References
- J. Liu, D.J. Sample, C. Bell, Y.T. Guan, Review and research needs
of bioretention used for the treatment of urban stormwater,
Water, 6 (2014) 1069–1099.
- X.L. Sun, A.P. Davis, Heavy metal fates in laboratory
bioretention systems, Chemosphere, 66 (2007) 1601–1609.
- A. Gorgoglione, F.A. Bombardelli, B.J.L. Pitton, L.R. Oki,
D.L. Haver, T.M. Young, Role of sediments in insecticide runoff
from urban surfaces: analysis and modeling, Int. J. Env. Res.
Public Health, 15 (2018) 1464.
- W.Y. Jiang, J. Gan, Importance of fine particles in pesticide
runoff from concrete surfaces and its prediction, Environ.
Sci. Technol., 46 (2012) 6028–6034.
- S. Zgheib, R. Moilleron, M. Saad, G. Chebbo, Partition of
pollution between dissolved and particulate phases: what
about emerging substances in urban stormwater catchments?,
Water Res., 45 (2011) 913–925.
- J.G. Xie, H. Li, J.Q. Shi, Partitioning of heavy metals in
expressway stormwater runoff, J. Southeast Univ. (Natural
Science Edition), 40 (2010) 1019–1024 (in Chinese).
- J.L. Wang, L.Q. Yang, T. Huang, Effect of composite bioretention
media on heavy metals removal from urban stormwater
runoff, Chin. J. Environ. Eng., 9 (2015) 3086–3092 (in Chinese).
- S.L. Pennington, J.G. Webster-Brown, Stormwater runoff
quality from copper roofing, Auckland, New Zealand, N. Z. J.
Mar. Freshwater Res., 42 (2008) 99–108.
- J. Zhao, Sustainable stormwater management in the background
of urbanization, Urban Plann. Int., 27 (2012) 114–119
(in Chinese).
- S.A. Trowsdale, R. Simcock, Urban stormwater treatment
using bioretention, J. Hydrol., 397 (2011) 167–174.
- M. Al-Ameri, B. Hatt, S. Le Coustumer, T. Fletcher, E. Payne,
A. Deletic, Accumulation of heavy metals in stormwater
bioretention media: a field study of temporal and spatial
variation, J. Hydrol., 567 (2018) 721–731.
- M.E. Dietz, J.C. Clausen, Saturation to improve pollutant
retention in a rain garden, Environ. Sci. Technol., 40 (2006)
1335–1340.
- W.F. Hunt, J.T. Smith, S.J. Jadlocki, J.M. Hathaway, P.R. Eubanks,
Pollutant removal and peak flow mitigation by a bioretention
cell in urban charlotte, N.C., J. Environ. Eng., 134 (2008) 403–408.
- R.A. Brown, W.F. Hunt III, Impacts of media depth on effluent
water quality and hydrologic performance of undersized
bioretention cells, J. Irrig. Drain. Eng., 137 (2011) 132–143.
- Y.J. Li, M. Wen, J.K. Li, B.B. Chai, C.B. Jiang, Reduction and
accumulative characteristics of dissolved heavy metals in
modified bioretention media, Water, 10 (2018) 1488.
- K. Bratieres, T.D. Fletcher, A. Deletic, Y. Zinger, Nutrient and
sediment removal by stormwater biofilters: a large-scale design
optimisation study, Water Res., 42 (2008) 3930–3940.
- B.H. Zhang, J.K. Li, Y.J. Li, H. Li, Adsorption characteristics
of several bioretention-modified fillers for phosphorus, Water,
10 (2018) 831.
- J.C. Berndtsson, Green roof performance towards management
of runoff water quantity and quality: a review, Ecol. Eng.,
36 (2010) 351–360.
- J. Read, T. Wevill, T. Fletcher, A. Deletic, Variation among plant
species in pollutant removal from storm water in biofiltration
systems, Water Res., 42 (2008) 893–902.
- J.S. Lu, Y. Chen, Q. Zheng, R. Du, S.P. Wang, J.P. Wang,
Derivation of rainstorm intensity formula in Xi’an City,
China Water Wastewater, 26 (2010) 82–84 (in Chinese).
- A.P. Davis, M. Shokouhian, H. Sharma, C. Minami, Laboratory
study of biological retention for urban stormwater management,
Water Environ. Res., 73 (2001) 5–14.
- J.M. Mullane, M. Flury, H. Iqbal, P.M. Freeze, C. Hinman,
C.G. Cogger, Z.Q. Shi, Intermittent rainstorms cause pulses of
nitrogen, phosphorus, and copper in leachate from compost in
bioretention systems, Sci. Total Environ., 537 (2015) 294–303.
- G.Q. Chen, G.M. Zeng, C.Y. Du, D.L. Huang, L. Tang,
L.A. Wang, G.L. Shen, Transfer of heavy metals from compost
to red soil and groundwater under simulated rainfall conditions,
J. Hazard. Mater., 181 (2010) 211–216.
- H.X. Tian, L.C. Fang, C.J. Duan, Y.Q. Wang, H. Wu, Dominant
factor affecting Pb speciation and the leaching risk among landuse
types around Pb-Zn mine, Geoderma, 326 (2018) 123–132.
- L. Cang, D.-M. Zhou, Q.Y. Wang, D.-Y. Wu, Effects of
electrokinetic treatment of a heavy metal contaminated soil on
soil enzyme activities, J. Hazard. Mater., 172 (2009) 1602–1607.
- Q. Liang, R. Gao, B. Xi, Y. Zhang, H. Zhang, Long-term effects
of irrigation using water from the river receiving treated
industrial wastewater on soil organic carbon fractions and
enzyme activities, Agric. Water Manage., 135 (2014) 100–108.
- K. Ciarkowska, K. Sołek-Podwika, J. Wieczorek, Enzyme
activity as an indicator of soil-rehabilitation processes at a zinc
and lead ore mining and processing area, J. Environ. Manage.,
132 (2014) 250–256.
- G.Q. Shen, Y.T. Lu, Q.X. Zhou, J.B. Hong, Interaction of
polycyclic aromatic hydrocarbons and heavy metals on soil
enzyme, Chemosphere, 61 (2005) 1175–1182.
- X.-F. Hu, Y. Jiang, Y. Shu, X. Hu, L.M. Liu, F. Luo, Effects of
mining wastewater discharges on heavy metal pollution and
soil enzyme activity of the paddy fields, J. Geochem. Explor.,
147 (2014) 139–150.
- J.S. Yang, F.L. Yang, Y. Yang, G.L. Xing, C.P. Deng, Y.T. Shen,
L.Q. Luo, Z.B. Li, H.L. Yuan, A proposal of “core enzyme”
bioindicator in long-term Pb-Zn ore pollution areas based on
topsoil property analysis, Environ. Pollut., 213 (2016) 760–769.