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Removal of 4-Nitrophenol from Water Using Ag–N–P-Tridoped TiO2 by Photocatalytic Oxidation Technique

机译:Ag-N-P-三掺杂TiO2光催化氧化去除水中的4-硝基苯酚

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摘要

Photocatalytic oxidation using semiconductor nanoparticles is an efficient, eco-friendly, and cost-effective process for the removal of organic pollutants, such as dyes, pesticides, phenols, and their derivatives in water. In the present study, nanosize Ag–N–P-tridoped titanium(IV) oxide (TiO2) was prepared by using sol–gel-synthesized Ag-doped TiO2 and soybean (Glycine max) or chickpea (Cicer arietinum) seeds as nonmetallic bioprecursors. As-synthesized photocatalysts were characterized using X-ray diffraction, Fourier transform infrared, and ultra violet (UV)–visible spectroscopic techniques. Average crystallite size of the studied photocatalysts was within 39–46 nm. Whereas doped Ag in TiO2 minimized the photogenerated electron–hole recombination, doped N and P extended its photoabsorption edge to visible region. Tridoping of Ag, N, and P in TiO2 exhibited synergetic effect toward enhancing its photocatalytic degradation of 4-nitrophenol (4-NP), separately, under UV and visible irradiations. At three hours, degradations of 4-NP over Ag–N–P-tridoped TiO2 under UV and visible radiations were 73.8 and 98.1%, respectively.
机译:使用半导体纳米粒子进行光催化氧化是一种高效,环保且经济高效的方法,用于去除水中的有机污染物,例如染料,农药,酚及其衍生物。在本研究中,通过溶胶-凝胶合成的Ag掺杂的TiO2和大豆(Glycine max)或鹰嘴豆(Cicer arietinum)种子作为非金属生物前体制备了纳米级的Ag-N-P-三氧化钛(TiO2)。 。合成后的光催化剂使用X射线衍射,傅立叶变换红外和紫外(UV)可见光谱技术进行表征。研究的光催化剂的平均微晶尺寸在39-46 nm之间。 TiO2中掺杂的Ag使光生电子-空穴复合最小化,而N和P掺杂将其光吸收边缘扩展到可见光区域。分别在紫外线和可见光照射下,在TiO2中三重掺杂Ag,N和P表现出协同作用,以增强其对4-硝基苯酚(4-NP)的光催化降解。在三小时后,在紫外线和可见光下,Ag-N-P三掺杂的TiO2上4-NP的降解分别为73.8%和98.1%。

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