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Biodegradability enhancement of a pesticide-containing bio-treated wastewater using a solar photo-Fenton treatment step followed by a biological oxidation process

机译:使用太阳能光芬顿处理步骤,然后进行生物氧化工艺,增强含农药生物处理废水的生物降解能力

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摘要

This work proposes an efficient combined treatment for the decontamination of a pesticide-containing wastewater resulting from phytopharmaceutical plastic containers washing, presenting a moderate organic load (COD = 1662-1960 mg O_2 L~(-1); DOC = 513-696 mg C L~(-1)), with a high biodegradable organic carbon fraction (81%; BOD_5 = 1350-1600 mg O_2 L~(-1)) and a remaining recalcitrant organic carbon mainly due to pesticides. Nineteen pesticides were quantified by LC-MS/MS at concentrations between 0.02 and 45 mg L~(-1) (14-19% of DOC). The decontamination strategy involved a sequential three-step treatment: (a) biological oxidation process, leading to almost complete removal of the biodegradable organic carbon fraction; (b) solar photo-Fenton process using CPCs, enhancing the bio-treated wastewater biodegradability, mainly due to pesticides degradation into low-molecular-weight carboxylate anions; (c) and a final polishing step to remove the residual biodegradable organic carbon, using a biological oxidation process. Treatment performance was evaluated in terms of mineralization degree (DOC), pesticides content (LC-MS/MS), inorganic ions and low-molecular-weight carboxylate anions (IC) concentrations. The estimated phototreatment energy necessary to reach a biodegradable wastewater, considering pesticides and low-molecular-weight carboxylate anions concentrations, Zahn-Wellens test and BOD_5/COD ratio, was only 2.3 kJ_(UV) L~(-1) (45 min of photo-Fenton at a constant solar UV power of 30 W m~(-2)), consuming 16 mM of H_2O_2, which pointed to 52% mineralization and an abatement higher than 86% for 18 pesticides. The biological oxidation/solar photo-Fenton/biological oxidation treatment system achieved pesticide removals below the respective detection limits and 79% mineralization, leading to a COD value lower than 150 mg O_2L~(-1), which is in agreement with Portuguese discharge limits regarding water bodies.
机译:这项工作提出了一种有效的联合处理方法,用于对植物药塑料容器洗涤产生的含农药废水进行去污处理,有机负荷适中(COD = 1662-1960 mg O_2 L〜(-1); DOC = 513-696 mg CL 〜(-1)),具有高的可生物降解有机碳比例(81%; BOD_5 = 1350-1600 mg O_2 L〜(-1)),并且残留的顽固有机碳主要是由农药引起的。通过LC-MS / MS对19种农药进行定量,浓度在0.02至45 mg L〜(-1)之间(DOC的14-19%)。该去污策略涉及一个连续的三步处理:(a)生物氧化过程,导致几乎完全去除了可生物降解的有机碳部分; (b)采用CPC的太阳光芬顿法,提高了生物处理废水的生物降解能力,这主要是由于农药降解为低分子量羧酸根阴离子所致; (c)和最后的抛光步骤,使用生物氧化工艺除去残留的可生物降解的有机碳。根据矿化度(DOC),农药含量(LC-MS / MS),无机离子和低分子量羧酸根阴离子(IC)浓度评估了处理性能。考虑到农药和低分子量羧酸根阴离子的浓度,Zahn-Wellens试验和BOD_5 / COD比,估计达到生物可降解废水所需的光处理能量仅为2.3 kJ_(UV)L〜(-1)(45分钟在30 W m〜(-2)的恒定太阳紫外线功率下,光Fenton消耗了16 mM的H_2O_2,这表明矿化度为52%,对18种农药的减排高于86%。生物氧化/太阳能光Fenton /生物氧化处理系统实现了低于相应检测限的农药去除和79%的矿化,导致COD值低于150 mg O_2L〜(-1),这与葡萄牙的排放限值相符关于水体。

著录项

  • 来源
    《Water Research》 |2012年第15期|p.4599-4613|共15页
  • 作者单位

    LSRE - Laboratory of Separation and Reaction Engineering - Associate Laboratory LSRE/LCM, Faculdade de Engenharia, Uniuersidade do Porto, Rua Dr. Roberto Frias, 4200-465 Porto, Portugal;

    LSRE - Laboratory of Separation and Reaction Engineering - Associate Laboratory LSRE/LCM, Faculdade de Engenharia, Uniuersidade do Porto, Rua Dr. Roberto Frias, 4200-465 Porto, Portugal;

    LSRE - Laboratory of Separation and Reaction Engineering - Associate Laboratory LSRE/LCM, Faculdade de Engenharia, Uniuersidade do Porto, Rua Dr. Roberto Frias, 4200-465 Porto, Portugal;

    IAREN - Water Institute of the Northern Region, Rua Dr. Eduardo Torres 229, 4450-113 Matosinhos, Portugal,Laboratory of Bromatology and Hydrology, Faculty of Pharmacy, University of Porto, Rua Anibal Cunha 164, 4050-047 Porto, Portugal;

    IAREN - Water Institute of the Northern Region, Rua Dr. Eduardo Torres 229, 4450-113 Matosinhos, Portugal;

    IAREN - Water Institute of the Northern Region, Rua Dr. Eduardo Torres 229, 4450-113 Matosinhos, Portugal;

    LSRE - Laboratory of Separation and Reaction Engineering - Associate Laboratory LSRE/LCM, Faculdade de Engenharia, Uniuersidade do Porto, Rua Dr. Roberto Frias, 4200-465 Porto, Portugal;

  • 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

    pesticide-containing wastewater; solar photo-fenton; biological oxidation; biodegradability;

    机译:含农药废水;太阳光芬顿生物氧化生物降解性;
  • 入库时间 2022-08-17 13:46:34

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