Sewer quality modeling – a dry weather approach
Tài liệu tham khảo
Ashley, R.M., Hvitved-Jacobsen, T., Vollertsen, J., McIlhatton, T., & Arthur, S. (1999). Sewer solids erosion washout and a new paradigm to control solids impacts on receiving waters. In Proceedings of the eighth international conference on urban storm drainage (Vol. 1, pp. 171–178). Sydney, Australia
Bjerre, 1995, Experimental procedures characterizing transformations of wastewater organic matter in the Emscher River, Germany, Water Science Technology, 31, 201, 10.1016/0273-1223(95)00337-M
Bjerre, 1997, Biological activity of biofilm and sediment in the Emscher river, Germany, Water Science Technology, 37, 9, 10.1016/S0273-1223(97)00750-6
Bjerre, 1998, Modelling of aerobic wastewater transformations under sewer conditions in the Emscher river, Germany, Water Environmental Research, 70, 1151, 10.2175/106143098X123273
Boon, 1995, Septicity in sewers: causes, consequences and containment, Water Science Technology, 31, 237, 10.1016/0273-1223(95)00341-J
Characklis,W. G., & Marshall, K. C. (1989). Biofilms. In W. G. Characklis, & K. C. Marshall (Eds.), Wiley series in ecological and applied microbiology, USA, 1989
Dold, 1980, A general model for the activated sludge process, Progress in Water Technology, 12, 47
Garsdal, 1995, Mousetrap: modelling of water quality processes and the interaction of sediments and pollutants in sewers, Water Science Technology, 31, 33, 10.1016/0273-1223(95)00320-M
Green, 1985, Using the sewerage system main conduits for biological treatment greater Tel-Aviv as a conceptual model, Water Research, 19, 1023, 10.1016/0043-1354(85)90371-9
Henze, M., Gujer, W., Mino, T., Matsuo, T., Wentzel, M. C., & Marais, G. R. (1995). Activated sludge model No. 2. Scientific and Technical Report No. 3 International Association on Water Quality
Huisman, J.L., Gienal, C., Khüni, M., Krebs, P., & Gujer, W. (1999). Oxygen mass transfer and biofilm respiration rate measurement in a long sewer evaluated with a redundant oxygen balance. In Proceedings of the eighth international conference on urban storm drainage (Vol. 1, pp. 306–314). Sydney, Australia
Hvitved-Jacobsen, 1998, A process and model concept for microbial wastewater transformations in gravity sewers, Water Science Technology, 37, 233, 10.1016/S0273-1223(97)00774-9
Hvitved-Jacobsen, 1998, Wastewater quality changes during transport in sewers – an integrated aerobic and anaerobic model concept for carbon and sulfur microbial transformations, Water Science Technology, 38, 257, 10.1016/S0273-1223(98)00757-4
Hvitved-Jacobsen, T., & Vollertsen, J. (1998c). An intercepting sewer from Dortmund to Dinslaken, Germany prediction of wastewater transformations during transport. Environmental Engineering Laboratory, Aalborg University, Denmark
Jansen, J. la. C., & Harremoës, P. (1984). Removal of soluble substrates in fixed films. Water Science Technology, 17(2–8), part 1, 1–14
Jensen, 1995, Empirical modeling of air-to-water oxygen transfer in gravity sewers, Water Environment Research, 67, 979, 10.2175/106143095X133211
Lewis, 1924, Principles of gas absorption, Industrial Engineering Chemistry, 16, 1215, 10.1021/ie50180a002
Nielsen, 1998, Sulfide production and wastewater quality in pressure mains, Water Science Technology, 37, 97, 10.1016/S0273-1223(97)00758-0
Parkhurst, 1972, Oxygen Absorption in Streams, Journal of the Sanitary Engineering Division American Society of Civil Engineers, 98, 101, 10.1061/JSEDAI.0001366
Raunkjær, 1995, Transformation of organic matter in a gravity sewer, Water Environment Research, 67, 181, 10.2175/106143095X131330
Sollfrank, U. (1988). Bedeutung organischer Fractionen in kommunalem Abwasser im Hinblick auf die mathematische Modellierung von Belebtschlammsystemen. Dissertation ETH No. 8765. Zürich 1988
Stemplewski, J., Schlegel, S., Stein, A., Geisler, W., Schmelz, K.-G., Hvitved-Jacobsen, T., & Vollertsen, J. (1999). Restructuring the Emscher system. In Proceedings of the 11th EWPCA (the European Water Pollution Control Association) symposium: Sewerage systems cost and sustainable solutions, 4–6 May 1999, Munich, Germany, p. 14
Tanaka, 1998, Transformations of wastewater organic matter in sewers under changing aerobic/anaerobic conditions, Water Science Technology, 37, 105, 10.1016/S0273-1223(97)00759-2
Tanaka, N., Hvitved-Jacobsen, T., Ochi, T., & Sato, N. (1998). Aerobic/anaerobic microbial wastewater transformations and reaeration in an air-injected pressure sewer. In Proceedings of the 71st annual water environment federation conference and exposition (Vol. 2, pp. 853–864), WEFTEC'98, Orlando, FL, USA, 3–7 October
Tanaka, 2000, Transformations of carbon and sulfur wastewater components under aerobic-anaerobic transient conditions in sewer systems, Water Environment Research, 72, 651, 10.2175/106143000X138265
Vollertsen, 1998, Aerobic microbial transformations of resuspended sediments in combined sewers – a conceptual model, Water Science Technology, 37, 69, 10.1016/S0273-1223(97)00757-9
Vollertsen, 1999, Stoichiometric and kinetic model parameters for microbial transformations of suspended solids in combined sewer systems, Water Research, 33, 3127, 10.1016/S0043-1354(99)00033-0