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Electrochemical methods and membrane bioreactor approach for wastewater treatment and water quality assessment.

机译:用于废水处理和水质评估的电化学方法和膜生物反应器方法。

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摘要

Severe water scarcity, high health standards, and strict disposal limits have necessitated the development of novel and robust strategies for wastewater remediation and water quality analysis at lower cost with reduced energy expenditure. Electrochemistry offers promising and environmentally compatible approaches for the treatment of wastewater and for water quality assessment. Meanwhile, membrane bioreactor (MBR) technology is widely recognized as an effective method for enhanced wastewater treatment or re-use. In this study, an enhanced electrochemical oxidation process was first developed for the decontamination of phenolic compounds. Subsequently, a thermophilic submerged aerobic membrane bioreactor (TSAMBR) integrated with electrochemical oxidation (EO) was constructed for the treatment of thermomechanical pulping pressate. Finally, a photoelectrochemical method was proposed for the rapid determination of chemical oxygen demand (COD).;A novel process based on an adsorption and release step followed by electrochemical oxidation was developed for the decontamination of three phenolic compounds: Phenol, p-nitrophenol (p-NPh) and p-cresol. The adsorption step was carried out by adsorbing the three pollutants onto a hyper-cross-linked resin (MN-200). The adsorption equilibrium and kinetics, as well as temperature effects were systematically studied. The MN-200 resin exhibited a high removal efficiency of the three pollutants and the adsorbed phenolic compounds can be efficiently released in a NaOH solution. The pre-concentrated phenolic compounds were further treated via electrochemical oxidation at a Ti/SnO2--Sb2O 5--IrO2 electrode. The first-order model fitted the kinetics data of the electrochemical oxidation very well, showing that the degradation rate constant decreased in the order of p-NPh > phenol > p-cresol. The integration of the effective pre-concentration process with the electrochemical oxidation offers a promising approach for the effective decontamination of phenolic pollutants in wastewater.
机译:严重的水短缺,高健康标准和严格的处置限制,已需要开发出新颖而强大的废水修复和水质分析策略,同时以较低的成本和减少的能源消耗。电化学为废水处理和水质评估提供了有前途且与环境兼容的方法。同时,膜生物反应器(MBR)技术被广泛认为是增强废水处理或回用的有效方法。在这项研究中,首先开发了一种增强的电化学氧化工艺来对酚类化合物进行净化处理。随后,构建了与电化学氧化(EO)集成的嗜热浸入式好氧膜生物反应器(TSAMBR),用于处理热机械制浆压榨液。最后,提出了一种光电化学方法来快速测定化学需氧量(COD).;开发了一种基于吸附和释放步骤然后进行电化学氧化的新方法,以对三种酚类化合物进行净化:苯酚,对硝基苯酚( p-NPh)和对甲酚。吸附步骤是通过将三种污染物吸附到超交联树脂(MN-200)上进行的。系统地研究了吸附平衡和动力学以及温度效应。 MN-200树脂对三种污染物的去除效率很高,并且所吸附的酚类化合物可以在NaOH溶液中有效释放。预浓缩的酚类化合物在Ti / SnO2--Sb2O 5--IrO2电极上通过电化学氧化进一步处理。一级模型很好地拟合了电化学氧化的动力学数据,表明降解速率常数以对-NPh>苯酚>对-甲酚的顺序降低。有效的预浓缩工艺与电化学氧化的集成为有效净化废水中的酚类污染物提供了一种有前途的方法。

著录项

  • 作者

    Qu, Xiao.;

  • 作者单位

    Lakehead University (Canada).;

  • 授予单位 Lakehead University (Canada).;
  • 学科 Engineering Environmental.;Water Resource Management.
  • 学位 M.S.
  • 年度 2011
  • 页码 126 p.
  • 总页数 126
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:44:43

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