References

  1. D. Boskou, Olive Oil - Chemistry and Technology, Academic Press and AOCS Press, Greece, 2006.
  2. J.L. Quiles, Olive Oil and Health, CABI Publishing, United Kingdom, 2006.
  3. International Olive Council, 2019. Available at: http://www.internationaloliveoil.org/estaticos/view/131-world-olive-oil- Figures
  4. J.A. Alburquerque, J. Gonzálvez, D. García, J. Cegarra, Agrochemical characterisation of “alperujo”, a solid by-product of the two-phase centrifugation method for olive oil extraction, Bioresour. Technol., 91 (2004) 195–200.
  5. A. Roig, M.L. Cayuela, M.A. Sánchez-Monedero, An overview on olive mill wastes and their valorisation methods, Waste Manage., 26 (2006) 960–969.
  6. C.M. Galanakis, Olive Mill Waste: Recent Advances for Sustainable Management, Academic Press, Greece, 2017.
  7. M. Del Bubba, L. Checchini, C. Pifferi, L. Zanieri, L. Lepri, Olive mill wastewater treatment by a pilot-scale subsurface horizontal flow (SSF-h) constructed wetland, Ann. Chim., 94 (2004) 875–887.
  8. M. Achak, A. Hafidi, N. Ouazzani, S. Sayadi, L. Mandi, Low cost biosorbent “banana peel” for the removal of phenolic compounds from olive mill wastewater: kinetic and equilibrium studies, J. Hazard. Mater., 166 (2009a) 117–125.
  9. M. Achak, L. Mandi, N. Ouazzani, Removal of organic pollutants and nutrients from olive mill wastewater by a sand filter, J. Environ. Manage., 90 (2009b) 2771–2779.
  10. T. El Moussaoui, A. Kessraoui, N. Ouazzani, M. Seffen, L. Mandi, Synthetic urban wastewater treatment by an activated sludge reactor: evolution of bacterial biomass and purifying efficiency, J. Mater. Environ. Sci., 9 (2018) 817–827.
  11. Y. Jaouad, M. Villain, N. Ouazzani, L. Mandi, B. Marrot, Biodegradation of olive mill wastewater in a membrane bioreactor: acclimation of the biomass and constraints, Desal. Water Treat., 57 (2016) 8109–8118.
  12. Y. Jaouad, M. Villain-Gambier, L. Mandi, B. Marrot, N. Ouazzani, Key process parameters involved in the treatment of olive mill wastewater by membrane bioreactor, Environ. Technol., 40 (2019) 3162–3175.
  13. M. Achak, N. Ouazzani, L. Mandi, Élimination des polluants organiques des effluents de l’industrie oléicole par combinaison d’un filtre à sable et un lit planté, Rev. Des Sci., 24 (2011) 35–51.
  14. M. Achak, W. Boumya, N. Ouazzani, L. Mandi, Preliminary evaluation of constructed wetlands for nutrients removal from olive mill wastewater (OMW) after passing through a sand filter, Ecol. Eng., 136 (2019) 141–151.
  15. H. Brix, T. Koottatep, C.H. Laugesen, Wastewater treatment in tsunami affected areas of Thailand by constructed wetlands, Water Sci. Technol., 56 (2007) 69–74.
  16. I.E. Kapellakis, N.V. Paranychianakis, K.P. Tsagarakis, A.N. Angelakis, Treatment of olive mill wastewater with constructed wetlands, Water, 4 (2012) 260–271.
  17. E. Herouvim, C.S. Akratos, A. Tekerlekopoulou, D.V. Vayenas, Treatment of olive mill wastewater in pilot-scale vertical flow constructed wetlands, Ecol. Eng., 37 (2011) 931–939.
  18. P. Grafias, N.P. Xekoukoulotakis, D. Mantzavinos, E. Diamadopoulos, Pilot treatment of olive pomace leachate by verticalflow constructed wetland and electrochemical oxidation: an efficient hybrid process, Water Res., 44 (2010) 2773–2780.
  19. A.V. Dordio, A.J.P. Carvalho, Organic xenobiotics removal in constructed wetlands, with emphasis on the importance of the support matrix, J. Hazard. Mater., 252–253 (2013) 272–292.
  20. Y. Yang, Y. Zhao, R. Liu, D. Morgan, Global development of various emerged substrates utilized in constructed wetlands, Bioresour. Technol., 261 (2018) 441–452.
