the reaction without the need for a centrifuge or magnet. The results demonstrate the potential for CS-ZnO and CS-ZnO/CuO membranes for use as effective sorbents during the process of photodegradation of harmful dyes within waste water recycling practices.

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嵌有 ZnO/CuO 纳米复合材料的壳聚糖膜在人工和太阳照射下用于快速绿色染料的光降解。
快速绿(FCF)染料通常用于细胞学和组织学应用。以往的研究发现,它可对实验性人类和动物群体产生诱变和致瘤作用。它还会对皮肤、眼睛、呼吸道和消化系统造成刺激。本研究的目的是考察使用薄膜降解 FCF 的情况。研究人员制作了壳聚糖(CS)薄膜,随后在薄膜中填充了纳米氧化锌(ZnO)或 ZnO/CuO 异质纳米复合材料。CS 膜用作基质,纳米材料用作光催化剂。制备的膜通过四种分析技术进行了表征:原子力显微镜、扫描电子显微镜、X 射线衍射和能量色散 X 射线分析。通过实验评估了所制备膜的光催化活性,在实验中,用太阳光或紫外线照射含有所制备膜的 FCF 染料水溶液。通过监测不同照射时间 FCF 在 623 纳米波长处的最大波长 (λmax),用分光光度法测定光降解百分比。在太阳光下,CS-ZnO 和 CS-ZnO/CuO 膜的染料脱色率分别为 57.90% 和 60.23%。当采用紫外线作为辐照源时,CS-ZnO 和 CS-ZnO/CuO 膜对 FCF 的光降解率分别为 71.45% 和 91.21%。这些结果表明,结合紫外光照射的 CS-ZnO/CuO 膜是降解 FCF 染料的最佳光催化系统。研究还发现,反应后很容易分离制备的膜,无需离心机或磁铁。研究结果表明,CS-ZnO 和 CS-ZnO/CuO 膜有可能在废水循环利用实践中用作光降解有害染料过程中的有效吸附剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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