A comparative study of three different assimilable organic carbon (AOC) methods: results of a round-robin test
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[1] M. Doudoroff,et al. The aerobic pseudomonads: a taxonomic study. , 1966, Journal of general microbiology.
[2] Dirk van der Kooij,et al. Determining the concentration of easily assimilable organic carbon in drinking water , 1982 .
[3] W. Hijnen,et al. Substrate Utilization by an Oxalate-Consuming Spirillum Species in Relation to Its Growth in Ozonated Water , 1984, Applied and environmental microbiology.
[4] P. Servais,et al. Determination of the biodegradable fraction of dissolved organic matter in waters , 1987 .
[5] J. Fry,et al. Development and Operational Implementation of a Modified and Simplified Method for Determination of Assimilable Organic Carbon (AOC) in Drinking Water , 1989 .
[6] P. Huck. Measurement of Biodegradable Organic Matter and Bacterial Growth Potential in Drinking Water , 1990 .
[7] T. Bott,et al. Development of a Rapid Assimilable Organic Carbon Method for Water , 1993, Applied and environmental microbiology.
[8] T. Bott,et al. Evaluation and simplification of the assimilable organic carbon nutrient bioassay for bacterial growth in drinking water , 1993, Applied and environmental microbiology.
[9] Kazuo Yamamoto,et al. Role of inorganic phosphorus in controlling regrowth in water distribution system , 1997 .
[10] I. Escobar,et al. Case Study: Ozonation and distribution system biostability , 2001 .
[11] J. Taylor,et al. Bacterial growth in distribution systems: effect of assimilable organic carbon and biodegradable dissolved organic carbon. , 2001, Environmental science & technology.
[12] W. Ng,et al. Investigation of assimilable organic carbon (AOC) and bacterial regrowth in drinking water distribution system. , 2002, Water research.
[13] T. Juhna,et al. Problem of DOC removal during biological treatment of surface water with a high amount of humic substances , 2004 .
[14] N. J. Shaw,et al. Characterization of Bioluminescent Derivatives of Assimilable Organic Carbon Test Bacteria , 2004, Applied and Environmental Microbiology.
[15] T. Egli,et al. New method for assimilable organic carbon determination using flow-cytometric enumeration and a natural microbial consortium as inoculum. , 2005, Environmental science & technology.
[16] A. Farnleitner,et al. Growth Response of Soda Lake Bacterial Communities to Simulated Rainfall , 2008, Microbial Ecology.
[17] T. Egli,et al. Growth of Vibrio cholerae O1 Ogawa Eltor in freshwater. , 2007, Microbiology.
[18] O. Köster,et al. Flow-cytometric total bacterial cell counts as a descriptive microbiological parameter for drinking water treatment processes. , 2008, Water research.
[19] T. Egli,et al. Critical Evaluation of the Volumetric “Bottle Effect” on Microbial Batch Growth , 2009, Applied and Environmental Microbiology.
[20] O. Köster,et al. Assessing biological stability of drinking water without disinfectant residuals in a full-scale water supply system , 2010 .
[21] T. Egli,et al. Evaluating the Growth Potential of Pathogenic Bacteria in Water , 2010, Applied and Environmental Microbiology.
[22] Zvi Drezner,et al. A Modified Kolmogorov–Smirnov Test for Normality , 2010, Commun. Stat. Simul. Comput..
[23] P. W. van der Wielen,et al. Utilization of oligo‐ and polysaccharides at microgram‐per‐litre levels in freshwater by Flavobacterium johnsoniae , 2010, Journal of applied microbiology.
[24] L. Rietveld,et al. Improving the biological stability of drinking water by ion exchange , 2011 .