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Visible-Light-Induced Photocatalytic Degradation of PAH-Contaminated Soil and Their Pathways by Fe-Doped TiO_2 Nanocatalyst

机译:铁掺杂TiO_2纳米催化剂在可见光诱导下光催化降解PAH污染土壤及其途径

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摘要

The aim of the present study was to establish the photocatalytic efficiency of Fe-doped TiO2 nanocatalysts toward polycyclic aromatic hydrocarbons (PAHs), which were phenanthrene, anthracene, and fluoranthene, contaminated soil under visible irradiation. The morphology, phase, and particle size of the prepared nanocatalyst have been studied as a first mention in literature. The photoresponse of the TiO2 extends from UV region to the visible region was proved by the diffuse reflectance spectrophotometry (DRS). The surface area is greatly increased though the Fe-doped TiO2 compared with the bare TiO2. The pH value of the media showed the beneficial to PAH absorption on the Fe-doped TiO2 under the alkaline condition due to the surface catalyst possesses much negative charge, which is increase in percentage of PAH degradation. Based on GC-MS study, the mechanism of photoactivity of the selected PAHs involves hydroxylation, ring opening, and rearrangement reactions. The main intermediates of PAH photodegradation were found to be 9-octadecanoic acid, heptadecane, octadecane, cyclohexane (1-hexadecylheptadecyl), and 15-hydroxypentadecanoic acid.
机译:本研究的目的是建立掺铁的TiO2纳米催化剂对可见光下被污染的菲,蒽和荧蒽的多环芳烃(PAHs)的光催化效率。制备的纳米催化剂的形态,相和粒度已作为文献中的第一篇提到。通过漫反射分光光度法(DRS)证明了TiO2的光响应从UV区延伸到可见区。与裸露的TiO2相比,掺Fe的TiO2的表面积大大增加。介质的pH值表明在碱性条件下,Fe掺杂的TiO2上的PAH吸收是有利的,这是因为表面催化剂具有很多负电荷,这增加了PAH降解的百分比。根据GC-MS研究,所选PAH的光活性机理涉及羟基化,开环和重排反应。发现PAH光降解的主要中间体是9-十八碳烯酸,庚烷,十八碳烯,环己烷(1-十六烷基十七烷基)和15-羟基十五碳烯酸。

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