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Articles

Phytoremediation of domestic wastewater using a hybrid constructed wetland in mountainous rural area

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References

  • Abissy M, Mandi L. 1999. Comparative study of wastewater purification efficiencies of two emergent helophytes: Typha latifolia and Juncus subulatus under arid climate. J Water Sci Technol 39(10–11):123–126.
  • AFNOR. 1997. Recueil de normes françaises: eau, méthodes d'essai. 2ème édition, Paris.
  • APHA. 1998. Standard methods for the examination of water and wastewater, 20th ed. Washington, DC: American Public Health Association, American Water Works Association, and Water Environment Federation.
  • Ávila C, Salas JJ, Martín I, Aragón C, García J. 2013. Integrated treatment of combined sewer wastewater and stormwater in a hybrid constructed wetland system in southern Spain and its further reuse. J Ecol Eng 50:13–20.
  • Brix H. 1994. Functions of macrophytes in constructed wetlands. J Water Sci Technol 29(4):71–78.
  • Calheiros SC, Rangel OSS, Castro ML. 2014. Constructed wetlands for tannery wastewater treatment in Portugal: ten years of experience. Int J Phytorem 16(9):859–870.
  • Drizo A, Frost CA, Smith KA, Grace J. 1997. Phosphate and ammonium removal by constructed wetlands with horizontal subsurface flow using shale as a substrate. J Water Sci Technol 35:95–102.
  • Environmental Protection Agency (EPA). 2000. Manual, U.S. Constructed Wetlands Treatment of Municipal Wastewaters. Office of Research and Development, Cincinnati, OH. EPA/625/R-99/010.
  • Fahd K, Martín I, Salas JJ. 2007. The Carrión de losCéspedes Experimental Plant and the Technological Transfer Centre: urban wastewater treatment experimental platforms for the small rural communities in the Mediterranean area. J Desalin 215:12–21.
  • Garfí M, Pedescoll A, Bécares E, Hijosa-Valsero M, Ricardo Sidrach-Cardona R, Joan García J. 2012. Effect of climatic conditions season and wastewater quality on contaminant removal efficiency of two experimental constructed wetlands in different regions of Spain. J Sci Total Environ 437:61–67.
  • Gersberg RM, Lyon SR, Brenner R, Elkins BV. 1987. Fate of viruses in artificial wetlands. Appl Environ Microbiol 53:731–6.
  • Green M, Friedler E, Safrai I. 1997. Investigation of alternative method for nitrification in constructed wetlands. J Water Sci Technol 35:67–70.
  • Hench KR, Bissonnette GK, Sexstone AJ, Coleman JG, Garbutt K, Skousen JG. 2003. Fate of physical, chemical, and microbial contaminants in domestic wastewater following treatment by small constructed wetlands. J Water Res 37:921–927.
  • Hijosa-Valsero M, Matamoros V, Martín-Villacorta J, Bécares E, Bayona JM. 2010. Assessment of full-scale natural systems for the removal of PPCPs from wastewater in small communities. J Water Res 44:1429–1439.
  • Kadlec RH, Axler R, Mc Carthy B, Henneck J. 2003. Subsurface treatment wetlands in the cold climate of Minnesota. In: Mander Û, Jenssen P, editors. Constructed wetlands for wastewater treatment in cold climates. Southampton (UK): WIT Press. p. 19–52.
  • Kadlec RH, Wallace SD. 2008. Treatment wetlands, 2nd ed. Boca Raton (FL): CRC Press.
  • Kato K, Inoue T, Ietsugu H, Sasaki H, Harada J, Kitagawa K, Sharma PK. 2013. Design and performance of hybrid constructed wetland systems for high-content wastewater treatment in the cold climate of Hokkaido, northern Japan. J Water Sci Technol 68(7):1468–1476.
  • Koukia S, M'hirib F, Saidia N, Belaïdb S, Hassena A. 2009. Performances of a constructed wetland treating domestic wastewaters during a macrophytes life cycle. J Desalin 246:452–467.
  • Laaffat J, Ouazzani N, Mandi L. 2015. The evaluation of potential purification of a horizontal subsurface flow constructed wetland treating grey water in semi-arid environment. J Process Saf Environ Prot 95:86–92.
  • Lahbabi A, Anouar K. 2009. Rural drinking water supply, the proper management of greywater and the promotion of hygiene practices with a view to reducing the prevalence of water-borne diseases and improving the quality of life of the rural populations served in Morocco. Report, 66p.
  • Lesage E, Rousseau DPL, Meers E, Van de Moortel AMK, Du Laing G, Tack FMG, De Pauw N, Verloo MG. 2007. Accumulation of metals in the sediments and reed biomass of a combined constructed wetland treating domestic wastewater. J Water Air Soil Pollut 183:253–264.
  • Llorens E, Matamoros V, Domingo V, Bayona JM, García J. 2009. Water quality improvement in a full-scale tertiary constructed wetland: effects on conventional and specific organic contaminants. J Sci Total Environ 407:2517–24.
