Title of article :
Establishment of HPC(R2A) for regrowth control in non-chlorinated distribution systems
Author/Authors :
Uhl، نويسنده , , Wolfgang and Schaule، نويسنده , , Gabriela، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Pages :
9
From page :
317
To page :
325
Abstract :
Drinking water distributed without disinfection and without regrowth problems for many years may show bacterial regrowth when the residence time and/or temperature in the distribution system increases or when substrate and/or bacterial concentration in the treated water increases. An example of a regrowth event in a major German city is discussed. Regrowth of HPC bacteria occurred unexpectedly at the end of a very hot summer. No pathogenic or potentially pathogenic bacteria were identified. Increased residence times in the distribution system and temperatures up to 25 °C were identified as most probable causes and the regrowth event was successfully overcome by changing flow regimes and decreasing residence times. rd plate counts of HPC bacteria using the spread plate technique on nutrient rich agar according to German Drinking Water Regulations (GDWR) had proven to be a very good indicator of hygienically safe drinking water and to demonstrate the effectiveness of water treatment. However, the method proved insensitive for early regrowth detection. Regrowth experiments in the lab and sampling of the distribution system during two summers showed that spread plate counts on nutrient-poor R2A agar after 7-day incubation yielded 100 to 200 times higher counts. Counts on R2A after 3-day incubation were three times less than after 7 days. As the precision of plate count methods is very poor for counts less than 10 cfu/plate, a method yielding higher counts is better suited to detect upcoming regrowth than a method yielding low counts. It is shown that for the identification of regrowth events HPC(R2A) gives a further margin of about 2 weeks for reaction before HPC(GDWR).
Keywords :
Internal alert limit , Drinking water , Distribution , Regrowth , Temperature , residence time , Plate counts , HPC bacteria , R2A , AOC
Journal title :
International Journal of Food Microbiology
Serial Year :
2004
Journal title :
International Journal of Food Microbiology
Record number :
2110831
Link To Document :
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