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首页> 外文期刊>Water Research >Energy efficiency for the removal of non-polar pollutants during ultraviolet irradiation, visible light photocatalysis and ozonation of a wastewater effluent
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Energy efficiency for the removal of non-polar pollutants during ultraviolet irradiation, visible light photocatalysis and ozonation of a wastewater effluent

机译:在紫外线照射,可见光光催化和废水废水臭氧化过程中去除非极性污染物的能效

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摘要

This study aims to assess the removal of a set of non-polar pollutants in biologically treated wastewater using ozonation, ultraviolet (UV 254 nm low pressure mercury lamp) and visible light (Xe-arc lamp) irradiation as well as visible light photocatalysis using Ce-doped TiO_2. The compounds tracked include UV filters, synthetic musks, herbicides, insecticides, antiseptics and polyaromatic hydrocarbons. Raw wastewater and treated samples were analyzed using stir-bar sorptive extraction coupled with comprehensive two-dimensional gas chromatog-raphy (SBSE-CG × GC-TOF-MS). Ozone treatment could remove most pollutants with a global efficiency of over 95% for 209 μM ozone dosage. UV irradiation reduced the total concentration of the sixteen pollutants tested by an average of 63% with high removal of the sunscreen 2-ethylhexyl trans-4-methoxycinnamate (EHMC), the synthetic musk 7-acetyl-1,1,3,4,4,6-hexamethyltetrahydronaphthalene (tonalide, AHTN) and several herbicides. Visible light Ce-TiO_2 photocatalysis reached ~70% overall removal with particularly high efficiency for synthetic musks. In terms of power usage efficiency expressed as nmol kJ ~1, the results showed that ozonation was by far the most efficient process, ten-fold over Xe/Ce-TiO_2 visible light photocatalysis, the latter being in turn considerably more efficient than UV irradiation. In all cases the efficiency decreased along the treatments due to the lower reaction rate at lower pollutant concentration. The use of photocatalysis greatly improved the efficiency of visible light irradiation. The collector area per order decreased from 9.14 ± 5.11 m~2 m~(-3) order ~1 for visible light irradiation to 0.16 ± 0.03 m~2 m~(-3) order ~1 for Ce-TiO_2 photocatalysis. The toxicity of treated wastewater was assessed using the green alga Pseudokirchneriella subcapitata. Ozonation reduced the toxicity of treated wastewater, while UV irradiation and visible light photocatalysis limited by 20-25% the algal growth due to the accumulation of reaction by-products. Three transformation products were identified and tracked along the treatments.
机译:这项研究旨在评估使用臭氧化,紫外线(254纳米低压汞灯)和可见光(氙弧灯)辐射以及使用铈的可见光催化对生物处理废水中的非极性污染物的去除情况。掺杂的TiO_2。所跟踪的化合物包括紫外线过滤剂,合成麝香,除草剂,杀虫剂,防腐剂和聚芳烃。使用搅拌棒吸附萃取结合全面的二维气相色谱(SBSE-CG×GC-TOF-MS)对原废水和处理过的样品进行分析。对于209μM的臭氧剂量,臭氧处理可以去除大多数污染物,全球效率超过95%。紫外线辐射可将高浓度的防晒霜2-乙基己基反-4-甲氧基肉桂酸酯(EHMC),合成麝香7-乙酰基1,3-1,3,4, 4,6-六甲基四氢萘(tonalide,AHTN)和几种除草剂。可见光Ce-TiO_2的光催化总去除率达到〜70%,对合成麝香特别有效。以nmol kJ〜1表示的用电效率,结果表明,臭氧化是迄今为止最有效的过程,是Xe / Ce-TiO_2可见光光催化作用的十倍,后者比UV辐射的效率高得多。 。在所有情况下,由于在较低的污染物浓度下较低的反应速率,效率随着处理而降低。光催化的使用大大提高了可见光照射的效率。对于可见光辐照,每级集电极面积从9.14±5.11 m〜2 m〜(-3)阶〜1降低到Ce-TiO_2光催化的0.16±0.03 m〜2 m〜(-3)阶〜1。使用绿色藻类次生伪藻评估处理后废水的毒性。臭氧化处理降低了处理后废水的毒性,而紫外线辐照和可见光光催化由于反应副产物的积累,将藻类的生长限制在20-25%之间。识别并跟踪了三种转化产物。

著录项

  • 来源
    《Water Research》 |2013年第15期|5546-5556|共11页
  • 作者单位

    Department of Chemical Engineering, University of Alcala, 28871 Alcala de Henares, Madrid, Spain;

    Advanced Study Institute of Madrid, IMDEA Agua, Parque Cientifico Tecnologico, 28805 Alcald de Henares, Madrid, Spain,Pesticide Residue Research Group, Department of Hydrogeology and Analytical Chemistry, University of Almeria, 04120, Spain;

    Advanced Study Institute of Madrid, IMDEA Agua, Parque Cientifico Tecnologico, 28805 Alcald de Henares, Madrid, Spain,Pesticide Residue Research Group, Department of Hydrogeology and Analytical Chemistry, University of Almeria, 04120, Spain;

    Advanced Study Institute of Madrid, IMDEA Agua, Parque Cientifico Tecnologico, 28805 Alcald de Henares, Madrid, Spain,Pesticide Residue Research Group, Department of Hydrogeology and Analytical Chemistry, University of Almeria, 04120, Spain;

    Department of Chemical Engineering, University of Alcala, 28871 Alcala de Henares, Madrid, Spain,Advanced Study Institute of Madrid, IMDEA Agua, Parque Cientifico Tecnologico, 28805 Alcald de Henares, Madrid, Spain;

    Department of Chemical Engineering, University of Alcala, 28871 Alcala de Henares, Madrid, Spain,Advanced Study Institute of Madrid, IMDEA Agua, Parque Cientifico Tecnologico, 28805 Alcald de Henares, Madrid, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Non-polar pollutants; Ozonation; Ultraviolet irradiation; Visible light photocatalysis; Energy efficiency;

    机译:非极性污染物;臭氧化;紫外线照射;可见光光催化;能源效率;

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