References

  1. W.G. Miller, Integrated concepts in water reuse: managing global water needs, Desalination, 187 (2006) 65–75.
  2. Y. Sun, Z. Chen, G. Wu, Q. Wu, F. Zhang, Z. Niu, H.Y. Hu, Characteristics of water quality of municipal wastewater treatment plants in China: implications for resources utilization and management, J. Cleaner Prod., 131 (2016) 1–9.
  3. A. Lopez, M. Vurro, Planning agricultural wastewater reuse in southern Italy: the case of Apulia Region, Desalination, 218 (2008) 164–169.
  4. G.L. Cirelli, S. Consoli, V. Di Grande, Long-term storage of reclaimed water: the case studies in Sicily (Italy), Desalination, 218 (2008) 62–73.
  5. I. Ruiz-Rosa, F.J. García-Rodríguez, J. Mendoza-Jimenez, Development and application of a cost management model for wastewater treatment and reuse processes, J. Cleaner Prod., 113 (2016) 299–310.
  6. J. Rice, A. Wutich, D.D. White, P. Westerhoff, Comparing actual de facto wastewater reuse and its public acceptability: a three city case study, Sustain. Cities Soc., 27 (2016) 467–474
  7. G. Oron, L. Gillerman, L. Alcalde-Sanz, Y., Manor, A. Bick, M. Salgot, Risk Management During Effluent Application for Irrigation, Environmental Indicators, Springer, Dordrecht, 2015, pp. 677–693.
  8. M. Juanico, G. Shelef, The performance of stabilization reservoirs as a function of design and operation parameters, Water Sci. Technol., 23 (1991) 1509–1516.
  9. M. Juanico, G. Shelef, Design, operation and performance of stabilization reservoir for wastewater irrigation in Israel, Water Res., 28 (1994) 175–186.
  10. E. Friedler, M. Juanico, G. Shelef, Simulation model of wastewater stabilization reservoirs, Ecol. Eng., 20 (2003) 121–145.
  11. G. Mancini, C. Barone, P. Roccaro, F.G.A. Vagliasindi, The beneficial effects of storage on the quality of wastewater for irrigation: a case study in Sicily, Water Sci. Technol., 55 (2007) 417–424.
  12. G. Mannina, G. Mancini, M. Torregrossa, G. Viviani, Wastewater modification processes assessment in a stabilization reservoir, Water Sci. Technol., 57 (2008) 1037–1045.
  13. M. Llorens, J. Sàez, A. Soler, Influence of thermal stratification on the behaviour of a deep wastewater stabilization pond, Water Res., 26 (1992) 569–577.
  14. A. Milstein, M. Feldlite, Relationships between thermal stratification in a secondarily treated wastewater reservoir that stores water for irrigation and filter clogging in the irrigation system, Agric. Water Manage., 153 (2015) 63–70.
  15. E. Kellner, C. Pires, The influence of thermal stratification on the hydraulic behaviour of waste stabilization ponds, Water Sci. Technol., 45 (2002) 41–53.
  16. E. Kellner, J.F.V. Moreira, E.C. Pires, Influence of thermal stratification in useful volume and in hydrodynamic behavior of stabilization pond: theoretical and experimental evaluation, Eng. Sanit. Ambient., 14 (2009) 129–138.
  17. D. Mara, Waste stabilization ponds: past, present and future, Desal. Wat. Treat., 4 (2009) 85–88.
  18. N.F. Bolton, N.J. Cromar, P. Hallsworth, H.J. Fallowfield, A review of the factors affecting sunlight inactivation of microorganisms in waste stabilisation ponds: preliminary results for enterococci, Water Sci. Technol., 61 (2010) 885–890.
  19. A. Abeliovich, A. Vonshak, Factors inhibiting nitrification of ammonia in deep wastewater reservoirs, Water Res., 27 (1993) 1585–1590.
  20. C. Amengual-Morro, G. Moyà Niell, A. Martínez-Taberner, Phytoplankton as bioindicator for waste stabilization ponds, J. Environ. Manage., 95 (2012) S71–S76
  21. I. Dor, M. Raber, Deep wastewater reservoirs in Israel: empirical data for monitoring and control, Water Res., 24 (1990) 1077–1084.
