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La/Fe/TiO₂ 的表征及其对氨氮废水的光催化性能

Characterization of La/Fe/TiO₂ and Its Photocatalytic Performance in Ammonia Nitrogen Wastewater.

作者信息

Luo Xianping, Chen Chunfei, Yang Jing, Wang Junyu, Yan Qun, Shi Huquan, Wang Chunying

机构信息

School of Resources and Environmental Engineering, Jiangxi University of Science and Technology, Ganzhou 341000, China.

Western Mining Co., Ltd., Xining 81006, China.

出版信息

Int J Environ Res Public Health. 2015 Nov 17;12(11):14626-39. doi: 10.3390/ijerph121114626.

Abstract

La/Fe/TiO₂ composite photocatalysts were synthesized by Sol-Gel method and well characterized by powder X-ray diffraction (XRD), scanning electron microscopy (SEM), nitrogen-physical adsorption, and UV-Vis diffuse reflectance spectra (UV-Vis DRS). It is interesting that the doped catalysts were in anatase phase while the pure TiO₂ was in rutile phase. In addition, the composites possessed better physical chemical properties in photocatalytic activity than pure TiO₂: stronger visible-light-response ability, larger specific surface area, and more regular shape in morphology. The photodegradation results of ammonia nitrogen indicate that: the La/Fe/TiO₂ had higher catalytic activity to ammonia nitrogen waste water compared pure TiO₂ and the other single metal-doped TiO₂. pH 10 and 2 mmol/L H₂O₂ were all beneficial to the removal of ammonia nitrogen by La/Fe/TiO₂. However, the common inorganic ions of Cl(-), NO₃(-), SO₄(2-), HCO₃(-)/CO₃²(-), Na⁺, K⁺, Ca(2+) and Mg(2+) in water all inhibited the degradation of ammonia nitrogen. By balance calculation, at least 20% of ammonia nitrogen was converted to N₂ during the 64.6% removal efficiency of ammonia nitrogen.

摘要

采用溶胶 - 凝胶法合成了La/Fe/TiO₂复合光催化剂,并通过粉末X射线衍射(XRD)、扫描电子显微镜(SEM)、氮物理吸附和紫外 - 可见漫反射光谱(UV - Vis DRS)对其进行了充分表征。有趣的是,掺杂的催化剂为锐钛矿相,而纯TiO₂为金红石相。此外,复合材料在光催化活性方面具有比纯TiO₂更好的物理化学性质:更强的可见光响应能力、更大的比表面积和更规则的形态形状。氨氮的光降解结果表明:与纯TiO₂和其他单金属掺杂的TiO₂相比,La/Fe/TiO₂对氨氮废水具有更高的催化活性。pH值为10和2 mmol/L的H₂O₂均有利于La/Fe/TiO₂去除氨氮。然而,水中常见的无机离子Cl⁻、NO₃⁻、SO₄²⁻、HCO₃⁻/CO₃²⁻、Na⁺、K⁺、Ca²⁺和Mg²⁺均抑制氨氮的降解。通过平衡计算,在氨氮去除效率为64.6%的过程中,至少20%的氨氮转化为N₂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a03/4661671/3b20180591de/ijerph-12-14626-g001.jpg

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