References

  1. UN Water, Wastewater Management – A Un-Water Analytical Brief, UN Water, 2015.
  2. W. Ren, Y. Zhong, J. Meligrana, B. Anderson, W.E. Watt, J. Chen, H.L. Leung, Urbanization, land use, and water quality in Shanghai: 1947–1996, Environ. Int., 29 (2003) 649–659.
  3. L.M. Avery, R.A.D. Frazer-Williams, G. Winward, C. Shirley-Smith, S. Liu, F.A. Memon, B. Jefferson, Constructed wetlands for grey water treatment, Ecohydrol. Hydrobiol., 7 (2007) 191–200.
  4. D.M. Ghaitidak, K.D. Yadav, Characteristics and treatment of greywater – a review, Environ. Sci. Pollut. Res., 20 (2013) 2795–2809.
  5. Food and Agriculture Organization of the United Nations (FAO), The State of Food and Agriculture – Innovation in Family Farming, FAO, Rome, 2014.
  6. N. Alexandratos, J. Bruinsma, World Agriculture Towards 2030/2050: The 2012 Revision, ESA Working Paper No. 12-03, FAO, Rome, 2012.
  7. L.J. Whittinghill, D.B. Rowe, The role of green roof technology in urban agriculture, Renew. Agric. Food Syst., 27 (2011) 314–322.
  8. M.J.P.L. dos Santos, Smart cities and urban areas—aquaponics as innovative urban agriculture, Urban For. Urban Greening, 20 (2016) 402–406.
  9. C. Dimitri, L. Oberholtzer, A. Pressman, Urban agriculture: connecting producers with consumers, Br. Food J., 118 (2016) 603–617.
  10. J. Komisar, J. Nasr, M. Gorgolewski, Designing for food and agriculture: recent explorations at Ryerson University, Open House Int., 34 (2009) 61–70.
  11. J.H. Park, S.H. Kim, R.D. Delaune, J.S. Cho, J.S. Heo, Y.S. Ok, D.C. Seo, Enhancement of nitrate removal in constructed wetlands utilizing a combined autotrophic and heterotrophic denitrification technology for treating hydroponic wastewater containing high nitrate and low organic carbon concentrations, Agric. Water Manage., 162 (2015) 1–14.
  12. B. Abbassi, K. Al-Zboon, J. Radaideh, A. Wahbeh, Using constructed wetlands to improve drainage water quality from hydroponics farms, Irrig. Drain., 60 (2011) 370–380.
  13. V. Gagnon, G. Maltais-Landry, J. Puigagut, F. Chazarenc, J. Brisson, Treatment of hydroponics wastewater using constructed wetlands in winter conditions, Water Air Soil Pollut., 212 (2010) 483–490.
  14. J.B.K. Park, R.J. Craggs, J.P.S. Sukias, Treatment of hydroponic wastewater by denitrification filters using plant prunings as the organic carbon source, Bioresour. Technol., 99 (2008) 2711–2716.
  15. J. Rockström, W. Steffen, K. Noone, E. Lambin, T.M. Lenton, M. Scheffer, C. Folke, H.J. Schellnhuber, C.A. de Wit, T. Hughes, S. Van Der Leeuw, H. Rodhe, P.K. Snyder, R. Costanza, U. Svedin, M. Falkenmark, L. Karlberg, R.W. Corell, V.J. Fabry, J. Hansen, B. Walker, D. Liverman, K. Richardson, P. Crutzen, J. Foley, Planetary boundaries: exploring the safe operating space for humanity, Ecol. Soc., 14 (2009) 1–32.
  16. J.N. Galloway, J.D. Aber, J.W. Erisman, S.P. Seitzinger, R.W. Howarth, E.B. Cowling, B.J. Cosby, The nitrogen cascade, Bioscience, 53 (2003) 341–356.
