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2008 | 17 | 2 |

Tytuł artykułu

Suspended solids concentration in highway runoff during summer conditions

Autorzy

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
One treatment practice for storm water is detention of the initial part of the runoff that is considered to contain the highest concentration of pollutants. This study has evaluated the concentration of total suspended solids (TSS) in 44 consecutive runoff events from a highway watershed. The effluent TSS standard for wastewater of 60 mg/l applied in the EU was used to assess the required treatment. In 35 of the runoff events the TSS partial event mean concentration exceeded 60 mg/l for the duration of the runoff event. Thus, a partial capture of the runoff volume should not be used as a treatment option in similar conditions that prevailed in this study.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

17

Numer

2

Opis fizyczny

p.237-241,fig.,ref.

Twórcy

autor
  • Royal Institute of Technology, Teknikringen 76, SE-100 44 Stockholm, Sweden
autor

Bibliografia

  • 1. SANSALONE J.J., BUCHBERGER S.G. Partitioning and First Flush of Metals in Urban Roadway Storm Water, J. Environ Eng. 123, 34, 1997.
  • 2. HALLBERG M., RENMAN G., LUNDBOM T. Seasonal Variations of Ten Metals in Highway Runoff and their Partition between Dissolved and Particulate Matter, Water Air Soil Pollut. 181, 183, 2007.
  • 3. BERTRAND-KRAJEWSKI J.L., GASSAN C., SAGET A Distribution of Pollutant Mass vs. Volume in Stormwater Discharges and the First Flush Phenomena, Water Res. 32, 2341, 1998.
  • 4. SANSALONE J.J., KORAN J.M., SMITHSON J.A., BUCHBERGER S.G. Physical Characteristics of Urban Roadway Solids Transported during Rain Events, J Environ Eng. 124, 427, 1998.
  • 5. ANDRAL M.C., ROGER S., MONTRÉJAUD-VIGNOLES M., HERREMANS L. Particle size distribution and hydrodynamic characteristics of solid matter carried by run off from motorway, Water Environ. Res. 71, 398, 1999.
  • 6. URBONAS B., STAHRE P. Stormwater Best Management Practices and Detention for Water Quality, Drainage and CSO Management, PTR Prentice Hall, Englewood Cliffs, New Jersey, USA, pp 313.315, 1993.
  • 7. WANIELISTA M.P., YOUSEF Y. A Stormwater Management, John Wiley & Sons Inc., New York, USA, pp 225, 1993.
  • 8. DELETIC A. The First Flush Load of Urban Surface Runoff. Water Res. 32, 2462, 1998.
  • 9. LEE J.H., BANG K.W., KETCHUM L.H., CHOE J.S., YU M.J. First flush analysis of urban storm runoff, Sci. Tot. Environ. 293, 63, 2002.
  • 10. LEGRET M., PAGOTTO C. Evaluation of pollutant loadings in the runoff water from a major rural highway, Sci. Tot. Environ. 235, 143, 1999.
  • 11. JACOBSON T. Undersökning av slitlagerbeläggningars resistens mot dubbade däck i VTI:s provmaskin. Väg- och Transportforskningsinstitutet 1994, VTI meddelande 732 (In Swedish)
  • 12. JACOBSON T., HORNWALL F. Dubbslitage på asfaltbeläggning Sammanställning av resultat från provvägar och kontrollsträckor 1990-1998. Väg- och Transportforskningsinstitutet 1999; VTI meddelande 862 (In Swedish).
  • 13. BARETT M.E., IRISH L., MALINA J., CHARBENEAU R.J. Characterization of Highway Runoff in Austin, Texas, Area. J. Environ. Eng. 124, 131, 1998.
  • 14. PETTERSSON T. Stormwater Ponds for Pollution Reduction. Department of Sanitary Engineering, Doctoral Dissertion, Chalmers University of Technology 1999, ISBN 91-7197-846-1.
  • 15. HALLBERG M., RENMAN G. Assessment of Suspended Solids Concentration in Highway Runoff and its Treatment Implication. Environmental Technology, 27, 945, 2006.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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