References

  1. V.G. Gude, Geothermal source potential for water desalination – current status and future perspective, Renewable Sustainable Energy Rev., 57 (2016) 1038–1065.
  2. J. Bundschuh, B. Tomaszewska, Eds., Geothermal Water Management, Series; Sustainable Water Developments Resources, Management, Treatment, Efficiency and Reuse, CRC Press/Balkema, London, 2018.
  3. B. Tomaszewska, M. Tyszer, Assessment of the influence of temperature and pressure on the prediction of the precipitation of minerals during desalination process, Desalination, 424 (2017) 102–109.
  4. B. Tomaszewska, E. Kmiecik, K. Wątor, M. Tyszer, Use of numerical modelling in the prediction of membrane scaling. Reaction between antiscalants and feedwater, Desalination, 427 (2018) 27–34.
  5. J.A. Sanmartino, M. Khayet, M.C. Garcia-Payo, H. El-Bakouri, A. Riaza, Treatment of reverse osmosis brine by direct contact membrane distillation: chemical pretreatment approach, Desalination, 420 (2017) 79–90.
  6. I.G. Wenten, Khoiruddin, Reverse osmosis applications: prospect and challenges, Desalination, 391 (2016) 112–125.
  7. S.S. Shenvi, A.M. Isloor, A.F. Ismail, A review on RO membrane technology: development and challenges, Desalination, 368 (2015) 10–26.
  8. A. Perez-Gonzalez, R. Ibanez, P. Gómez, A.M. Urtiaga, I. Ortiz, J.A. Irabien, Recovery of desalination brines: separation of calcium, magnesium and sulfate as a pre-treatment step, Desal. Wat. Treat., 56 (2015) 3617–3625.
  9. J. Ren, R. Wang, Preparation of Polymeric Membranes, L.K. Wang, J.P. Chen, Y.-T. Hung, N.K. Shammas Eds., Membrane and Desalination Technologies. Handbook of Environmental Engineering, vol. 13. Humana Press, Inc., Totowa, 2011, pp. 47–100.
  10. P. Chelme-Ayala, D.W. Smith, M.G. El-Din, Membrane concentrate management options: a comprehensive critical review, Can. J. Civil Eng., 36 (2009) 1107–1119.
  11. D.H. Kim, A review of desalting process techniques and economic analysis of the recovery of salts from retentates, Desalination, 270 (2011) 1–8.
  12. B. Tomaszewska, A. Szczepański, Possibilities for the efficient utilisation of spent geothermal waters, Environ. Sci. Pollut. Res., 21 (2014) 11409–11417.
  13. A. Subramani, J.G. Jacangelo, Treatment technologies for reverse osmosis concentrate volume minimalization, Sep. Purif. Technol., 122 (2014) 472–489.
  14. A. Perez-Gonzalez, A.M. Urtiaga, R. Ibanez, I. Ortiz, State of the art and review on the treatment technologies of water reverse osmosis concentrates, Water Res., 46 (2012) 267–283.
  15. J.E. Kin, S. Phuntsho, L. Chekli, Y.J. Choi, H.K. Shon, Environmental and economic assessment of hybrid FO-RO/NF system with selected inorganic draw solutes for the treatment of mine impaired water, Desalination, 42 (2018) 96–104.
  16. S.H. Joo, B. Tansel, Novel technologies for reverse osmosis concentrate treatment: a review, J. Environ. Manage., 150 (2015) 322–335.
  17. B. Tomaszewska, L. Pająk, J. Bundschuh, W. Bujakowski, Low-enthalpy geothermal energy as a source of energy and integrated freshwater production in inland areas: technological and economic feasibility, Desalination, 435 (2018) 35–44.
  18. A. Operacz, B. Tomaszewska, The review of Polish formal and legal aspects related to hydropower plants, Environ. Sci. Pollut. Res., 23 (2016) 18953–18959.
  19. A. Operacz, The term “effective hydropower potential” based on sustainable development – an initial case study of the Raba river in Poland, Renewable Sustainable Energy Rev., 75 (2017) 1453–1463.
  20. B. Tomaszewska, M. Tyszer, M. Dendys, The availability of groundwater information sources in relations to the transposition of the WFD into Polish law. Project KINDRA, Therm. Sci. Eng. Progr., 5 (2018) 437–443.
  21. Geological and Mining Law of 9 June 2011 (Journal of Laws 2016, item 1131 as amended).
  22. M. Gryta, The concentration of geothermal brines with iodine content by membrane distillation, Desalination, 325 (2013) 16–24.
  23. E. Drioli, E. Curcio, A. Criscuoli, G. Di Profio, Integrated system for recovery CaCO3, NaCl and MgSO4∙7H2O from nanofiltration retentate, J. Membr. Sci., 239 (2004) 27–38.
  24. C. Riziero Martinetti, A.E. Childress, T.Y. Cath, High recovery of concentrated RO brines using forward osmosis and membrane distillation, J. Membr. Sci., 331 (2009) 31–39.
