Research Journal of Medical Sciences

Year: 2016
Volume: 10
Issue: 4
Page No. 275 - 281

Optimizing Subsurface Flow Wetland Using Pamis and Escoria Stone

Authors : M.O. Dovlat Abadi, A Rahmani Sani and M. Borghei

References

Brix, H. and C.A. Arias, 2005. The use of vertical flow constructed wetlands for on-site treatment of domestic wastewater: New Danish guidelines. Ecol. Eng., 25: 491-500.
CrossRef  |  Direct Link  |  

Bruch, I., J. Fritsche, D. Banninger, U. Alewell and M. Sendelov et al., 2011. Improving the treatment efficiency of constructed wetlands with zeolite-containing filter sands. Bioresour. Technol., 102: 937-941.
Direct Link  |  

Choi, J.H., S.S. Park and P.R. Jaffe, 2006. The effect of emergent macrophytes on the dynamics of sulfur species and trace metals in wetland sediments. Environ. Pollut., 140: 286-293.
Direct Link  |  

DeBusk, W.F., 1999. Wastewater treatment wetlands: Applications and treatment efficiency. Masters Thesis, University of Florida Cooperative Extension Service, Institute of Food and Agriculture Sciences, Gainesville, Florida.

Headley, T.R., E. Herity and L. Davison, 2005. Treatment at different depths and vertical mixing within a 1-m deep horizontal subsurface-flow wetland. Ecol. Eng., 25: 567-582.
Direct Link  |  

Huett, D.O., S.G. Morris, G. Smith and N. Hunt, 2005. Nitrogen and phosphorus removal from plant nursery runoff in vegetated and unvegetated subsurface flow wetlands. Water Res., 39: 3259-3272.
Direct Link  |  

Karim, M.R., F.D. Manshadi, M.M. Karpiscak and C.P. Gerba, 2004. The persistence and removal of enteric pathogens in constructed wetlands. Water Res., 38: 1831-1837.
Direct Link  |  

Mehrdadi, N., A. Rahmani, A.A. Azimi and A. Torabian, 2009. Study of operation subsurface flow wetland in batch flow system for municipal wastewater treatment. Asian J. Chem., 21: 5245-5250.
Direct Link  |  

Mehrian, S.M. and S.Z. Mehrian, 2015. Modification of Space Truss Vibration using Piezoelectric Actuator. In: Applied Mechanics and Materials. Adrian, O. (Ed.). Trans Tech Publications, Switzerland, Europe, pp: 246-252.

Mitsch, W.J. and J.G. Gosselink, 2000. The value of wetlands: Importance of scale and landscape setting. Ecol. Econ., 35: 25-33.
CrossRef  |  Direct Link  |  

Nelson, M., M. Finn, C. Wilson, B. Zabel and M.V. Thillo et al., 1999. Bioregenerative recycling of wastewater in Biosphere 2 using a constructed wetland: 2-year results. Ecol. Eng., 13: 189-197.
Direct Link  |  

Sani, A.R., N. Mehrdadi, A. Azimi and M. Delara, 2013. Pollutant removal from municipal sewage by optimized anaerobic pond and subsurface flow wetland. Asian J. Chem., 25: 1177-1181.
Direct Link  |  

Stein, O.R., J.A. Biederman, P.B. Hook and W.C. Allen, 2006. Plant species and temperature effects on the k-C first-order model for COD removal in batch-loaded SSF wetlands. Ecol. Eng., 26: 100-112.
Direct Link  |  

Tanner, C.C., M.L. Nguyen and J.P.S. Sukias, 2005. Nutrient removal by a constructed wetland treating subsurface drainage from grazed dairy pasture. Agric. Ecosyst. Environ., 105: 145-162.
Direct Link  |  

Vymazal, J. and L. Kropfelova, 2009. Removal of organics in constructed wetlands with horizontal sub-surface flow: A review of the field experience. Sci. Total Environ., 407: 3911-3922.
Direct Link  |  

Vymazal, J., 2007. Removal of nutrients in various types of constructed wetlands. Sci Total Environ., 380: 48-65.
CrossRef  |  Direct Link  |  

Vymazal, J.K.L., 2008. Wastewater Treatment in Constructed Wetlands with Horizontal Sub-Surface Flow. Springer, Dordrecht, Netherlands,.

Design and power by Medwell Web Development Team. © Medwell Publishing 2024 All Rights Reserved