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Quantitative monitoring of an activated sludge reactor using on-line UV-visible and near-infrared spectroscopy

机译:使用在线紫外可见光和近红外光谱对活性污泥反应器进行定量监测

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摘要

The performance of an activated sludge reactor can be significantly enhanced through use of continuous and real-time process-state monitoring, which avoids the need to sample for off-line analysis and to use chemicals. Despite the complexity associated with wastewater treatment systems, spectroscopic methods coupled with chemometric tools have been shown to be powerful tools for bioprocess monitoring and control. Once implemented and optimized, these methods are fast, nondestructive, user friendly, and most importantly, they can be implemented in situ, permitting rapid inference of the process state at any moment. In this work, UV-visible and NIR spectroscopy were used to monitor an activated sludge reactor using in situ immersion probes connected to the respective analyzers by optical fibers. During the monitoring period, disturbances to the biological system were induced to test the ability of each spectroscopic method to detect the changes in the system. Calibration models based on partial least squares (PLS) regression were developed for three key process parameters, namely chemical oxygen demand (COD), nitrate concentration (N-NO 3 − ), and total suspended solids (TSS). For NIR, the best results were achieved for TSS, with a relative error of 14.1% and a correlation coefficient of 0.91. The UV-visible technique gave similar results for the three parameters: an error of ~25% and correlation coefficients of ~0.82 for COD and TSS and 0.87 for N-NO 3 − . The results obtained demonstrate that both techniques are suitable for consideration as alternative methods for monitoring and controlling wastewater treatment processes, presenting clear advantages when compared with the reference methods for wastewater treatment process qualification.
机译:通过使用连续和实时的过程状态监控,可以显着提高活性污泥反应器的性能,从而避免了进行离线分析和使用化学药品的需求。尽管废水处理系统非常复杂,但光谱法与化学计量学工具相结合已被证明是用于生物过程监控的强大工具。一旦实施和优化,这些方法将快速,无损,用户友好,并且最重要的是,它们可以就地实施,从而可以随时快速推断过程状态。在这项工作中,使用紫外线可见光谱和近红外光谱来监测活性污泥反应器,该反应器使用通过光纤连接到相应分析仪的原位浸没探针。在监视期间,对生物系统产生了干扰,以测试每种光谱方法检测系统变化的能力。基于偏最小二乘(PLS)回归的校准模型针对三个关键工艺参数而开发,即化学需氧量(COD),硝酸盐浓度(N-NO 3 -)和总悬浮固体( TSS)。对于NIR,TSS取得了最佳结果,相对误差为14.1%,相关系数为0.91。紫外线可见技术对这三个参数给出了相似的结果:COD和TSS的误差约为25%,相关系数约为0.82,N-NO 3的相关系数约为0.87 -。获得的结果表明,两种技术均适合作为监测和控制废水处理过程的替代方法,与废水处理过程鉴定的参考方法相比,具有明显的优势。

著录项

  • 来源
    《Analytical and Bioanalytical Chemistry》 |2009年第4期|1159-1166|共8页
  • 作者单位

    REQUIMTE Serviço de Química-Física Faculdade de Farmácia Universidade do Porto Rua Aníbal Cunha 164 4099-030 Porto Portugal;

    IBB—Institute for Biotechnology and Bioengineering Centre of Biological Engineering Universidade do Minho Campus de Gualtar 4710-057 Braga Portugal;

    IBB—Institute for Biotechnology and Bioengineering Centre of Biological Engineering Universidade do Minho Campus de Gualtar 4710-057 Braga Portugal;

    IBB—Institute for Biotechnology and Bioengineering Centre of Biological Engineering Universidade do Minho Campus de Gualtar 4710-057 Braga Portugal;

    REQUIMTE Serviço de Química-Física Faculdade de Farmácia Universidade do Porto Rua Aníbal Cunha 164 4099-030 Porto Portugal;

    IBB—Institute for Biotechnology and Bioengineering Centre of Biological Engineering Universidade do Minho Campus de Gualtar 4710-057 Braga Portugal;

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

    Activated sludge process; UV-visible; Near-infrared; Chemometrics; On-line monitoring; Wastewater treatment;

    机译:活性污泥法;紫外线可见;近红外;化学计量学;在线监测;废水处理;

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