Mahana Abhijeet, Mehta Surya Kant
Laboratory of Algal Biochemistry and Molecular Biology, Department of Botany, Mizoram University, Aizawl, 796004, India.
Environ Sci Pollut Res Int. 2021 Jun;28(22):28234-28250. doi: 10.1007/s11356-021-12682-7. Epub 2021 Feb 2.
Organic synthetic dyes are widely used in several industries; however, their inherent resistance to biodegradation necessitates to investigate alternative methods for the remediation of this class of hazardous substances. In the present study, a green synthesis of ZnO nanorods was achieved in a fast, environment-friendly, and safe microwave process employing algal extract. Different metabolites like sugars, proteins, fatty acids, amino acids, and vitamins present in the algal extract reduced the Zn into ZnO. The XRD analysis showed that the nanostructure was a crystalline hexagonal nanorod having a crystalline size of 27.37 nm. The XPS spectra of ZnO nanorod showed characteristic peaks at binding energy 1043, 1020, 496, 137, 87, and 8 eV corresponding to Zn2p, Zn2p, Zn, Zn, Zn, Zn, respectively. The synthesized ZnO nanorods were in-situ functionalized and showed strong catalytic activity in photoreduction of a model organic dye methylene blue (MB) under direct sunlight irradiation. Synthesized ZnO nanorods showed a complete (100%) reduction of model dye MB from its 10 mg/L aqueous solution. The photocatalytic degradation of MB followed the Michaelis-Menten kinetics. The rate of ZnO-catalyzed photocatalytic degradation depends on the concentrations of ZnO, pH, and sunlight irradiation. The ZnO nanorod-catalyzed photoreduction of MB involves hydroxyl radicals. Algal-mediated and microwave-assisted synthesis provides a scalable source of metal oxide nanoparticles for the remediation of dye-containing wastewaters under natural sunlight. Apart from application in the removal of dyes, ZnO nanorods are excellent material for applications in semiconductors, electronics, optics, bio-imaging, and drug delivery.
有机合成染料在多个行业中广泛使用;然而,其固有的抗生物降解性使得有必要研究处理这类有害物质的替代方法。在本研究中,采用藻类提取物,通过快速、环保且安全的微波工艺实现了ZnO纳米棒的绿色合成。藻类提取物中存在的不同代谢物,如糖类、蛋白质、脂肪酸、氨基酸和维生素,将锌还原为ZnO。XRD分析表明,该纳米结构为结晶六方纳米棒,晶体尺寸为27.37nm。ZnO纳米棒的XPS光谱在结合能1043、1020、496、137、87和8eV处显示出特征峰,分别对应于Zn2p、Zn2p、Zn、Zn、Zn、Zn。合成的ZnO纳米棒进行了原位功能化,并在阳光直射下对模型有机染料亚甲基蓝(MB)的光还原反应中表现出很强的催化活性。合成的ZnO纳米棒能将10mg/L水溶液中的模型染料MB完全(100%)还原。MB的光催化降解遵循米氏动力学。ZnO催化光催化降解的速率取决于ZnO的浓度、pH值和阳光照射。ZnO纳米棒催化的MB光还原反应涉及羟基自由基。藻类介导和微波辅助合成提供了一种可扩展的金属氧化物纳米颗粒来源,用于在自然阳光下处理含染料废水。除了用于去除染料外,ZnO纳米棒还是用于半导体、电子、光学、生物成像和药物递送的优良材料。