  17. J.W. Erisman, J.N. Galloway, S. Seitzinger, A. Bleeker, N.B. Dise, A.M.R. Petrescu, A.M. Leach, W. de Vries, Consequences of human modification of the global nitrogen cycle, Philos. Trans. R. Soc. London, Ser. B, 368 (2013) 1–9. https://doi.org/10.1098/ rstb.2013.0116
  18. J.N. Galloway, A.R. Townsend, J.W. Erisman, M. Bekunda, Z. Cai, J.R. Freney, L.A. Martinelli, S.P. Seitzinger, M.A. Sutton, Transformation of the nitrogen cycle: recent trends, questions, and potential solutions, Science, 320 (2008) 889–892.
  19. OECD and EUROSTAT, Gross Phosphorus Balances, OECD and FAO, 2007.
  20. EUROSTAT, Farm Data Needed for Agri-Environmental Reporting, Publications Office of the European Union, Luxembourg, 2011.
  21. European Environment Agency (EEA), Towards Efficient Use of Water Resources in Europe, Office for Official Publications of the European Union, Luxembourg, 2012.
  22. O.A. Malik, A. Hsu, L.A. Johnson, A. de Sherbinin, A global indicator of wastewater treatment to inform the Sustainable Development Goals (SDGs), Environ. Sci. Policy, 48 (2015) 172–185.
  23. European Commission, Towards an EU Research and Innovation Policy Agenda for Nature-Based Solutions & Re-Naturing Cities, Publications Office of the European Union, Luxembourg, 2015.
  24. M. Garcia-Holguera, O.G. Clark, A. Sprecher, S.J. Gaskin, Ecosystem biomimetics for resource use optimization in buildings, Build. Res. Inf., 44 (2015) 263–278.
  25. V. Blok, B. Gremmen, Ecological innovation: biomimicry as a new way of thinking and acting ecologically, J. Agric. Environ. Ethics, 29 (2016) 203–217.
  26. E. Comino, V. Riggio, M. Rosso, Grey water treated by a hybrid constructed wetland pilot plant under several stress conditions, Ecol. Eng., 53 (2013) 120–125.
  27. R.W.F. Cameron, J.E. Taylor, M.R. Emmett, What’s ‘cool’ in the world of green facades? How plant choice influences the cooling properties of green walls, Build. Environ., 73 (2014) 198–207.
  28. B. Raji, M.J. Tenpierik, A. Van Den Dobbelsteen, The impact of greening systems on building energy performance: a literature review, Renew. Sustain. Energy Rev., 45 (2015) 610–623.
  29. J. Coma, G. Perez, C. Solé, A. Castell, L.F. Cabeza, New green facades as passive systems for energy savings on buildings, Energy Procedia, 57 (2014) 1851–1859.
  30. M. Marchi, R.M. Pulselli, N. Marchettini, F.M. Pulselli, S. Bastianoni, Carbon dioxide sequestration model of a vertical greenery system, Ecol. Modell., 306 (2015) 46–56.
  31. M. Natarajan, M. Rahimi, S. Sen, N. Mackenzie, Y. Imanbayev, Living wall systems: evaluating life-cycle energy, water and carbon impacts, Urban Ecosyst., 18 (2015) 1–11.
  32. J.T. Lundholm, P.J. Richardson, Habitat analogues for reconciliation ecology in urban and industrial environments, J. Appl. Ecol., 47 (2010) 966–975.
  33. M.L. Rosenzweig, Reconciliation ecology and the future of species diversity, Oryx, 37 (2003) 194–205.
  34. R.A. Francis, Wall ecology: a frontier for urban biodiversity and ecological engineering, Prog. Phys. Geogr., 35 (2010) 43–63.
  35. J. Vymazal, Removal of nutrients in various types of constructed wetlands, Sci. Total Environ., 380 (2007) 48–65.
  36. J. Vymazal, Constructed wetlands for wastewater treatment, Water, 2 (2010) 530–549.
  37. M. Manso, J. Castro-Gomes, Green wall systems: a review of their characteristics, Renew. Sustain. Energy Rev., 41 (2015) 863–871.
