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Development of Chemical Oxygen Demand On-line Monitoring System Based on a Photoelectrochemical Degradation Principle

机译:基于光电化学降解原理的化学需氧量在线监测系统的开发

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摘要

A simple,rapid,and sensitive on-line chemical oxygen demand (COD) determination method has been proposed and experimentally validated.The method is based on a photoelectrochemical oxidative degradation principle and operates under a continuous flow mode.The method employs a specially designed thin-layer photoelectrochemical cell that incorporates a highly effective nanoparticulate TiO_2 photoanode.This approach overcomes many problems associated with the conventional COD determination techniques such as long analysis time,consumption of expensive and toxic reagents,production of secondary toxic waste,and poor reproducibility.The effect of important experimental parameters on the analytical signal generation was systematically investigated,and the optimum conditions were obtained.The method was successfully applied to determine the COD of real samples from various industrial wastewaters.The COD value of real samples determined by this method agreed well with the standard dichromate method.The assay time of 1-5 min/sample can be readily achieved.A practical detection limit of 1 mg L~(-1) COD with a linear range of 1-100 mg L~(-1) was achieved under the optimum conditions.
机译:提出了一种简便,快速,灵敏的在线化学需氧量(COD)测定方法,该方法基于光电化学氧化降解原理并在连续流模式下运行。这种方法克服了传统COD测定技术存在的许多问题,例如分析时间长,消耗昂贵和有毒的试剂,产生二次有毒废物以及重现性差等问题。该方法结合了高效的纳米TiO_2光阳极。系统地研究了重要实验参数对分析信号产生的影响,并确定了最佳条件。该方法成功地用于测定各种工业废水中真实样品的COD。该方法测定的真实样品的COD值与标准重铬酸甲酯od。样品的分析时间很容易达到1-5分钟。在此条件下,实际检测限为1 mg L〜(-1)COD,线性范围为1-100 mg L〜(-1)。最佳条件。

著录项

  • 来源
    《Environmental Science & Technology》 |2006年第7期|p.2363-2368|共6页
  • 作者单位

    Centre for Aquatic Processes and Pollution (CAPP) and School of Environmental and Applied Sciences,Gold Coast Campus,Griffith University,PMB 50,Gold Coast Mail Center,Queensland 9726,Australia;

    Centre for Aquatic Processes and Pollution (CAPP) and School of Environmental and Applied Sciences,Gold Coast Campus,Griffith University,PMB 50,Gold Coast Mail Center,Queensland 9726,Australia;

    Centre for Aquatic Processes and Pollution (CAPP) and School of Environmental and Applied Sciences,Gold Coast Campus,Griffith University,PMB 50,Gold Coast Mail Center,Queensland 9726,Australia;

  • 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);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

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