References

  1. V. Sajbrt, M. Rosol, P. Ditl, A comparison of distillery stillage disposal methods, Acta Polytech., 50 (2010) 63–69.
  2. S.G. Ray, M.M. Ghangrekar, Comprehensive review on treatment of high-strength distillery wastewater in advanced physico-chemical and biological degradation pathways, Int. J. Environ. Sci. Technol., 16 (2019) 527–546.
  3. B. Drosg, W. Fuchs, T. Al Seadi, M. Madsen, B. Linke, Nutrient Recovery by Biogas Digestate Processing, IEA Bioenergy, 2015.
  4. P.L.N. Kaparaju, J.A. Rintala, Effects of solid–liquid separation on recovering residual methane and nitrogen from digested dairy cow manure, Bioresour. Technol., 99 (2008) 120–127.
  5. R.N. Garg, H. Pathak, D.K. Das, R.K. Tomar, Use of flyash and biogas slurry for improving wheat yield and physical properties of soil, Environ. Monit. Assess., 107 (2005) 1–9, doi: 10.1007/s10661-005-2021-x.
  6. R.W. Holloway, A.E. Childress, K.E. Dennett, T.Y. Cath, Forward osmosis for concentration of anaerobic digester centrate, Water Res., 41 (2007) 4005–4014.
  7. F.-B. Yu, X.-P. Luo, C.-F. Song, M.-X. Zhang, S.-D. Shan, Concentrated biogas slurry enhanced soil fertility and tomato quality, Acta Agric. Scand. Sect B, 60 (2010) 262–268.
  8. H. Gong, Z. Yan, K.Q. Liang, Z.Y. Jin, K.J. Wang, Concentrating process of liquid digestate by disk tube-reverse osmosis system, Desalination, 326 (2013) 30–36.
  9. M. El-Fadel, M. Massoud, Methane emissions from wastewater management, Environ. Pollut., 14 (2001) 177–185.
  10. B. Sen, M.T. Alp, F. Sonmez, M.A.T. Kocer, O. Canpolat, Relationship of Algae to Water Pollution and Waste Water Treatment. Water Treatment, W. Elshorbagy, R.K. Chowdhury, Eds., IntechOpen, 2013, pp. 335–354.
  11. A.K. Sahu, J. Siljudalen, T. Trydal, B. Rusten, Utilisation of wastewater nutrients for microalgae growth for anaerobic co-digestion, J. Environ. Manage., 122 (2013) 113–120.
  12. I. Doušková, F. Kaštánek, Y. Maléterová, P. Kaštánek, J. Doucha, V. Zachleder, Utilization of distillery stillage for energy generation and concurrent production of valuable microalgal biomass in the sequence: biogas-cogeneration-microalgaeproducts, Energy Convers. Manage., 51 (2010) 606–611.
  13. M.K. Lam, K.T. Lee, Microalgae biofuels: a critical review of issues, problems and the way forward, Biotechnol. Adv., 30 (2012) 673–690.
  14. C. Ledda, A. Schievano, B. Scaglia, M. Rossoni, F.G. Acién Fernández, F. Adani, Integration of microalgae production with anaerobic digestion of dairy cattle manure: an overall mass and energy balance of the process, J. Cleaner Prod., 112 (2016) 103–112.
  15. Y. Collos, P.J. Harrison, Acclimation and toxicity of high ammonium concentrations to unicellular algae, Mar. Pollut. Bull., 80 (2014) 8–23.
  16. D. Schulze, R. Block, Ökologische und ökonomische Bewertung von Fermenterabwasseraufbereitungs-systemen auf der Basis von Praxisversuchen und Modellkalkulationen für das Betreiben von Biogasanlagen, D. Straelen, Eds., Projektbericht des Gartenbauzentrums Straelen der Landwirtschaftskammer Nordrhein-Westfalen. Available at: http://www.lvg-straelenlwkr. de/biogas/projektbericht-gaerrestaufbereitung-05.pdf (2005) (Accessed 10 June 2008).
  17. U. Brüß, Totalaufbereitung von Gärresten aus Biogasanlagen, In: Gülzower Fachgespräche, Band 30: Gärrestaufbereitung für eine pflanzliche Nutzung - Stand und F&E Bedarf. Bundesministerium für Ernahrung, Landwirtschaft und Verbraucherschutz. Available at: https://mediathek.fnr. de/media/downloadable/files/samples/g/f/ gfg_band_30_ gaerrestaufbereitung.pdf (2009) (Accessed 3 September 2012).
  18. D. Veronesiv, G. D’Imporzano, S. Salati, F. Adani, Pre-treated digestate as culture media for producing algal biomass, Ecol. Eng., 105 (2017) 335–340.
  19. G. Fernandez-Álvarez, G. Garralón, F. Plaza, A. Garralón, J. Pérez, M. Gómez, Autopsy of SWRO membranes from desalination plant in Ceuta after 8 years in operation, Desalination, 263 (2010) 264–270.
  20. S.-J. Lee, M. Dilaver, P.-K. Park, J.-H. Kim, Comparative analysis of fouling characteristics of ceramic and polymeric microfiltration membranes using filtration models, J. Membr. Sci., 432 (2013) 97–105.
  21. M. Zielińska, M. Galik, Use of ceramic membranes in a membrane filtration supported by coagulation for the treatment of dairy wastewater, Water Air Soil Pollut., 228 (2017) 173, https://doi.org/10.1007/s11270-017-3365-x.
  22. W. Hermanowicz, W. Dożańska, J. Dojlido, B. Koziorowski, Fizyczno-chemiczne badanie wody i ścieków, Arkady, Warsaw, 1999.