  38. M. Ottellé, K. Perini, A.L.A. Fraaij, E.M. Haas, R. Raiteri, Comparative life cycle analysis for green facades and living wall systems, Energy Build., 43 (2011) 3419–3429.
  39. D. Tudiwer, A. Korjenic, The effect of living wall systems on the thermal resistance of the facade, Energy Build., 135 (2017) 10–19.
  40. K. Perini, M. Ottelé, E.M. Haas, R. Raiteri, Greening the building envelope, facade greening and living wall systems, Open J. Ecol., 1 (2011) 1–8.
  41. S.K. Elmasry, M.A. Haggag, Whole-building design for a green school building in Al-Ain, United Arab Emirates, Trans. Ecol. Environ., 150 (2011) 165–176.
  42. R.D. Cameron, Wastewater as a Water Resource, Design, and Operation of an Integrated Biofilter Wastewater Treatment and Reuse System, The Pennsylvania State University, Pennsylvania, 2012.
  43. B. Emeric, An Innovative Way to Treat Wastewater, Uppsala University, Sweden, 2009.
  44. P. Sakkas, Domestic Greywater Treatment Through the Integration of Constructed Wetlands in Living Wall Systems (LWS), Faculty of Architecture and Building Sciences, 2013.
  45. L.E. Svete, Vegetated Greywater Treatment Walls: Design Modifications for Intermittent Media Filters, Norwegian University of Life Sciences, Norwegian, 2012.
  46. H.S. Fowdar, B.E. Hatt, P. Breen, P.L.M. Cook, A. Deletic, Designing living walls for greywater treatment, Water Res., 110 (2017) 218–232.
  47. F. Masi, R. Bresciani, A. Rizzo, A. Edathoot, N. Patwardhan, D. Panse, G. Langergraber, Green walls for greywater treatment and recycling in dense urban areas: a case-study in Pune, J. Water Sanit. Hyg. Dev., 6 (2016) 342–347.
  48. S. Wolcott, P. Martin, J. Goldowitz, S. Sadeghi, Performance of green wall treatment of brewery wastewater, Environ. Prot. Eng., 42 (2016) 137–149.
  49. R.H. Kadlec, S.D. Wallace, Treatment Wetlands, 2nd ed., CRC Press Taylor & Francis Group, Boca Raton, 2009.
  50. P. Knowles, G. Dotro, J. Nivala, J. García, Clogging in subsurfaceflow treatment wetlands: occurrence and contributing factors, Ecol. Eng., 37 (2011) 99–112.
  51. A. Pedescoll, P.R. Knowles, P. Davies, J. García, J. Puigagut, A comparison of in situ constant and falling head permeameter tests to assess the distribution of clogging within horizontal subsurface flow constructed wetlands, Water Air Soil Pollut., 223 (2012) 2263–2275.
  52. H. Wang, C.C. Huang, Y. Ge, Y.W. Mo, S.X. Zhu, J. Chang, Variation in plant biomass and nitrogen removal in two wetland blocks with species composition, Int. J. Environ. Technol. Manage., 17 (2014) 404–417.
  53. R.J. Haynes, Use of industrial wastes as media in constructed wetlands and filter beds – prospects for removal of phosphate and metals from wastewater streams, Crit. Rev. Environ. Sci. Technol., 45 (2015) 1041–1103.
  54. H. Wu, J. Zhang, H.H. Ngo, W. Guo, Z. Hu, S. Liang, J. Fan, H. Liu, A review on the sustainability of constructed wetlands for wastewater treatment: design and operation, Bioresour. Technol., 175 (2015) 594–601.
