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化学合成与低温仿生香蕉皮提取介导氧化锌纳米粒子的比较研究及其在强化废水处理中可见光光催化降解有机污染物方面的应用。

Comparative study of chemically synthesized and low temperature bio-inspired Musa acuminata peel extract mediated zinc oxide nanoparticles for enhanced visible-photocatalytic degradation of organic contaminants in wastewater treatment.

机构信息

Nanoscience Research Laboratory, School of Chemical Sciences, Universiti Sains Malaysia, 11800 Penang, Malaysia.

Nanoscience Research Laboratory, School of Chemical Sciences, Universiti Sains Malaysia, 11800 Penang, Malaysia.

出版信息

J Hazard Mater. 2021 Mar 15;406:124779. doi: 10.1016/j.jhazmat.2020.124779. Epub 2020 Dec 5.

Abstract

Zinc oxide (ZnO) photocatalysts were successfully synthesized via chemical and green, environmentally-benign methods. The work highlights the valorization of banana peel (BP) waste extract as the reducing and capping agents to produce pure, low temperature, highly crystalline, and effective ZnO nanoparticles with superior photocatalytic activities for the removal of hazardous Basic Blue 9 (BB9), crystal violet (CV), and cresol red (CR) dyes in comparison to chemically synthesized ZnO. Their formation and morphologies were verified by various optical spectroscopic and electron microscopic techniques. XRD results revealed that the biosynthesized ZnO exhibited 15.3 nm crystallite size when determined by Scherrer equation, which was smaller than the chemically synthesized ZnO. The FTIR spectra confirmed the presence of biomolecules in the green-mediated catalyst. EDX and XPS analyses verified the purity and chemical composition of ZnO. Nitrogen sorption analysis affirmed the high surface area of bio-inspired ZnO. Maximum removal efficiencies were achieved with 30 mg green ZnO catalyst, 2.0 × 10 M BB9 solution, alkaline pH 12, and irradiation time 90 min. Green-mediated ZnO showed superior photodegradation efficiency and reusability than chemically synthesized ZnO. Therefore, this economical, environment-friendly photocatalyst is applicable for the removal of organic contaminants in wastewater treatment under visible light irradiation.

摘要

氧化锌 (ZnO) 光催化剂通过化学和绿色环保方法成功合成。这项工作强调了香蕉皮 (BP) 废料提取物的增值利用,作为还原剂和封端剂,以生产出纯、低温、高结晶度、高效的 ZnO 纳米粒子,与化学合成的 ZnO 相比,具有优越的光催化活性,可去除有害的碱性蓝 9 (BB9)、结晶紫 (CV) 和甲酚红 (CR) 染料。它们的形成和形态通过各种光学光谱和电子显微镜技术得到了验证。XRD 结果表明,通过谢勒方程确定,生物合成的 ZnO 的晶粒度为 15.3nm,小于化学合成的 ZnO。FTIR 光谱证实了绿色介导催化剂中生物分子的存在。EDX 和 XPS 分析验证了 ZnO 的纯度和化学成分。氮气吸附分析证实了生物启发 ZnO 的高表面积。在 30mg 绿色 ZnO 催化剂、2.0×10-5M BB9 溶液、碱性 pH 值 12 和 90min 的辐照时间下,达到了最大去除效率。与化学合成的 ZnO 相比,绿色介导的 ZnO 显示出更高的光降解效率和可重复使用性。因此,这种经济、环保的光催化剂适用于可见光照射下废水处理中有机污染物的去除。

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