  22. S. Barbagallo, G.L. Cirelli, S. Indelicato, Wastewater reuse in Italy, Water Sci. Technol., 43 (2001) 43–50.
  23. B. Teltsch, Y. Azov, M. Juanico, G. Shelef, Plankton community changes due to the addition of treated effluents to a freshwater reservoir used for drip irrigation, Water Res., 26 (1992) 657–668.
  24. G. Mancini, F.G.A. Vagliasindi, Issues and guidelines for treated wastewater reservoirs design and operation, Int. J. Environ. Pollut., 28 (2006) 128–143.
  25. A. Liran, M. Juanico, G. Shelef, Coliform removal in a stabilization reservoir for wastewater irrigation in Israel, Water Res., 28 (1994) 1305–1314.
  26. A. Milstein, M. Feldlite, Relationships between clogging in irrigation systems and plankton community structure and distribution in wastewater reservoirs, Agric. Water Manage., 140 (2014) 79–86.
  27. M. Juanico, I. Dor, Reservoirs for Wastewater Storage and Reuse, Environmental Science Series, Springer, Germany, 1999.
  28. O. Kfir, A. Tal, A. Gross, E. Adar, The effect of reservoir operational features on recycled wastewater quality, Resour. Conserv. Recycl., 68 (2012) 76–87.
  29. EC, Directive 2000/60/EC of the European Parliament and of the Council of 23 October 2000 Establishing a Framework for Community Action in the Field of Water Policy.
  30. S. Sipala, G. Mancini, F.G.A. Vagliasindi, Development of a webbased tool for the calculation of costs of different wastewater treatment and reuse scenarios, Water Sci. Technol., 3 (2003) 89–96.
  31. V. Lazarova, P. Rouge, V. Sturny, J. Arcangeli, Evaluation of economic viability and benefits of urban water reuse and its contribution to sustainable development, Water Pract. Technol., 1 (2006) 1–11.
  32. P. Fine, R. Halperin, E. Hadas, Economic considerations for wastewater upgrading alternatives: an Israeli test case, J. Environ. Manage., 78 (2006) 163–169.
  33. M. Gomez, F. Plaza, G. Garralon, J. Perez, M.A. Gomez, A comparative study of tertiary wastewater treatment by physicochemical- UV process and macrofiltration–ultrafiltration technologies, Desalination, 202 (2007) 369–376.
  34. C. Tarayre, L. De Clercq, R. Charlier, E. Michels, E. Meers, M. Camargo-Valero, F. Delvigne, New perspectives for the design of sustainable bioprocesses for phosphorus recovery from waste, Bioresour. Technol., 206 (2016) 264–274.
  35. C. Vergara, R. Muñoz, J.L. Campos, M. Seeger, D. Jeison, Influence of light intensity on bacterial nitrifying activity in algal-bacterial photobioreactors and its implications for microalgae-based wastewater treatment, Int. Biodeterior. Biodegrad., 114 (2016) 116–121.
  36. E. Posadas, A. Muñoz, M.C. García-González, R. Muñoz, P.A. García-Encina, A case study of a pilot high rate algal pond for the treatment of fish farm and domestic wastewaters, J. Chem. Technol. Biotechnol.,90 (2015) 1094–1101.
  37. T. Suganya, M. Varman, H.H. Masjuki, S. Renganathan, Macroalgae and microalgae as a potential source for commercial applications along with biofuels production: a biorefinery approach, Renew. Sustain. Energy Rev., 55 (2016) 909–941.
  38. A. Mehrabadi, R. Craggs, M.M. Farid, Wastewater treatment high rate algal ponds (WWT HRAP) for low-cost biofuel production, Bioresour. Technol., 184 (2015) 202–214.
  39. A. Mehrabadi, M.M. Farid, R. Craggs, Potential of five different isolated colonial algal species for wastewater treatment and biomass energy production, Algal Res., 21(2017) 1–8.
  40. Y. Azov, M. Juanico, G. Shelef, Monitoring large scale wastewater reclamation systems – policy and experience, Water Sci. Technol., 26 (1992) 1545–1553.
  41. S. Barbagallo, G. Cirelli, S. Consoli, F. Somma, Wastewater quality improvement through storage: a case study in Sicily, Water Sci. Technol., 47 (2003) 169–176.