Related Experiment Video
Updated: Jul 4, 2026

Comparison of Scale in a Photosynthetic Reactor System for Algal Remediation of Wastewater
Published on: March 6, 2017
Factors affecting bulk to total bacteria ratio in drinking water distribution systems
Soumya Srinivasan1, Gregory W Harrington, Irene Xagoraraki
1Brown and Caldwell, 201 North Civic Drive, Walnut Creek, CA 94596, USA. ssrinivasan@brwncald.com
Abstract:
Bacteria in drinking water systems can grow in bulk water and as biofilms attached to pipe walls, both causing regrowth problems in the distribution system. While studies have focused on evaluating the factors influencing the bacteria in bulk water and in biofilms separately, there is a need for understanding biofilm characteristics relative to the bulk water phase. The current study evaluated the effects of chlorine and residence time on the presence of culturable bacteria in biofilms relative to that in bulk water. The results showed that when no chlorine residual was present in the system, the median ratio of bulk to total bacteria was 0.81, indicating that 81% of the bacteria were present in bulk water, whereas only 19% were present in the biofilm. As chlorine concentration increased to 0.2, 0.5, and 0.7 mg/L, the median percentage of bacteria present in bulk water decreased to 37, 28, and 31, respectively. On the other hand, as the residence times increased to 8.2, 12, 24, and 48h, the median percentage of bacteria present in bulk water increased to 7, 37, 58, and 88, respectively, in the presence of a 0.2mg/L chlorine residual. The common notion that biofilms dominate the distribution system is not true under all conditions. These findings suggest that bulk water bacteria may dominate in portions of a distribution system that have a low chlorine residual.
Related Concept Videos
Factors Influencing Microbial Growth: pH
Scale-Up Processes
Factors Influencing Microbial Growth: Osmolarity
Bioreactor Controls-II
Methods of Medium Optimization
Bioreactor Design and Operational System