Evaluating Monitoring Strategies to Detect Precipitation-Induced Microbial Contamination Events in Karstic Springs Used for Drinking Water
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Christoph Ort | Frederik Hammes | C. Ort | F. Hammes | Michael D. Besmer | Jürg A. Sigrist | M. Besmer
[1] Jim C. Loftis,et al. Water quality monitoring—Some practical sampling frequency considerations , 1980 .
[2] N. Goldscheider,et al. Particle-size distribution as indicator for fecal bacteria contamination of drinking water from karst springs. , 2007, Environmental science & technology.
[3] M. Storey,et al. Advances in on-line drinking water quality monitoring and early warning systems. , 2011, Water research.
[4] S R Petterson,et al. QMRA and water safety management: review of application in drinking water systems. , 2016, Journal of water and health.
[5] N. Goldscheider,et al. New insights into the transport of sediments and microorganisms in karst groundwater by continuous monitoring of particle-size distribution , 2010 .
[6] B. Zheng,et al. Optimization of sampling frequency for routine river water quality monitoring , 2014, Science China Chemistry.
[7] R Core Team,et al. R: A language and environment for statistical computing. , 2014 .
[8] S. Sørensen,et al. A low-cost, multiplexable, automated flow cytometry procedure for the characterization of microbial stress dynamics in bioreactors , 2013, Microbial Cell Factories.
[9] Andrew J. Wade,et al. Using high-frequency water quality data to assess sampling strategies for the EU Water Framework Directive , 2015 .
[10] M C M van Loosdrecht,et al. Monitoring microbiological changes in drinking water systems using a fast and reproducible flow cytometric method. , 2013, Water research.
[11] Yolanda Madrid,et al. Water sampling : Traditional methods and new approaches in water sampling strategy , 2007 .
[12] Vincenzo Naddeo,et al. River water quality assessment: Implementation of non-parametric tests for sampling frequency optimization , 2013 .
[13] Huu Tuan Do,et al. Calculating of river water quality sampling frequency by the analytic hierarchy process (AHP) , 2012, Environmental Monitoring and Assessment.
[14] M. Exner,et al. Microbial Load of Drinking Water Reservoir Tributaries during Extreme Rainfall and Runoff , 2002, Applied and Environmental Microbiology.
[15] Frederik Hammes,et al. Flow cytometry and adenosine tri-phosphate analysis: alternative possibilities to evaluate major bacteriological changes in drinking water treatment and distribution systems. , 2012, Water research.
[16] Luuk C. Rietveld,et al. Better water quality and higher energy efficiency by using model predictive flow control at water supply systems , 2013 .
[17] P. Meus,et al. In situ monitoring of karst springs in Wallonia (southern Belgium) , 2013, Environmental Earth Sciences.
[18] David G. Weissbrodt,et al. The feasibility of automated online flow cytometry for in-situ monitoring of microbial dynamics in aquatic ecosystems , 2014, Front. Microbiol..
[19] James G. Uber,et al. Comparison of Physical Sampling and Real-Time Monitoring Strategies for Designing a Contamination Warning System in a Drinking Water Distribution System , 2006 .
[20] O Bergstedt,et al. Evaluation of the microbial risk reduction due to selective closure of the raw water intake before drinking water treatment. , 2007, Journal of water and health.
[21] Hans-Jørgen Albrechtsen,et al. A novel, optical, on-line bacteria sensor for monitoring drinking water quality , 2016, Scientific Reports.
[22] N. Goldscheider,et al. Dynamics and interaction of organic carbon, turbidity and bacteria in a karst aquifer system , 2006 .
[23] Brian E. Haggard,et al. PRACTICAL GUIDANCE FOR DISCHARGE AND WATER QUALITY DATA COLLECTION ON SMALL WATERSHEDS , 2006 .
[24] Paul Weir,et al. Assessing microbiological water quality in drinking water distribution systems with disinfectant residual using flow cytometry. , 2014, Water research.
[25] Jannis Epting,et al. Online flow cytometry reveals microbial dynamics influenced by concurrent natural and operational events in groundwater used for drinking water treatment , 2016, Scientific Reports.
[26] Christoph Butscher,et al. Validation of a Numerical Indicator of Microbial Contamination for Karst Springs , 2011, Ground water.
[27] S. Nash,et al. RISK ASSESSMENT METHODOLOGY FOR KARST AQUIFERS: (1) ESTIMATING KARST CONDUIT-FLOW PARAMETERS , 1997 .
[28] A. Scheidleder,et al. Groundwater quality and quantity in Europe , 1999 .
[29] H Stadler,et al. A sensitive and robust method for automated on-line monitoring of enzymatic activities in water and water resources. , 2014, Water science and technology : a journal of the International Association on Water Pollution Research.
[30] David G Stevenson,et al. Water Treatment Unit Processes , 1998 .
[31] P. Richon,et al. Temporal variability of karst aquifer response time established by the sliding-windows cross-correlation method , 2014 .
[32] Karim Helmi,et al. Monitoring of three drinking water treatment plants using flow cytometry , 2014 .
[33] Frederik Hammes,et al. Short-term microbial dynamics in a drinking water plant treating groundwater with occasional high microbial loads. , 2016, Water research.
[34] P. Nemetz,et al. Sampling frequency for water quality monitoring: Measures of effectiveness , 1983 .
[35] Michèle Prévost,et al. Suspended particles in the drinking water of two distribution systems , 2001 .
[36] A. Farnleitner,et al. Microbiological monitoring and automated event sampling at karst springs using LEO-satellites. , 2008, Water science and technology : a journal of the International Association on Water Pollution Research.
[37] Leonard Steinborn,et al. International Organization for Standardization ISO/IEC 17025 General Requirements for the Competence of Testing and Calibration Laboratories , 2004 .
[38] U. Szewzyk,et al. Bacterial dynamics in spring water of alpine karst aquifers indicates the presence of stable autochthonous microbial endokarst communities. , 2005, Environmental microbiology.
[39] N J Ashbolt,et al. Pathogen monitoring offers questionable protection against drinking-water risks: a QMRA (quantitative microbial risk analysis) approach to assess management strategies. , 2006, Water science and technology : a journal of the International Association on Water Pollution Research.
[40] G. McBride,et al. The “data-rich but information-poor” syndrome in water quality monitoring , 1986 .
[41] Jannis Epting,et al. Online analysis: Deeper insights into water quality dynamics in spring water. , 2017, The Science of the total environment.
[42] J. C. van Dijk,et al. Particles in the drinking water system: from source to discolouration , 2004 .
[43] M. Sinreich,et al. Microbiological monitoring and classification of karst springs , 2013, Environmental Earth Sciences.