  21. J.A. Alburquerque, J. Gonzálvez, D. García, J. Cegarra, Agrochemical characterization of “alperujo”, a solid by-product of the two-phase centrifugation method for olive oil extraction, Bioresour. Technol., 91 (2004) 195–200.
  22. G.P. Kofa, S. NdiKoungou, G.J. Kayem, R. Kamga, Adsorption of arsenic by natural pozzolan in a fixed bed: determination of operating conditions and modeling, J. Water Process Eng., 6 (2015) 166–173.
  23. J.M. Sieliechi, B.S. Lartiges, S.K. Ndi, R.K. amga, G.J. Kayem, Mobilization of heavy metals from natural pozzolan by humic acid: implications for water and environment, Int. J. Environ., 2 (2012) 11–15.
  24. C. DuPoldt, R. Edwards, L. Garber, B. Isaacs, J. Lapp, T. Murphy, G. Rider, M. Sayers, C. Takita, H. Webster, A Handbook of Constructed Wetlands. A Guide to Creating Wetlands for: Agricultural Wastewater, Domestic Wastewater, Coal Mine Drainage, Stormwater in the Mid-Atlantic region, US Government Publishing Office, Washington, DC, 2000.
  25. C.S.C. Calheiros, A.O.S.S. Rangel, P.M.L. Castro, Treatment of industrial wastewater with two-stage constructed wetlands planted with Typha latifolia and Phragmites australis, Bioresour. Technol., 100 (2009) 3205–3213.
  26. A.C. Barbera, G.L. Cirelli, V. Cavallaro, I. Di Silvestro, P. Pacifici, V. Castiglione, A. Toscano, M. Milani, Growth and biomass production of different plant species in two different constructed wetland systems in Sicily, Desalination, 246 (2009) 129–136.
  27. A. Toscano, A. Marzo, M. Milani, G.L. Cirelli, S. Barbagallo, Comparison of removal efficiencies in Mediterranean pilot constructed wetlands vegetated with different plant species, Ecol. Eng., 75 (2015) 155–160.
  28. C.A. Prochaska, A.I. Zouboulis, Removal of phosphates by pilot vertical-flow constructed wetlands using a mixture of sand and dolomite as substrate, Ecol. Eng., 26 (2006) 293–303.
  29. A. Stefanakis, C.S. Akratos, V.A. Tsihrintzis, Vertical Flow Constructed Wetlands: Eco-engineering Systems for Wastewater and Sludge Treatment, Elsevier, Amsterdam, 2014.
  30. AFNOR, Recueil de Norme Française: Eau, Méthodes D’essai, 2nd ed., Paris Édition, Paris, 1997.
  31. J. Rodier, L’analyse de l’eau, Eaux Naturelles, Eaux Résiduaires, Eau de Mer, 8ème édition, Dunod, Ed., Collectif, Jean Rodier, Livres, Fr. 8ème Édition, Paris, 1996.
  32. J.J. Macheix, A. Fleuriet, J. Billot, Fruit Phenolics, CRC Press, Boca Raton, FL, 1990.
  33. Y. Jemmal, N. Zari, M. Maaroufi, Experimental characterization of siliceous rocks to be used as filler materials for air-rock packed beds thermal energy storage systems in concentrated solar power plants, Sol. Energy Mater. Sol. Cells, 171 (2017) 33–42.
  34. G. Espinoza-Hijazin, Á. Paul, M. Lopez, Concrete containing natural pozzolans: new challenges for internal curing, J. Mater. Civ. Eng., 24 (2012) 981–988.
  35. A.C. Caputo, F. Scacchia, P.M. Pelagagge, Disposal of by-products in olive oil industry: waste-to-energy solutions, Appl. Therm. Eng., 23 (2003) 197–214.
  36. N. Azbar, A. Bayram, A. Filibeli, A. Muezzinoglu, F. Sengul, A. Ozer, A review of waste management options in olive oil production, Crit. Rev. Environ. Sci. Technol., 34 (2004) 209–247.
  37. M. Niaounakis, C.P. Halvadakis, Olive Processing Waste Management, Literature Review and Patent Survey, 2nd ed., Pergamon, European Patent Office, Rijswijk, Netherlands, 2006.