  23. F. Waeger, T. Delhaye, W. Fuchs, The use of ceramic microfiltration and ultrafiltration membranes for particle removal from anaerobic digester effluents, Sep. Purif. Technol., 73 (2010) 271–278.
  24. A. Chiumenti, F. da Borso, F. Teri, R. Chiumenti, B. Piaia, Full-scale membrane filtration system for the treatment of digestate from a co-digestion plant, Appl. Eng. Agric., 29 (2013) 985–990.
  25. T. Gienau, U. Brüß, M. Kraume, S. Rosenberger, Nutrient recovery from biogas digestate by optimised membrane treatment, Waste Biomass Valorization, 9 (2018) 2337–2347.
  26. EPA Guidelines for Water Reuse, EPA/600/R-12/618. Available at: https://www.epa.gov/sites/production/files/2019-08/ documents/2012-guidelines-water-reuse.pdf (2012) (Accessed 10 August 2019).
  27. A. Guldhe, F.A. Ansari, P. Singh, F. Bux, Heterotrophic cultivation of microalgae using aquaculture wastewater: a biorefinery concept for biomass production and nutrient remediation, Ecol. Eng., 99 (2017) 47–53.
  28. A. Xia, J.D. Murphy, Microalgal cultivation in treating liquid digestate from biogas systems, Trends Biotechnol., 34 (2016) 264–275.
  29. J.U. Grobbelaar, Inorganic Algal Nutrition, A. Richmond, Ed., Handbook of Microalgal Culture: Biotechnology and Applied Phycology, Blackwell Publishing, Oxford, 2004, pp. 97–115.
  30. M. Dudek, M. Dębowski, M. Zieliński, A. Nowicka, P. Rusanowska, Water from the Vistula Lagoon as a medium in mixotrophic growth and hydrogen production by Platymonas subcordiformis, Int. J. Hydrogen Energy, 43 (2018) 9529–9534.
  31. M. Kisielewska, M. Zieliński, M. Dębowski, J. Kazimierowicz, Z. Romanowska-Duda, M. Dudek, Effectiveness of Scenedesmus sp. biomass grow and nutrients removal from liquid phase of digestates, Energies, 13 (2020) 1432, https://doi.org/10.3390/ en13061432.
  32. B. Raoof, B.D. Kaushik, R. Prasanna, Formulation of a low-cost medium for mass production of Spirulina, Biomass Bioenergy, 30 (2006) 537–542.
  33. A. Barros, L.T. Guerra, M. Simões, E. Santos, D. Fonseca, J. Silva, L. Costa, J. Navalho, Mass balance analysis of carbon and nitrogen in industrial scale mixotrophic microalgae cultures, Algal Res., 21 (2017) 35–41.
  34. M. Dębowski, S. Szwaja, M. Zieliński, M. Kisielewska, E. Stańczyk-Mazanek, The influence of anaerobic digestion effluents (ADEs) used as the nutrient sources for Chlorella sp. cultivation on fermentative biogas production, Waste Biomass Valorization, 8 (2017) 1153–1161.
  35. B.L. Faintuch, S. Sato, E. Aquarone, Influence of the nutritional sources on the growth rate of cyanobacteria, Arch. Biol. Technol., 34 (1991) 13–30.
  36. J.J. Elser, Phosphorus: a limiting nutrient for humanity?, Curr. Opin. Biotechnol., 23 (2012) 833–838.
  37. K. Naito, M. Matsui, I. Imai, Ability of marine eukaryotic red tide microalgae to utilize insoluble iron, Harmful Algae, 4 (2005) 1021–1032.
  38. V. Checchetto, E. Teardo, L. Carraretto, E. Formentin, E. Bergantino, G.M. Giacometti, I. Szabo, Regulation of photosynthesis by ion channels in cyanobacteria and higher plants, Biophys. Chem., 182 (2013) 51–57.
  39. T.Y. Cath, A.E. Childress, M. Elimelech, Forward osmosis: principles, applications, and recent developments, J. Membr. Sci., 281 (2006) 70–87.
  40. J. Pecen, Z. Piksa, P. Zabloudilova, Alternative use of a compressed component of a digestate from agricultural BGSs (biogas stations), J. Energy Power Eng., 8 (2014) 646–655.
  41. D.T. Furness, L.A. Hoggett, S.J. Judd, Thermochemical treatment of sewage sludge, Water Environ. J., 14 (2000) 57–65.
  42. P.H. Liao, W.T. Wong, K.V. Lo, Advanced oxidation process using hydrogen peroxide/microwave system for solubilization of phosphate, J. Environ. Sci. Health. Part A Toxic/Hazard. Subst. Environ. Eng., 40 (2005) 1753–1761.
  43. J.A. Libra, K.S. Ro, C. Kammann, A. Funke, N.D. Berge, Y. Neubauer, M.-M. Titirici, C. Fühner, O. Bens, J. Kern, K.-H. Emmerich, Hydrothermal carbonization of biomass residuals: a comparative review of the chemistry, processes and applications of wet and dry pyrolysis, Biofuels, 2 (2011) 71–106.
  44. X. Zheng, M. Ernst, M. Jekel, Identification and quantification of major organic foulants in treated domestic wastewater affecting filterability in dead-end ultrafiltration, Water Res., 43 (2009) 238–244.
  45. T.M. LaPara, C.G. Klatt, R.Y. Chen, Adaptations in bacterial catabolic enzyme activity and community structure in membrane-coupled bioreactors fed simple synthetic wastewater, J. Biotechnol., 121 (2006) 368–380.