Full Text:   <3368>

CLC number: TU992

On-line Access: 

Received: 2008-03-24

Revision Accepted: 2008-06-17

Crosschecked: 0000-00-00

Cited: 11

Clicked: 6399

Citations:  Bibtex RefMan EndNote GB/T7714

-   Go to

Article info.
Open peer comments

Journal of Zhejiang University SCIENCE A 2008 Vol.9 No.11 P.1567-1575

http://doi.org/10.1631/jzus.A0820271


Characterization of suspended solids and particle-bound heavy metals in a first flush of highway runoff


Author(s):  Fa-hui NIE, Tian LI, Hai-feng YAO, Man FENG, Guang-kai ZHANG

Affiliation(s):  State Key Laboratory of Pollution Control and Resource Reuse, Tongji University, Shanghai 200092, China; more

Corresponding email(s):   wyynfh@yahoo.com.cn

Key Words:  Heavy metals, Highway runoff, First flush, Suspended solids (SS)


Fa-hui NIE, Tian LI, Hai-feng YAO, Man FENG, Guang-kai ZHANG. Characterization of suspended solids and particle-bound heavy metals in a first flush of highway runoff[J]. Journal of Zhejiang University Science A, 2008, 9(11): 1567-1575.

@article{title="Characterization of suspended solids and particle-bound heavy metals in a first flush of highway runoff",
author="Fa-hui NIE, Tian LI, Hai-feng YAO, Man FENG, Guang-kai ZHANG",
journal="Journal of Zhejiang University Science A",
volume="9",
number="11",
pages="1567-1575",
year="2008",
publisher="Zhejiang University Press & Springer",
doi="10.1631/jzus.A0820271"
}

%0 Journal Article
%T Characterization of suspended solids and particle-bound heavy metals in a first flush of highway runoff
%A Fa-hui NIE
%A Tian LI
%A Hai-feng YAO
%A Man FENG
%A Guang-kai ZHANG
%J Journal of Zhejiang University SCIENCE A
%V 9
%N 11
%P 1567-1575
%@ 1673-565X
%D 2008
%I Zhejiang University Press & Springer
%DOI 10.1631/jzus.A0820271

TY - JOUR
T1 - Characterization of suspended solids and particle-bound heavy metals in a first flush of highway runoff
A1 - Fa-hui NIE
A1 - Tian LI
A1 - Hai-feng YAO
A1 - Man FENG
A1 - Guang-kai ZHANG
J0 - Journal of Zhejiang University Science A
VL - 9
IS - 11
SP - 1567
EP - 1575
%@ 1673-565X
Y1 - 2008
PB - Zhejiang University Press & Springer
ER -
DOI - 10.1631/jzus.A0820271


Abstract: 
To investigate the dynamic characteristics of total suspended solids (TSS) and their particle-bound heavy metals in a first flush, the runoff sampling together with its flow rate measuring was conducted for three rainfall events at outfalls of highway in Shanghai from June to September 2007. Field samples were analyzed to determine the concentrations of TSS and particle-bound heavy metals, such as Zn, Pb, and Cu. Results show that the wash off behavior of TSS under varying runoff rate condition can be explained by different antecedent dry weather period (ADWP). Contribution of fine fraction (<45 μm) to TSS was generally higher than that of coarse fraction (>45 μm). When the runoff flow increased obviously, a significant contribution of the coarse fraction was observed for a certain rainfall events with long antecedent dry weather condition. The changes of total metals concentration and particle-bound metal concentrations were strongly dependent on the TSS variation. TSS was generally well correlated with most particulate-bound heavy metals. Of the heavy metals, the concentration of Zn was found considerably high and that of Pb was significantly low at North Zhongshan 2 Road, in Shanghai, China, but they are still within the range reported in the literature. Fluctuation of heavy metal contents in the coarse fraction during a first flush period was more significant compared with that in the fine fraction. The results will assist in the development of effective control strategies to minimize heavy metals and solids in highway runoff.

Darkslateblue:Affiliate; Royal Blue:Author; Turquoise:Article

Reference

[1] APHA, AWWA, WEF (American Public Health Association, American Water Works Association, and Water Environment Federation), 1992. Standard Methods for the Examination of Water and Wastewater. America Public Health Association, Washington, DC.

