A conceptual model for wastewater quality changes during transport in sewers is presented. The model concept includes reaeration and main aerobic and anaerobic microbial processes in water phase and sewer biofilm. Emphasis is on microbial transformations of heterotrophic biomass and soluble and particulate fractions of organic substrate; the inclusion of sulfate respiration in the model concept is outlined. The model concept has been tested in gravity sewers as well as in pressure mains. Oxygen utilization rate measurements of wastewater samples from sewers are used for model calibration. The model is exemplified as a tool for evaluation of wastewater quality changes in an intercepting gravity sewer. The model concept can be used in the design process of sewers taking into account quality aspects. It is recommended to consider sewer processes when addressing functioning of the sewer, wastewater treatment and combined sewer overflow effects.
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Research Article|
November 01 1998
Aerobic microbial transformations of pipe and silt trap sediments from combined sewers Available to Purchase
Jes Vollertsen;
Jes Vollertsen
*Environmental Engineering Laboratory, Aalborg University, Sohngaardsholmsvej 57, DK-9000 Aalborg, Denmark
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Thorkild Hvitved-Jacobsen;
Thorkild Hvitved-Jacobsen
*Environmental Engineering Laboratory, Aalborg University, Sohngaardsholmsvej 57, DK-9000 Aalborg, Denmark
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Iain McGregor;
Iain McGregor
**Wastewater Technology Centre, Department of Civil Engineering, Surveying and Building, University of Abertay Dundee, Bell Street, Dundee DD3 6HF, UK
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Richard Ashley
Richard Ashley
**Wastewater Technology Centre, Department of Civil Engineering, Surveying and Building, University of Abertay Dundee, Bell Street, Dundee DD3 6HF, UK
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Water Sci Technol (1998) 38 (10): 249–256.
Citation
Jes Vollertsen, Thorkild Hvitved-Jacobsen, Iain McGregor, Richard Ashley; Aerobic microbial transformations of pipe and silt trap sediments from combined sewers. Water Sci Technol 1 November 1998; 38 (10): 249–256. doi: https://doi.org/10.2166/wst.1998.0408
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