References

  1. G. Yang, G. Zhang, H. Wang, Current state of sludge production, management, treatment and disposal in China, Water Res., 78 (2015) 60–73.
  2. B.M. Cieślik, J. Namieśnik, P. Konieczka, Review of sewage sludge management: standards, regulations and analytical methods, J. Cleaner Prod., 90 (2015) 1–15.
  3. A. Bianchini, L. Bonfiglioli, M. Pellegrini, C. Saccani, Sewage sludge management in Europe: a critical analysis of data quality, Int. J. Environ. Waste Manage., 18 (2016) 226–238.
  4. M. Kacprzak, E. Neczaj, K. Fijałkowski, A. Grobelak, A. Grosser, M. Worwag, A. Rorat, H. Brattebo, Å. Almås, B.R. Singh, Sewage sludge disposal strategies for sustainable development, Environ Res., 156 (2017) 39–46.
  5. M. Rékási, N. Mazsu, E. Draskovits, B. Bernhardt, A. Szabó, P.A. Rivier, C. Farkas, B. Borsányi, B. Pirkó, S. Molnár, G. Kátay, Comparing the agrochemical properties of compost and vermicomposts produced from municipal sewage sludge digestate, Bioresour. Technol., 291 (2019) 121861.
  6. EuroStat Data Set, Sewage Sludge Production and Disposal, Available at: http://appsso.eurostat.ec.europa.eu/nui/show.do?dataset=env_ww_spd&lang=en (Accessed 15 May 2019).
  7. J.M. Soriano-Disla, J. Navarro-Pedreño, I. Gómez, Contribution of a sewage sludge application to the short-term carbon sequestration across a wide range of agricultural soils, Environ. Earth Sci., 61 (2010) 1613–1619.
  8. J.L. Stevens, G.L. Northcott, G.A. Stern, G.T. Tomy, K.C. Jones, PAHs, PCBs, PCNs, organochlorine pesticides, synthetic musks, and polychlorinated n-alkanes in UK sewage sludge: survey results and implications, Environ. Sci. Technol., 37 (2003) 462–467.
  9. G. Mininni, A.R. Blanch, F. Lucena, S. Berselli, EU policy on sewage sludge utilization and perspectives on new approaches of sludge management, Environ. Sci. Pollut. Res., 22 (2015) 7361–7374.
  10. P. Oleszczuk, Phytotoxicity of municipal sewage sludge composts related to physico-chemical properties, PAHs and heavy metals, Ecotoxicol. Environ. Saf., 69 (2008) 496–505.
  11. B.C. Wilson, K.C. Jones, Bioremediation of soil contaminated with polynuclear aromatic hydrocarbons (PAHs): a review, Environ. Pollut., 81 (1993) 229–249.
  12. H.P. Bacosa, C. Inoue, Polycyclic aromatic hydrocarbons (PAHs) biodegradation potential and diversity of microbial consortia enriched from tsunami sediments in Miyagi, Japan, J. Hazard. Mater., 283 (2015) 689–697.
  13. B. Maliszewska-Kordybach, B. Smreczak, A. Klimkowicz-Pawlas, Concentrations, sources, and spatial distribution of individual polycyclic aromatic hydrocarbons (PAHs) in agricultural soils in the Eastern part of the EU: Poland as a case study, Sci. Total Environ., 407 (2009) 3746–3753.
  14. W. Lewandowski, M. Ryms, Biofuels, Pros Ecological Renewable Energy Sources, Publisher WNT, 2013 (in Polish).
  15. A. Placek, A. Grobelak, M. Kacprzak, Improving the phytoremediation of heavy metals contaminated soil by use of sewage sludge, Int. J. Phytorem., 18 (2016) 605–618.
  16. D. Włóka, M. Smol, Evaluation of extraction methods of polycyclic aromatic hydrocarbons (PAHs) from soil and sewage sludge matrix, Eng. Prot. Environ., 17 (2014) 683–696.
  17. M. Smol, M. Włodarczyk-Makuła, K. Mielczarek, J. Bohdziewicz, D. Włóka, The use of reverse osmosis in the removal of PAHs from municipal landfill leachate, Polycyclic Aromat. Compd., 36 (2016) 20–39.
  18. A. Christodoulou, K. Stamatelatou, Overview of legislation on sewage sludge management in developed countries worldwide, Water Sci. Technol., 73 (2016) 453–462.
  19. S. Amir, M. Hafidi, G. Merlina, H. Hamdi, J.-C. Revel, Fate of polycyclic aromatic hydrocarbons during composting of lagooning sewage sludge, Chemosphere, 58 (2005) 449–458.