  38. S.E.E.E, State Secretariat at the Ministry of Energy, Mines, Water and Environment, Charge of Water and Environment, Kingdom of Morocco, Water Quality Standards for Irrigation, 2007. Available at: http://www.eau-tensift.net/fileadmin/user_ files/pdf/publications/3_Irrigation.pdf
  39. 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.
  40. J. Vymazal, L. Kropfelová, Growth of Phragmites australis and Phalaris arundinacea in constructed wetlands for wastewater treatment in the Czech Republic, Ecol. Eng., 25 (2005) 606–621.
  41. J. Vymazal, H. Brix, P.F. Cooper, R. Haberl, R. Perfler, J. Laber, Constructed Wetlands for Wastewater Treatment in Europe, J. Vymazal, H. Brix, P.F. Coope, M.B. Green, R. Haberl, Eds., Removal Mechanisms and Types of Constructed Wetlands, Backhuys Publishers, Leiden, 1998.
  42. L. Mandi, K. Bouhoum, N. Ouazzani, Application of constructed wetlands for domestic wastewater treatment in an arid climate, Water Sci. Technol., 31 (1998) 379–387.
  43. R.H. Kadlec, R. Knight, J. Vymazal, H. Brix, P. Cooper, R. Haberl, Constructed Wetlands for Pollution Control: Processes, Performance, Design and Operation, International Water Association, London, 2000.
  44. J.P. Robins, J. Rock, D.F. Hayes, F.C. Laquer, Nitrate removal for platte valley, nebraska synthetic groundwater using a constructed wetland model, Environ. Technol., 21 (2000) 653–659.
  45. Y. Chen, Y. Wen, Q. Zhou, J. Huang, J. Vymazal, P. Kuschk, Sulfate removal and sulfur transformation in constructed wetlands: the roles of filling material and plant biomass, Water Res., 102 (2016) 572–581.
  46. K. Sleytr, A. Tietz, G. Langergraber, R. Haberl, Investigation of bacterial removal during the filtration process in constructed wetlands, Sci. Total Environ., 380 (2007) 173–180.
  47. A. Torrens, P. Molle, C. Boutin, M. Salgot, Removal of bacterial and viral indicator in vertical flow constructed wetlands and intermittent sand filters, Desalination, 246 (2009) 169–178.
  48. E.C. Barrett, M.D. Sobsey, C.H. House, K.D. White, Microbial indicator removal in onsite constructed wetlands for wastewater treatment in the southeastern US, Water Sci. Technol., 44 (2001) 177–182.
  49. L. Kong, Y. Bin Wang, L.N. Zhao, Z.H. Chen, Enzyme and root activities in surface-flow constructed wetlands, Chemosphere, 76 (2009) 601–608.
  50. H. Wand, G. Vacca, P. Kuschk, M. Krüger, M. Kästner, Removal of bacteria by filtration in planted and non-planted sand columns, Water Res., 41 (2007) 159–167.
  51. C.C. Tanner, J.S. Clayton, M.P. Upsdell, Effect of loading rate and planting on treatment of dairy farm wastewaters in constructed wetlands-II. Removal of nitrogen and phosphorus, Water Res., 29 (1995) 27–34.
  52. H. Brix, Do macrophytes play a role in constructed treatment wetlands?, Water Sci. Technol., 35 (1997) 11–17.
  53. E. Tsagaraki, H.N. Lazarides, K.B. Petrotos, Olive Mill Wastewater Treatment, V. Oreopoulou, W. Russ, Utilization of By-Products and Treatment of Waste in the Food Industry, Springer, Boston, MA, 2007.
  54. R.L. Sinsabaugh, Phenol oxidase, peroxidase and organic matter dynamics of soil, Soil Biol. Biochem., 42 (2010) 391–404.
  55. N. Asses, L. Ayed, H. Bouallagui, S. Sayadi, M. Hamdi, Biodegradation of different molecular-mass polyphenols derived from olive mill wastewaters by Geotrichum candidum, Int. Biodeterior. Biodegrad., 63 (2009) 407–413.
  56. G. Tziotzios, S. Michailakis, D.V. Vayenas, Aerobic biological treatment of olive mill wastewater by olive pulp bacteria, Int. Biodeterior. Biodegrad., 60 (2007) 209–214.
  57. R. Mutabaruka, K. Hairiah, G. Cadisch, Microbial degradation of hydrolysable and condensed tannin polyphenol-protein complexes in soils from different land-use histories, Soil Biol. Biochem., 39 (2007) 1479–1492.