References
- A. Yalcuk, A. Ugurlu, Comparison of horizontal and vertical
constructed wetland systems for landfill leachate treatment,
Bioresour. Technol., 100 (2009) 2521–2526.
- E. Smith, R. Gordon, A. Madani, G. Stratton, Year-round
treatment of dairy wastewater by constructed wetlands in
Atlantic Canada, Wetlands, 26 (2006) 349–357.
- S. Kouki, F. Mhiri, N. Saidi, S. Belaid, A. Hassen, Performances
of a constructed wetland treating domestic wastewater during
a macrophytes life cycle, Desalination, 246 (2009) 452–467.
- A. Yalcuk, N.B. Pakdil, S.Y. Turan, Performance evaluation on
the treatment of olive mill waste water in vertical subsurface
flow constructed wetlands, Desalination, 262 (2010) 209–214.
- T.Y. Chen, C.M. Kao, T.Y. Yeh, H.Y. Chien, A.C. Chao,
Application of constructed wetland for industrial wastewater
treatment : a pilot scale-study Chemosphere, 64 (2006) 497–502.
- Z.F. Yang, S.K. Zheng, J.J. Chen, M. Sun, Purification of nitraterich
agricultural runoff by a hydroponic system, Bioresour.
Technol., 99 (2008) 8049–8053.
- O.C. Turker, H. Bocuk, A. Yakar, The phytoremediation ability
of a polyculture constructed wetland to treat boron mine
effluent, J. Hazard. Mater., 252–253 (2013) 132–141.
- E. Wojciechowska, M. Gajewska, H. Obarska-Pempkowiak,
Treatment of landfill leachate by constructed wetlands: three
case studies, Polish J. Environ. Stud., 19 (2010) 643–650.
- D.A. Hammer, Guidelines for Design, Construction and
Operation of Constructed Wetland for Livestock Wastewater
Treatment, P.J. DuBowy, R.P. Reaves, Eds., Proc. Workshop
on Constructed Wetlands for Animal Waste Management,
Lafayette, 1994, pp. 155–181.
- C. Ramprasad, L. Philip, Surfactant and personal care products
removal in pilot scale horizontal and vertical flow constructed
wetlands while treating greywater, Chem. Eng. J., 284 (2016)
458–468.
- P.F. Cooper, The performance of vertical flow constructed
wetland systems with special reference to the significance
of oxygen transfer and hydraulic loading rates, Water Sci.
Technol., 5 (2005) 81–90.
- J. Vymazal, T. Březinová, The use of constructed wetlands for
removal of pesticides from agricultural runoff and drainage: a
review, Environ. Int., 75 (2015) 11–20.
- H. Brix, G.A. Moshiri, Constructed Wetlands for Water Quality
Improvement, Wastewater Treatment in Constructed Wetlands:
System Design, Removal Processes and Treatment Performance,
CRC Press Inc., 1993.
- S. Wu, P. Kuschk, H. Brix, J. Vymazal, R. Dong, Development
of constructed wetlands in performance intensification for
wastewater treatment: a nitrogen and organic matter targeted
review, Water Res., 57 (2014) 40–55.
- G. Sun, Y.Q. Zhao, S.J. Allen, An alternative arrangement
of gravel media in tidal flow reed beds treating pig farm
wastewater, Water Air Soil Pollut., 182 (2007) 13–19.
- T. Saeed, G. Sun, A comparative study on the removal of
nutrients and organic matter in wetland reactors employing
organic media, Chem. Eng. J., 171 (2011) 439–447.
- T. Saeed, G. Sun, A lab-scale study of constructed wetlands with
sugarcane bagasse and sand media for the treatment of textile
wastewater, Bioresour. Technol., 128 (2013) 438–447
- G. Sun, K. Heimann, The Concept of Ecosystem Manipulation:
What Is It, and How Does It Work in Bioremediation? In:
6th International Conference on Environmental Science and
Technology, June, Houston, USA, Paper 913, 2012, pp. 25–29.
- L. Cui, Y. Ouyang, Q. Lou, F. Yang, Y. Chen, W. Zhu, S. Luo,
Removal of nutrients from wastewater with Canna indica L. under different vertical-flow constructed wetland conditions,
Ecol. Eng., 36 (2010) 1083–1088.
- A. Białowiec, W. Janczukowicz, P.F. Randerson, Nitrogen
removal from wastewater in vertical flow constructed wetlands
containing LWA/gravel layers and reed vegetation, Ecol. Eng.,
37 (2011) 897–902.
- Y.Q. Zhao, A.O. Babatunde, Y.S. Hu, J.L.G. Kumar, X.H.