  20. N. Ozaki, A. Nakazato, K. Nakashima, T. Kindaichi, A. Ohashi, Loading and removal of PAHs, fragrance compounds, triclosan and toxicity by composting process from sewage sludge, Sci. Total Environ., 605 (2017) 860–866.
  21. N. Karmegam, P. Vijayan, M. Prakash, J.A. John Paul, Vermicomposting of paper industry sludge with cowdung and green manure plants using Eisenia fetida: a viable option for cleaner and enriched vermicompost production, J. Cleaner Prod., 228 (2019) 718–728.
  22. A. Rorat, D. Wloka, A. Grobelak, A. Grosser, A. Sosnecka, M. Milczarek, P. Jelonek, F. Vandenbulcke, M. Kacprzak, Vermiremediation of polycyclic aromatic hydrocarbons and heavy metals in sewage sludge composting process, J. Environ. Manage., 187 (2017) 347–353.
  23. D. Włóka, A. Placek, S. Smol, A. Rorat, D. Hutchison, M. Kacprzak, The efficiency and economic aspects of phytoremediation technology using Phalaris arundinacea L. and Brassica napus L. combined with compost and nano SiO2 fertilization for the removal of PAH’s from soil, J. Environ. Manage., 234 (2019) 311–319.
  24. L. Feng, L. Zhang, L. Feng, Dissipation of polycyclic aromatic hydrocarbons in soil amended with sewage sludge compost, Int. Biodeterior. Biodegrad., 95 (2014) 200–207.
  25. P. Oleszczuk, Zanieczyszczenia organiczne w glebach użyźnianych osadami ściekowymi Część II. Losy zanieczyszczeń w glebie, Ecol. Chem. Eng., 14 (2007) 185–198.
  26. S. Lamichhane, K.B. Krishna, R. Sarukkalige, Polycyclic aromatic hydrocarbons (PAHs) removal by sorption: a review, Chemosphere, 148 (2016) 336–353.
  27. M. Stefaniuk, D.C. Tsang, Y.S. Ok, P. Oleszczuk, A field study of bioavailable polycyclic aromatic hydrocarbons (PAHs) in sewage sludge and biochar amended soils, J. Hazard. Mater., 349 (2018) 27–34.
  28. J. Boardman, J. Poesen, R. Evans, Socio-economic factors in soil erosion and conservation, Environ. Sci. Policy, 6 (2003) 1–6.
  29. P. Zhang, Y. Chen, Polycyclic aromatic hydrocarbons contamination in surface soil of China: a review, Sci. Total Environ., 605 (2017) 1011–1020.
  30. H. Hamdi, L. Manusadžianas, I. Aoyama, N. Jedidi, Effects of anthracene, pyrene and benzo [a] pyrene spiking and sewage sludge compost amendment on soil ecotoxicity during a bioremediation process, Chemosphere, 65 (2006) 1153–1162.
  31. T. Toyooka, Y. Ibuki, DNA damage induced by coexposure to PAHs and light, Environ. Toxicol. Pharmacol., 23 (2007) 256–263.
  32. P. Henner, M. Schiavon, V. Druelle, E. Lichtfouse, Phytotoxicity of ancient gaswork soils. Effect of polycyclic aromatic hydrocarbons (PAHs) on plant germination, Org. Geochem., 30 (1999) 963–969.
  33. M.N. Prasad, K. Strzalka, Physiology and Biochemistry of Metal Toxicity and Tolerance in Plants, Springer Science & Business Media, Berlin/Heidelberg, Germany, 2013.
  34. F.P. Gardner, R.B. Pearce, R.L. Mitchell, Physiology of Crop Plants, 2nd ed., Scientific Publishers, Jodhpur, India, 2017.
  35. J. Ren, H. Liang, F.T. Chan, Urban sewage sludge, sustainability, and transition for Eco-City: multi-criteria sustainability assessment of technologies based on best-worst method, Technol. Forecasting Social Change, 116 (2017) 29–39.
  36. M. Smol, J. Kulczycka, A. Henclik, K. Gorazda, Z. Wzorek, The possible use of sewage sludge ash (SSA) in the construction industry as a way towards a circular economy, J. Cleaner Prod., 95 (2015) 45–54.
  37. Z. Košnář, L. Wiesnerová, T. Částková, S. Kroulíková, J. Bouček, F. Mercl, P. Tlustoš, Bioremediation of polycyclic aromatic hydrocarbons (PAHs) present in biomass fly ash by co-composting and co-vermicomposting, J. Hazard. Mater., 369 (2019) 79–86.