  55. V. Prodanovic, B. Hatt, D. McCarthy, K. Zhang, A. Deletic, Green walls for greywater reuse: understanding the role of media on pollutant removal, Ecol. Eng., 102 (2017) 625–635.
  56. J. Vymazal, The use of hybrid constructed wetlands for wastewater treatment with special attention to nitrogen removal: a review of a recent development, Water Res., 47 (2013) 4795–4811.
  57. A.S. Jethoo, M.P. Poonia, D. Pandel, Potential for reducing green house gas emissions and energy consumption by recycling the construction waste materials, Bull. Environ. Pharmacol. Life Sci., 1 (2012) 16–20.
  58. M. Corsten, E. Worrell, M. Rouw, A. Van Duin, The potential contribution of sustainable waste management to energy use and greenhouse gas emission reduction in the Netherlands, Resour. Conserv. Recycl., 77 (2013) 13–21.
  59. Q. Hang, H. Wang, Z. Chu, B. Ye, C. Li, Z. Hou, Application of plant carbon source for denitrification by constructed wetland and bioreactor: review of recent development, Environ. Sci. Pollut. Res., 23 (2016) 8260–8274.
  60. J.B.K. Park, R.J. Craggs, J.P.S. Sukias, Removal of nitrate and phosphorus from hydroponic wastewater using a hybrid denitrification filter (HDF), Bioresour. Technol., 100 (2009) 3175–3179.
  61. S. Koide, N. Satta, Separation performance of ion-exchange membranes for electrolytes in drainage nutrient solutions subjected to electrodialysis, Biosyst. Eng., 87 (2004) 89–97.
  62. D.O. Huett, S.G. Morris, G. Smith, N. Hunt, Nitrogen and phosphorus removal from plant nursery runoff in vegetated and unvegetated subsurface flow wetlands, Water Res., 39 (2005) 3259–3272.
  63. E. Eriksson, K. Auffarth, M. Henze, A. Ledin, Characteristics of grey wastewater, Urban Water, 4 (2002) 85–104.
  64. S. Wu, P. Kuschk, H. Brix, J. Vymazal, R. Dong, Development of constructed wetlands in performance intensifications for wastewater treatment: a nitrogen and organic matter targeted review, Water Res., 57 (2014) 40–55.
  65. C. Ouellet-Plamondon, F. Chazarenc, Y. Comeau, J. Brisson, Artificial aeration to increase pollutant removal efficiency of constructed wetlands in cold climate, Ecol. Eng., 27 (2006) 258–264.
  66. L. Zhang, L. Zhang, Y. Liu, Y. Shen, H. Liu, Y. Xiong, Effect of limited artificial aeration on constructed wetland treatment of domestic wastewater, Desalination, 250 (2010) 915–920.
  67. Ellen Macarthur Foundation, Towards the Circular Economy: Accelerating the Scale-Up Across Global Supply Chains, 1st ed., Vol. 3, Ellen MacArthur Foundation, 2014.
  68. Ellen Macarthur, Towards the Circular Economy: Economic and Business Rationale for an Accelerated Transition, 1st ed., Vol. 1, Ellen MacArthur Foundation, 2013.
  69. European Commission, Manifesto for a Resource-Efficient Europe, European Commission, Brussels, 2012.
  70. F.P. Torgal, S. Jalali, Eco-Efficient Construction and Building Materials, Springer-Verlag London Limited, London, 2011.
  71. J.E. Szulejko, P. Kumar, A. Deep, K. Kim, Global warming projections to 2100 using simple CO2 greenhouse gas modeling and comments on CO2 climate sensitivity factor, Atmos. Pollut. Res., 8 (2017) 136–140.
  72. S.M. Sheweka, N.M. Mohamed, Green facades as a new sustainable approach towards climate change, Energy Procedia, 18 (2012) 507–520.
  73. W.J. Stec, A.H.C.V. Paassen, A. Maziarz, Modelling the double skin facade with plants, Energy Build., 37 (2005) 419–427.