  • Mandi L, Bouhoum Kh, Asmama S, Schwartzbrod J. 1996. Wastewater treatment by reed beds. An experimental approach. J Water Res 30(9):2009–2016.
  • Mandi L, Bouhoum K, Ouazzani N. 1998. Application of constructed wetlands for domestic wastewater treatment in an arid climate. J Water Sci Technol 38:379–387.
  • Mc Carey AED, Anderson BC, Martin D. 2004. Monitoring spatial and temporal variations of phosphorus within a cold climate subsurface flow constructed wetland. J Environ Eng Sci 3:51–60.
  • Molle P, Prost-Boucle S, Liénard A. 2008. Potential for total nitrogen removal by combining vertical flow and horizontal flow constructed wetlands: a full-scale experiment study. J Ecol Eng 34:23–29.
  • Moroccan Standards 03.7.001. 2006. Quality of water for human consumption, official Bulletin; 5404.
  • Moroccan Standards 08.0.124. 2006. Food Microbiology - Enumeration of thermotolerant Coliforms Colony count at 44°C - Routine method; 8.
  • Moroccan Standards. 2006. Moroccan standard approved by order of the Minister of Industry, Trade and Economy Last Level. Moroccan Industrial Standardization Service.
  • Noyes R. 1994. Unit operations in environmental engineering. Park Ridge (NJ): Noyes Publications. p. 40–43.
  • Onur CT, Cengiz T, Harun B, Anıl Y. 2014. Constructed wetlands as green tools for management of boron mine wastewater. Int J Phytorem 16(6):537–553, doi: 10.1080/15226514.2013.798620.
  • PNAR. 2013. Projet de programme national d'assainissement en milieu rurale, Septembre 2013. Étude d'assainissement en milieu rural au Maroc, Rapport de phase 3: formulation. Programme National d'Assainissement Liquide et d'Epuration des Eaux Usées. Royaume du MAROC. p. 17.
  • Ranieri E, Gikas P, Tchobanoglous G. 2013. BTEX removal in pilot-scale horizontal subsurface flow constructed wetlands. J Desalin Water Treat 51:3032–3039.
  • Reed SC, Crites RW, Middlebrooks EJ. 1995. Wetland system. Natural systems for waste management and treatment, 2nd ed. New York: McGraw-Hill.
  • Rodier J. 1996. L'analyse de l'eau: eaux naturelles, eaux résiduaires, eau de mer 7éme édition. Dunod, Bordas, Paris. p. 1365.
  • Shahaf G, Marom S. 2001. Learning in networks of cortical neurons. J Neurosci 21:8782–8788.
  • Sohair AE, Golinielli G, Enas MAT, Mohamed SH. 2013. Municipal wastewater treatment in horizontal and vertical flows constructed wetlands. J Ecol Eng 61:460–468.
  • Tiglyene S, Jaouad A, Mandi L. 2008. Mobilité et spéciation du chrome dans un système à Phragmites australis de traitement des eaux usées de tannerie. Revue des Sciences de l'Eau 21(1):1–16.
  • US EPA. 2006. Method 1682: Salmonella in Sewage Sludge (Biosolids) by Modified Semisolid Rappaprot-Vassiliadis (MSRV) Medium. Volume EPA/821/R-06/14. U.S. EPA Office of Water (4303T), NW, Washington, DC.
  • Vijayan A, Mohan GS. 2016. Prediction of Effluent Treatment Plant Performance in a Diary Industry Using Artificial Neural Network Technique. J Civil Environ Eng 6:6. doi: 10.4172/2165-784X.1000254.
  • Vymazal J. 2005. Horizontal sub-surface flow and hybrid constructed wetlands systems for wastewater treatment. J Ecol Eng 25:478–490.
  • Vymazal J. 2007. Removal of nutrients in various types of constructed wetlands. J Sci Total Environ 380:48–65.
  • Vymazal J. 2011. Constructed wetlands for wastewater treatment: five decades of experience. J Environ Sci Technol 45(1):61–69.
  • Vymazal J. 2013. The use of hybrid constructed wetlands for wastewater treatment with special attention to nitrogen removal: A review of a recent development. J Water Res 47:4795–4811.
  • Wallace S, Kadlec R. 2005. BTEX degradation in a cold-climate wetland system. J Water Sci Technol 51:165–171.
  • Zhai J, Xiao HW, Kujawa-Roeleveld K, He Q, Kerstens SM. 2011. Experimental study of a novel hybrid constructed wetland for water reuse and its application in Southern China. J Water Sci Technol 64(11):2177–2184.
  • Zhang D, Gersberg RM, Keat TS. 2009. Review constructed wetlands in China. Ecol Eng 35:1367–1378.
  • Zhao Y, Hui Z, Chao X, Nie E, Ji Li H, He J, Zheng Z. 2011. Efficiency of two-stage combinations of subsurface vertical down-flow and up-flow constructed wetland systems for treating variation in influent C/N ratios of domestic wastewater. J Ecol Eng 37:1546–1554.
  • Zidan AA, Rashed AA, Hatata AY, Abd El-Hady MA. 2015. Artificial neural networks to predict wastewater treatment in different media hssf constructed wetlands. J Eighteenth International Water Technology Conference (IWTC18).
  • Züst B, Schِnborn A. 2003. Constructed wetlands for wastewater treatment in cold climates: planted soil filter Schattweid–13 years' experience. In: Mander Ü, Jenssen P, editors. Constructed wetlands for wastewater treatment in cold climates. Southampton (UK): WIT Press. p. 53–68.

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