Literature DB >> 18520018

Quality evaluation methods for wastewater treatment plant data.

M Thomann1.   

Abstract

Non identified systematic errors in data sets can cause severe problems inducing wrong decisions in function control, process modelling or planning of new treatment infrastructure. In this paper statistical methods are shown to identify systematic errors in full-scale WWTP data sets. With a redundant mass balance approach analyzing five different mass balances, systematic errors of about 10%-20% compared to the input fluxes can be identified at a 5%-significance level. A Shewhart control-chart approach to survey the data quality of on-line-sensors allows a statistical as well as a fast graphical analysis of the measurement process. A 19 month data set indicates that NO(3) (-), PO(4) (-) and NH(4) (-) on-line analyzers in the filter effluent and MLSS sensors in the aeration tanks were not disturbed by any systematic error for 85-95% of the measuring time. The in-control-interval (+/-3.standard deviation) has a width of +/-12-17% (NO(3)-N), +/-35-40% (PO(4)-P), +/-83% (NH(4)-N) and +/-12-15% (TS) of the measured reference value. IWA Publishing 2008.

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Year:  2008        PMID: 18520018     DOI: 10.2166/wst.2008.151

Source DB:  PubMed          Journal:  Water Sci Technol        ISSN: 0273-1223            Impact factor:   1.915


  1 in total

1.  Spatial differences and temporal changes in illicit drug use in Europe quantified by wastewater analysis.

Authors:  Christoph Ort; Alexander L N van Nuijs; Jean-Daniel Berset; Lubertus Bijlsma; Sara Castiglioni; Adrian Covaci; Pim de Voogt; Erik Emke; Despo Fatta-Kassinos; Paul Griffiths; Félix Hernández; Iria González-Mariño; Roman Grabic; Barbara Kasprzyk-Hordern; Nicola Mastroianni; Axel Meierjohann; Thomas Nefau; Marcus Ostman; Yolanda Pico; Ines Racamonde; Malcolm Reid; Jaroslav Slobodnik; Senka Terzic; Nikolaos Thomaidis; Kevin V Thomas
Journal:  Addiction       Date:  2014-05-27       Impact factor: 6.526

  1 in total

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