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2,4-二氯苯氧乙酸(2,4-D)在 WO-TiO-SBA-15 纳米结构复合材料上的光降解。

2,4-Dichlorophenoxyacetic acid (2,4-D) photodegradation on WO-TiO-SBA-15 nanostructured composite.

机构信息

PPGQ- DQ, Universidade Federal do Piauí-UFPI, Teresina, PI, 64049-550, Brazil.

PPGQ-GERATEC-DQ-Universidade Estadual do Piauí, Rua: João Cabral, N. 2231, Teresina, PI, 64002-150, Brazil.

出版信息

Environ Sci Pollut Res Int. 2021 Feb;28(7):7774-7785. doi: 10.1007/s11356-020-11085-4. Epub 2020 Oct 10.

DOI:10.1007/s11356-020-11085-4
PMID:33037546
Abstract

A current environmental problem is the uncontrolled use of various pesticides that are harmful to the environment and public health. The herbicide 2,4-D is widely used, making it a vector of contamination for aquatic bodies, air, soil, and biomass. In recent decades, researchers have studied remediation of this compound in the environment. In this work, WO and TiO were supported on SBA-15 molecular sieve by the in situ anchoring (ISA) method, with different molar percentages of WO in relation to the oxide content: X = 25%, 50%, and 75%. The W-Ti-S (X) samples were characterized by XDR, XRF, Raman, FTIR, diffuse reflectance of UV-vis, and adsorption and desorption of N. SBA-15 mesoporous structure was not destroyed even after the incorporation of the oxides. XRD analyses associated with Raman result found a predominance of the anatase phase for titanium oxide, and the FRX showed low incorporation of nanoparticles. Photocatalytic tests indicated that the catalytic activity depends on WO and TiO content, although all W-Ti-S (X) samples exhibited similar TOF value. The W-Ti-S (25) sample had the highest photocatalytic activity, 76% herbicide photodegradation under ultraviolet irradiation, at 270 min. The analysis of the catalytic cycles indicated that W-Ti-S (25) keeps out 70% of photocatalytic activity in the fourth catalytic cycle. In addition, the W-Ti-S (25) catalytic activity under direct sunlight irradiation was similar to that under artificial UV irradiation.

摘要

当前,环境面临的一个问题是各种农药的无节制使用,这些农药对环境和公共健康有害。除草剂 2,4-D 的使用非常广泛,使其成为水、空气、土壤和生物量污染的载体。近几十年来,研究人员一直在研究该化合物在环境中的修复。在这项工作中,WO 和 TiO 通过原位锚定(ISA)方法负载在 SBA-15 分子筛上,WO 与氧化物含量的摩尔比为:X = 25%、50%和 75%。W-Ti-S(X)样品通过 XDR、XRF、拉曼、FTIR、UV-vis 漫反射和 N 吸附/脱附进行了表征。即使在氧化物掺入后,SBA-15 的介孔结构也未被破坏。与拉曼结果相关的 XRD 分析发现,TiO 的锐钛矿相占主导地位,FRX 表明纳米颗粒的掺入量较低。光催化测试表明,催化活性取决于 WO 和 TiO 的含量,尽管所有 W-Ti-S(X)样品的 TOF 值都相似。W-Ti-S(25)样品的光催化活性最高,在 270 分钟的紫外光照射下,除草剂的光降解率达到 76%。催化循环分析表明,W-Ti-S(25)在第四个催化循环中保持了 70%的光催化活性。此外,W-Ti-S(25)在阳光直射下的催化活性与人工 UV 照射下的活性相似。

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