AI Article Synopsis

  • - This paper analyzes data from five online monitoring campaigns of sewer systems in cities including Berlin and Bogota, utilizing UV-VIS spectrometers and turbidimeters to assess water quality during dynamic events like stormwater overflow.
  • - It emphasizes the importance of local calibration for accurate Chemical Oxygen Demand (COD) measurements, recommending a collection of 15-20 samples over various events to capture natural variability.
  • - The paper highlights that without proper local calibration, the accuracy of measurements can be significantly compromised, leading to high error rates in assessing water pollution during wet weather discharges.

Article Abstract

This paper reports about experiences gathered from five online monitoring campaigns in the sewer systems of Berlin (Germany), Graz (Austria), Lyon (France) and Bogota (Colombia) using ultraviolet-visible (UV-VIS) spectrometers and turbidimeters. Online probes are useful for the measurement of highly dynamic processes, e.g. combined sewer overflows (CSO), storm events, and river impacts. The influence of local calibration on the quality of online chemical oxygen demand (COD) measurements of wet weather discharges has been assessed. Results underline the need to establish local calibration functions for both UV-VIS spectrometers and turbidimeters. It is suggested that practitioners calibrate locally their probes using at least 15-20 samples. However, these samples should be collected over several events and cover most of the natural variability of the measured concentration. For this reason, the use of automatic peristaltic samplers in parallel to online monitoring is recommended with short representative sampling campaigns during wet weather discharges. Using reliable calibration functions, COD loads of CSO and storm events can be estimated with a relative uncertainty of approximately 20%. If no local calibration is established, concentrations and loads are estimated with a high error rate, questioning the reliability and meaning of the online measurement. Similar results have been obtained for total suspended solids measurements.

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Source
http://dx.doi.org/10.2166/wst.2014.465DOI Listing

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