[2] Aryal, R.K., Furumai, H., Nakajima, F., Boller, M., 2005. Dynamic behavior of fractional suspended solids and particle-bound polycyclic aromatic hydrocarbons in highway runoff. Water Research, 39(20):5126-5134.

[3] Barrett, M.E., Irich, B.Jr., Malina, J.F., Charbeneau, R.J., 1998. Characterization of highway runoff in Austin area. Journal of Environmental Engineering, 124(2):131-137.

[4] Berbee, R., Rijs, G., Brouwer, D.R., Velzen, V.L., 1999. Characterization and treatment of runoff from highways in the Netherlands paved with impervious and pervious asphalt. Water Environment Research, 71(2):183-190.

[5] Brown, J.N., Peake, B.M., 2006. Sources of heavy metals and polycyclic aromatic hydrocarbons in urban stormwater runoff. Science of The Total Environment, 359(1-3):145-155.

[6] Caltrans, 2000. Guidance Manual: Stormwater Monitoring Protocols. Report No. CTSW-RT-00-005, p.263-319.

[7] Chen, J., Zhao, G.Z., Wang, B.Y., You, W.W., 2004. Storage reservoir and its application in regulation of Suzhou Creek. China Municipal Engineering, 4:34-37 (in Chinese).

[8] Davis, A.P., Shokouhian, M., Ni, S., 2001. Loading estimates of lead, copper, cadmium, and zinc in urban runoff from specific sources. Chemosphere, 44(5):997-1009.

[9] Drapper, D., Tomlinson, R., Williams, P., 2000. Pollutant concentration in road runoff: Southeast Queensland case study. Journal of Environmental Engineering, 126(4):313-320.

[10] Furumai, H., Hijioka, Y., Nakajima, F., 2001. Modelling and Field Survey on Washoff Behavior of Suspended Particles from Roofs and Roads. Urban Drainage Modelling—Proceedings of the Specialty Symposium of the World Water and Environmental Resources Congress. Orlando, Florida, USA, p.225-237.

[11] Furumai, H., Balmer, H., Boller, M., 2002. Dynamic behavior of suspended pollutants and particle size distribution in highway runoff. Water Science and Technology, 46(11-12):413-418.

[12] Furumai, H., Aryal, R.K., Nakajima, F., 2004. Profile Analysis of Polycyclic Aromatic Hydrocarbons and Heavy Metals in Size Fractionated Highway Dust and Runoff Samples. The 9th International Conference on Urban Drainage, September 8-13, 2002, Portland, Oregon, USA.

[13] Gan, H.Y., Zhuo, M.N., Li, D.Q., Zhou, Y.Z., 2008. Quality characterization and impact assessment of highway runoff in urban and rural area of Guangzhou, China. Environmental Monitoring and Assessment, 140(1-3):147-159.

[14] GB18918-2002, 2002. Discharge Standard of Pollutants for Municipal Wastewater Treatment Plant, China (in Chinese).

[15] Han, Y.H, Lau, S.L., Kayhanian, M., Stenstrom, M.K., 2006. Correlation analysis among highway stormwater pollutants and characteristics. Water Science and Technology, 53(2):235-243.

[16] Hoffman, E.J., Mills, G.L., Latimer, J.S., Quinn, J.G., 1984. Urban runoff as source of polycyclic aromatic hydrocarbons to coastal waters. Environmental Science and Technology, 18(8):580-587.

[17] Kobriger, N.P., 1984. Sources and Migration of Highway Runoff Pollutants. Report No. FHWA/RD-84/057.

[18] Krein, A., Schorer, M., 2000. Road runoff pollution by polycyclic aromatic hydrocarbons and its contribution to river sediment. Water Research, 34(16):4110-4115.

[19] Lau, S.L., Stenstrom, M.K., 2005. Metals and PAHS adsorbed to street particles. Water Research, 39(17):4083-4092.

[20] Lee, J.H., Bang, K.W., Ketchum, L.H., Choe, J.S., Yu, M.J., 2002. First flush analysis of urban storm runoff. The Science of the Total Environment, 293(1-3):163-175.

