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Degradation of diclofenac by TiO_2 photocatalysis: UV absorbance kinetics and process evaluation through a set of toxicity bioassays

机译:TiO_2光催化降解双氯芬酸:通过一组毒性生物测定法进行紫外吸收动力学和工艺评估

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摘要

In the present study the degradation kinetics and mineralization of diclofenac (DCF) by the TiO_2 photocatalysis were investigated in terms of UV absorbance and COD measurements for a wide range of initial DCF concentrations (5-80 mg L~(-1)) and photocatalyst loadings (0.2-1.6 gTiO_2L ~(-1)) in a batch reactor system. A set of bioassays (Daphnia maqna, Pseudo-kirchneriella subcapitata and Artemia salina) was performed to evaluate the potential detoxification of DCF. A pseudo-first-order kinetic model was found to fit well most of the experimental data, while at high initial DCF concentrations (40 and 80 mgL~(-1)) and at 1.6 gTiO_2 L~(-1) photocatalyst loading a second-order kinetic model was found to fit the data better. The toxicity of the treated DCF samples on D. maqna and P. subcapitata varied during the oxidation, probably due to the formation of some intermediate products more toxic than DCF. Unicellular freshwater algae was found to be very sensitive to the treated samples as well as the results from D. magna test were consistent to those of algae tests. A. salina was not found to be sensitive under the investigated conditions. Finally, UV absorbance analysis were found to be an useful tool for a fast and easy to perform measurement to get preliminary information on the organic intermediates that are formed during oxidation and also on their disappearance rate.
机译:在本研究中,针对各种初始DCF浓度(5-80 mg L〜(-1))和光催化剂,通过TiO_2光催化的紫外吸收和COD测量,研究了TiO_2光催化降解双氯芬酸(DCF)的动力学和矿化作用。间歇反应器系统中的负载量(0.2-1.6 gTiO_2L〜(-1))。进行了一套生物测定(水蚤,拟南芥假单胞菌和盐卤卤虫)以评估DCF的潜在排毒作用。在高初始DCF浓度(40和80 mgL〜(-1))和1.6 gTiO_2 L〜(-1)光催化剂加载第二次时,发现伪一级动力学模型非常适合大多数实验数据。发现阶动力学模型更适合数据。在氧化过程中,处理过的DCF样品对小菜蛾和次生毕赤酵母的毒性变化,可能是由于形成了一些比DCF毒性更大的中间产物。发现单细胞淡水藻类对处理后的样品非常敏感,D。magna试验的结果与藻类试验的结果一致。在调查的条件下,未发现盐沼曲霉敏感。最后,发现紫外线吸收分析是一种有用的工具,可用于快速,轻松地进行测量,以获得有关氧化过程中形成的有机中间体及其消失速率的初步信息。

著录项

  • 来源
    《Water Research》 |2009年第4期|979-988|共10页
  • 作者单位

    University of Salerno, Sanitary and Environmental Engineering Division (SEED), Department of Civil Engineering, via Ponte don Melillo,rn1 - 84084 Fisciano (SA), Italy;

    University of Naples, Federico II, Department of Biological Sciences, Section of Physiology and Hygiene, Ecotoxicology Research Laboratoryrn(ERL-UNINA), 1-80134 Naples, Italy;

    University of Cyprus, Department of Civil and Environmental Engineering, 75 Kallipoleos, 1678 Nicosia, Cyprus;

    University of Naples, Federico II, Department of Biological Sciences, Section of Physiology and Hygiene, Ecotoxicology Research Laboratoryrn(ERL-UNINA), 1-80134 Naples, Italy;

    University of Naples, Federico II, Department of Biological Sciences, Section of Physiology and Hygiene, Ecotoxicology Research Laboratoryrn(ERL-UNINA), 1-80134 Naples, Italy;

    University of Salerno, Sanitary and Environmental Engineering Division (SEED), Department of Civil Engineering, via Ponte don Melillo,rn1 - 84084 Fisciano (SA), Italy;

  • 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

    A. salina; D. maqna; mineralization; photocatalysis; pseudo-first and second order kinetics; P. subcapitata;

    机译:盐沼D. maqna;矿化光催化;拟一阶和二阶动力学;亚头cap;
  • 入库时间 2022-08-17 13:50:49

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