  25. T. Jeppesen, L. Shu, G. Keir, V. Jegatheesan, Metal recovery from reverse osmosis concentrate, J. Cleaner Prod., 17 (2009) 703–707.
  26. M.J. Park, G.M. Nisola, A.B. Beltran, R.E.C. Torrejos, J.G. Seo, S.-P. Lee, H. Kim, W.-J. Chung, Recyclable composite absorbent for Li+ recovery from seawater desalination retentate, Chem. Eng. J., 254 (2014) 73–81.
  27. A. Siekierka, B. Tomaszewska, M. Bryjak, Lithium capturing from geothermal water by hybrid capacitive deionization, Desalination, 436 (2018) 8–14.
  28. L. Wang, Y.P. Zhang, J.C. Li, X.Y. Lin, X.G. Luo, Removal of Sr2+ ions from simulated wastewater by electrodeionization, Desal. Wat. Treat., 53 (2015) 2125–2133.
  29. H. Dong, C. Unluer, E.-H. Yang, A. Al-Tabbaa, Recovery of reactive MgO from reject brine via the addition of NaOH, Desalination, 429 (2018) 88–95.
  30. A. Giwa, V. Dufour, F.Al. Marzooqi, M. Al. Kaabi, S.W. Hasan, Brine management methods: recent innovations and current status, Desalination, 407 (2017) 1–23.
  31. S.C.N. Tang, L. Birnhack, P. Nativ, O. Lahav, Highly-selective separation of divalent ions from seawater and seawater RO retentate, Sep. Purif. Technol., 175 (2017) 460–468.
  32. J.M. Arnal, M. Sancho, I. Iborra, J.M. Gozalvez, A. Santafe, J. Lora, Concentration of brines from RO desalination plants by natural evaporation, Desalination, 183 (2005) 435–439.
  33. J. Liu, J. Yuan, Z Ji, B. Wang, Y. Hao, X. Guo, Concentrating brine from sweater desalination process by nanofiltrationelectrodialysis integrated membrane technology, Desalination, 390 (2016) 53–61.
  34. M. Reig, S. Casas, C. Aladjem, C. Valderrama, O. Gibert, F. Valero, C.M. Centeno, E. Larrotcha, J.L. Cortina, Concentration of NaCl from sweater reverse osmosis brines for the chlor-alkali industry by electrodialysis, Desalination, 342 (2014) 107–117.
  35. T. Istirokhatun, M.N. Dewi, H.I. Ilma, H. Susanto, Separation of antiscalants from reverse osmosis concentrates using nanofiltration, Desalination, 429 (2018) 105–110.
  36. L. Lin, X. Xu, C. Papelis, P. Xu, Innovative use of drinking water treatment solids for heavy metals removal from desalination concentrate: synergistic effect of salts and natural organic matter, Chem. Eng. Res. Des., 120 (2017) 231–239.
  37. P. Xiu, M. Capito, T.Y. Cath, Selective removal of arsenic and monovalent ions from brackish water reverse osmosis concentrate, J. Hazard. Mater., 260 (2013) 885–891.
  38. X. Xu, L. Lin, C. Papelis, M. Myint, T.Y. Cath, P. Xu, Use of drinking water treatment solids for arsenate removal from desalination concentrate, J. Colloid Interface Sci., 445 (2015) 252–261.
  39. Regulation of the Minister of Health of 13 April 2006 on the scope of research necessary to determine the curative properties of natural medicinal raw materials and the curative properties of climate, criteria for their assessment and the template of the certificate confirming these properties (Journal of Laws 2006 No. 80 item 565).
  40. DOW FILMTEC NF270 Nanofiltration Element for Commercial System – Product Information, Form No. 609-00519-1206 Available at: https://www.lenntech.com/Data-sheets/Dow-Filmtec-NF270-4040.pdf.
  41. DOW FILMTEC NF90 Nanofiltration High Productivity Element – Product Information, Form No. 609-00378-1206 Available at: https://www.lenntech.com/Data-sheets/Dow-Filmtec-NF90-4040.pdf.
  42. DOW FILMTEC BW30FR-400 High Productivity Fouling Resistant RO Element – Product Information, Form No. 609- 00391-0910 Available at: https://www.lenntech.com/Datasheets/Dow-Filmtec-BW30FR-400.pdf.
  43. W. Ciężkowski, J. Chowaniec, W. Górecki, A. Krawiec, L. Rajchel, A. Zuber, Mineral and thermal waters of Poland, Przegl. Geol., 58 (2010) 762–774.
  44. Regulation of Council of Ministers of 14 February 2006 on groundwater deposits classified as brines, curative and thermal waters, and other healing mineral deposits, as well as minerals from specified deposits or geological units for basic minerals (Journal of Laws 2006 No. 32, item 220 as amended).
  45. J.H. Ólafsson, The Blue Lagoon in Iceland and psoriasis, Clin. Dermatol., 14 (1996) 647–651.
  46. A. Huang, S. Seité, T. Adar, The use of balneotherapy in dermatology, Clin. Dermatol., 36 (2018) 363–368.