Zhao, Pilot field-scale demonstration of a novel alum sludgebased
constructed wetland system for enhanced wastewater
treatment, Process Biochem., 46 (2011) 278–283.
- H.C. Tee, P.E. Lim, C.E. Seng, M. Nawi, Newly developed baffled
subsurface flow constructed wetland for the enhancement of
nitrogen removal, Bioresour. Technol., 104 (2012) 235–242.
- UN-HABITAT, Constructed Wetlands Manual. UN-HABITAT
Water for Asian Cities Programme Nepal, Kathmandu, 2008.
- G. Hua, Y. Zeng, Z. Zhoa, K. Cheng, G. Chen, Applying a resting
operation to alleviate bioclogging in vertical flow constructed
wetlands: an experimental lab evaluation, Environ. Manage.,
136 (2014) 47–53.
- APHA, AWWA and WPCF, Standard Methods for the
Examination of Water and Wastewater, 20th ed., American
Public Health Association, Washington, D.C., 1998.
- Metcalf and Eddy Inc. Wastewater Engineering, Treatment
and Reuse, McGraw-Hill Companies, Inc., New York, 2004, pp.
545–1026.
- G. Sun, K.R. Gray, A.J. Biddlestone, S.J. Allen, D.J. Cooper,
Effect of effluent recirculation on the performance of a reed
bed system treating agricultural wastewater, Process Biochem.,
39 (2003) 351–357.
- R.H. Kadlec, R.L. Knight, Treatment Wetlands, Lewis Publishers,
Boca Raton, La Florida, pp. 373–440.
- United States Environmental Protection Agency, Constructed
Wetlands Treatment of Municipal Wastewaters, September
1999.
- S. Saumya, S. Akansha, J. Rinaldo, M.A. Jayasri, K. Suthindhiran,
Construction and evaluation of prototype subsurface flow
wetland planted with Heliconia angusta for the treatment of
synthetic greywater, J. Cleaner Prod., 91 (2015) 235–240
- TERI and TVPL, Environmental Building Initiative for Greater
Hyderabad by.ver 1.2, 2010.
- L. Yang, H.T. Chang, M.L. Huang, Nutrient removal in gravel
and soil based microcosms with and without vegetation, Ecol.
Eng., 18 (2001) 91–105.
- S.A. Ong, K. Uchiyama, D. Inadama, Y. Ishida, K. Yamagiwa,
Performance evaluation of laboratory scale up-flow constructed
wetlands with different designs and emergent plants, Bioresour.
Technol., 101 (2010) 7239–7244.
- L. Songliu, H. Hongying, S. Yingxue, Y. Jia, Effect of carbon
source on the denitrification in constructed wetlands, J. Environ.
Sci., 21 (2009) 1036–1043.
- J.T. Watson, S.C. Reed, R.H. Kadlec, R.L. Knight, A.E
Whitehouse, Performance Expectations and Loading Rates
for Constructed Wetlands, D.A Hammer, Ed., Constructed
Wetlands for Wastewater Treatment. Municipal, Industrial
and Agricultural, Lewis Publishers, Chelsea, Michigan, 1989,
pp. 319–358.
- H. Wand, G. Vacca, P. Kuschk, M. Kruger, M. Kastner, Removal
of bacteria by filtration in planted and non-planted sand
columns, Water Res., 41 (2007) 159– 167.
- C.A. Papadimitriou, A. Papatheodoulou, V. Takavakoglou,
A. Zdragas, P. Samaras, G.P. Sakellaropoulos, M. Lazaridou,
G. Zalidis, Investigation of protozoa as indicators of wastewater
treatment efficiency in constructed wetlands, Desalination,
250 (2010) 378–382.
- O. Decamp, A. Warren, Investigation of Escherichia coli
removal in various designs of subsurface flow wetlands used
for wastewater treatment, Ecol. Eng., 14 (2000) 293–299.
- J. Zhang, C. Feng, S. Hong, H. Hao, Y. Yang, Behaviour of solid
carbon sources for biological denitrification in groundwater
remediation, Water Sci. Technol., 65 (2012) 1696–1704.
- T.T. Hien, H.D. Park, H.Y. Jo, S.T. Yun, N.T. Minh, Influence of
different substrates in wetland soils on denitrification, Water
Air Soil Pollut., 215 (2011) 549–560.
- J. Fan, J. Zhang, W. Guo, S. Liang, H. Wu, Enhanced longterm
organics and nitrogen removal and associated microbial
community in intermittently aerated subsurface flow
constructed wetlands, Bioresour. Technol., 214 (2016) 871–875.