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Photocatalytic treatment of water soluble pesticide by advanced oxidation technologies using UV light and solar energy

机译:利用紫外光和太阳能通过先进的氧化技术对水溶性农药进行光催化处理

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摘要

Advanced oxidation technologies (AOTs) using UV lamps and solar radiation were investigated for treating aqueous solutions of pesticide (Vydine). One group of experiments was conducted using UV light irradiated at wavelengths of 254 nm (UV_(254)) and 350 nm (UV_(350)). Another similar group was conducted using solar radiation incident during the months of March (Sol-Mar) and June (Sol-Jun). Experimental measurements of pesticide concentration, TOC mineralization, COD and BOD were monitored and recorded.rnResults showed that AOTs with (UV_(254)) irradiation or (Sol-Jun) solar radiation were more efficient than those with (UV_(350)) or (Sol-Mar) irradiations. Pesticide eliminations achieved by using UV254 and Sol-Jun were 50% and 32%, respectively, while the maximum Vydine elimination achieved by UV_(350) or Sol-Mar was 20%. The use UV_(254) with photo-Fenton increased the pesticide elimination to more than 95%.rnPhoto-degradation rates of Vydine in the presence of TiO_2 followed the order of UV_(254) > Sol-Jun > Sol-Mar > UV_(350). The photo-catalytic reactions of pesticide followed pseudo first-order kinetics. The calculated rate constants were 0.015, 0.012, 0.009 and 0.0065 min~(-1) when using UV_(254), Sol-Jun, Sol-Mar and UV_(350), respectively. Degradation processes examined under the conditions of the present work were able to mineralize the pesticide (Vydine) totally and/or to improve the treated solution biodegradability. Photo-Fenton and TiO_2 mineralized all the organic matter content from the solution in 230 min. Moreover, BOD_5 was increased from 0 to 9 mg O_2/L when UV_(254) irradiation was only used and increased to 50 mg O_2/L following the use of photo-Fenton treatment.
机译:研究了使用紫外线灯和太阳辐射的先进氧化技术(AOT),用于处理农药水溶液(Vydine)。使用在254 nm(UV_(254))和350 nm(UV_(350))波长下照射的UV光进行一组实验。另一个类似的小组使用三月(Sol-Mar)和六月(Sol-Jun)的太阳辐射事件进行了研究。监测并记录了农药浓度,TOC矿化,COD和BOD的实验测量结果.rn结果显示,使用(UV_(254))辐照或(Sol-Jun)太阳辐射的AOT比使用(UV_(350))或AUV的AOT更有效。 (Sol-Mar)辐射。通过使用UV254和Sol-Jun消除的农药分别为50%和32%,而通过UV_(350)或Sol-Mar消除的最大的Vydine为20%。将UV_(254)与光芬顿一起使用可将农药去除率提高到95%以上.rn在TiO_2存在下,Vydine的光降解速率遵循UV_(254)> Sol-Jun> Sol-Mar> UV_( 350)。农药的光催化反应遵循伪一级动力学。当使用UV_(254),Sol-Jun,Sol-Mar和UV_(350)时,计算的速率常数分别为0.015、0.012、0.009和0.0065 min〜(-1)。在当前工作条件下检查的降解过程能够使农药(维他命)全部矿化和/或提高处理后溶液的生物降解能力。 Photo-Fenton和TiO_2在230分钟内使溶液中的所有有机物矿化。此外,当仅使用UV_(254)辐照时,BOD_5从0增加到9 mg O_2 / L,并在使用光芬顿处理后增加到50 mg O_2 / L。

著录项

  • 来源
    《Solar Energy》 |2010年第7期|P.1157-1165|共9页
  • 作者单位

    Chemical Engineering Department, Mutah University, Karak, Jordan;

    Chemical Engineering Department, Mutah University, Karak, Jordan;

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

    pesticide; mineralization; solar; UV; photo-fenton;

    机译:农药;矿化太阳紫外线;光芬顿;

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