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A portable miniature UV-LED-based photoelectrochemical system for determination of chemical oxygen demand in wastewater

机译:基于便携式微型UV-LED的光电化学系统,用于测定废水中的化学需氧量

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摘要

A portable, cost-effective, environmental friendly and miniature thin-layer photoelectrochemical system in conjunction with an ultraviolet light emitting diode (UV-LED) is developed for determination of chemical oxygen demand (COD), namely UV-LED PeCOD. The COD value is directly quantified by measuring the amount of electrons captured at a nanostructured TiO_2 electrode during the exhaustive photoelectrocatalytic degradation of organic species in the thin-layer cell. The key parameters of the photoelectrochemical system, such as applied potential bias, light intensity and solution pH, were investigated and optimized. Combined with a microelectrochemical system and a laptop computer, the UV-LED PeCOD system enables end-users to perform on-site COD analysis in a simple, rapid, sensitive and accurate manner. Under the optimal conditions, the system can achieve a practical detection limit of 0.2 ppm COD with a linear range of 0-300 ppm COD. The proposed UV-LED PeCOD technology can potentially make a revolutionary improvement to the conventional COD analysis and may be widely used in water quality monitoring industry.
机译:开发了一种便携式,经济高效,环保且微型的薄层光电化学系统,结合紫外发光二极管(UV-LED)来确定化学需氧量(COD),即UV-LED PeCOD。通过测量在薄层电池中有机物质的彻底光电催化降解过程中,在纳米结构的TiO_2电极上捕获的电子数量,可以直接量化COD值。研究和优化了光电化学系统的关键参数,例如施加的电势偏置,光强度和溶液的pH值。结合了微电化学系统和便携式计算机,UV-LED PeCOD系统使最终用户能够以简单,快速,灵敏和准确的方式执行现场COD分析。在最佳条件下,系统可以实现0.2 ppm COD的实际检测极限,线性范围为0-300 ppm COD。提议的UV-LED PeCOD技术可以对传统的COD分析进行革命性的改进,并且可以广泛用于水质监测行业。

著录项

  • 来源
    《Sensors and Actuators》 |2009年第2期|634-640|共7页
  • 作者单位

    Australian Rivers Institute and Griffith School of Environment, Gold Coast Campus, Griffith University, QLD 4222, Australia;

    Australian Rivers Institute and Griffith School of Environment, Gold Coast Campus, Griffith University, QLD 4222, Australia;

    Australian Rivers Institute and Griffith School of Environment, Gold Coast Campus, Griffith University, QLD 4222, Australia;

    Australian Rivers Institute and Griffith School of Environment, Gold Coast Campus, Griffith University, QLD 4222, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    UV-LED; chemical oxygen demand; thin-layer cell; photoelectrochemical; TiO_2;

    机译:紫外线LED;化学需氧量薄层电池光电化学TiO_2;

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