[21] Li, L.Q., Yin, C.Q., He, Q.C., Kong, L.L., 2007. First flush of storm runoff pollution from an urban catchment in China. Journal of Environmental Sciences, 19(3):295-299.

[22] Murakami, M., Nakajima, F., Furumai, H., 2004. Modelling of runoff behavior of particle-bound polycyclic aromatic hydrocarbons from roads and roofs. Water Research, 38(20):4475-4483.

[23] Pitt, R., Field, R., Lalor, M., Brown, M., 1995. Urban stormwater toxic pollutants: assessments, sources and treatability. Water Environment Research, 67(3):260-265.

[24] Sabin, L.D., Lim, J.H., Venezia, M.T., Winer, A.M., Schiff, K.C., Stolzenbach, K.D., 2006. Dry deposition and resuspension of particle-associated metals near a freeway in Los Angeles. Atmospheric Environment, 40(39):7528-7538.

[25] Sansalone, J.J., Buchberger, S.G., 1997a. Partitioning and first flush of metals in urban roadway storm water. Journal of Environmental Engineering, 123(2):134-143.

[26] Sansalone, J.J., Buchberger, S.G., 1997b. Characterization of solid and metal element distributions in urban highway stormwater. Water Science and Technology, 36(8-9):155-160.

[27] Shinya, M., Tsuchinaga, T., Kitano, M., Ishikawa, M., 2000. Characterization of heavy metals and polycyclic aromatic hydrocarbons in urban highway runoff. Water Science and Technology, 42(7-8):201-208.

[28] Shinya, M., Tsuruho, K., Konishi, T., Ishikawa, M., 2003. Evaluation of factors influencing diffusion of pollutant loads in urban highway runoff. Water Science and Technology, 47(7-8):227-232.

[29] Smith, J.A., Sievers, M., Huang, S., Yu, S.L., 2000. Occurrence and phase distribution of polycyclic aromatic hydrocarbons in urban storm-water runoff. Water Science and Technology, 42(3-4):383-388.

[30] Tan, Q., Li, T., Zhang, J.P., Shi, Z.B., 2006. Modeling of applying detention tanks to increase drainage capacity for existing sewer system. Water and Wastewater Engineering, 32(9):34-37 (in Chinese).

[31] Tuccillo, M.E., 2006. Size fractionation of metals in runoff from residential and highway storm sewers. Science of the Total Environment, 355(1-3):288-300.

[32] US EPA (Environmental Protection Agency), 1994. Water Quality Standards Handbook, Second Edition. Office of Water, Washington, DC, EPA-823-B-94-005b.

[33] US EPA (Environmental Protection Agency), 1998. Water Quality Conditions in the United States: a Profile from the 1996 National Water Quality Inventory Report to Congress. Office of Water, Washington, DC. Available from: http://www.epa.gov/305b/96report/index.html (Accessed June 6, 2006)

[34] Wu, J.S., Allan, C.J., Saunders, W.L., Evett, J.B., 1998. Characterization and pollutant loading estimation for highway runoff. Journal of Environmental Engineering, 124(7):584-592.

[35] Xu, G.Q., Chen, C.T., Lin, W.Q., Lu, S.Q., 2005. Study on pollution control of overflow from initial rainwater storage tank. China Water and Wastewater, 21(8):19-22 (in Chinese).

[36] Xu, G.Q., Chen, C.T., Zhang, H.Y., 2006. Study on the influence of controlling the initial rainwater storage pollution of the overflow from tanks to Suzhou creek. Advances in Water Science, 17(5):705-708 (in Chinese).

[37] Zhou, H.D., Peng, W.Q., Du, X., Huang, H.J., 2004. Evaluation of China surface water quality. Journal of China Institute of Water Resources and Hydropower Research, 2(4):255-264 (in Chinese).

Open peer comments: Debate/Discuss/Question/Opinion

<1>

Please provide your name, email address and a comment





Journal of Zhejiang University-SCIENCE, 38 Zheda Road, Hangzhou 310027, China
Tel: +86-571-87952783; E-mail: cjzhang@zju.edu.cn
Copyright © 2000 - 2024 Journal of Zhejiang University-SCIENCE