References

  1. C.R. Hammond, The Elements in Lide, CRC Handbook of Chemistry and Physics, Boca Raton, CRC Press, 2005.
  2. Hazardous Substances in Europe’s Fresh and Marine Waters: An Overview, EEA Technical Report No. 8/2011, Copenhagen, Denmark.
  3. K. Sundseth, J.M. Pacyna, E.G. Pacyna, J. Munthe, M. Mohammed Belhaj, S. Astrom, Economic benefits from decreased mercury emissions: projections for 2020, J. Cleaner Prod., 18 (2010) 386–394.
  4. J. Xu, A.G. Bravo, A. Lagerkvist, S. Bertilsson, R. Sjöblom, J. Kumpiene, Sources and remediation techniques for mercury contaminated soil, Environ. Int., 74 (2015) 42–53.
  5. Global Mercury Assessment 2013: Sources, Emissions, Releases and Environmental Transport, UNEP, Division of Technology, Industry and Economics (DTIE), Chemicals Branch, Geneva, Switzerland, 2013.
  6. Y. Li, H. Gao, L. Mo, Y. Kong, N. Pirrone, S. Cinnirella, X. Feng, R.B. Finkelman, H.R. Friedli, J. Leaner, R. Mason, A.B. Mukherjee, G.B. Stracher, D.G. Streets, K. Telmer, Global mercury emissions to the atmosphere from anthropogenic and natural sources, Atmos. Chem. Phys., 10 (2010) 5951–5964.
  7. I. Małuszyńska, A. Popenda, M.J. Małuszyński, Mercury in the environment, Environ. Prot. Nat. Resour., 49 (2011) 484–493.
  8. B. Gworek, W. Dmuchowski, O. Bemowska, K. Kucharczyk, J. Wrzosek-Jakubowska, J. Borzyszkowski, Mercury in the Environment, Monograph, IOŚ-PIB, Warsaw, 2013 (in Polish).
  9. Y. Li, H. Gao, L. Mo, Y. Kong, Quantitative assessment and source apportionment of metal pollution in soil along Chao River, Desal. Wat. Treat., 51 (2013) 4010–4018.
  10. I. Małuszyńska, A. Popenda, M.J. Małuszyński, Interactions of mercury in the environment. Annals of Warsaw University of Life Sciences – SGGW, Land Reclam., 45 (2013) 255–260.
  11. L. Boszke, J. Śliwińska, Sources of mercury in humans exposed to its compounds, Eng. Environ. Prot., 1 (2014) 21–40 (in Polish).
  12. A.M. Safruk, R.G. Berger, B.J. Jackson, C. Pinsent, A.T. Hair, E.A. Sigal, The bioaccessibility of soil-based mercury as determined by physiological based extraction tests and human biomonitoring in children, Sci. Total Environ., 518–519 (2015) 545–553.
  13. M. Guney, B. Welfringer, C. de Repentigny, G.J. Zagury, Children’s exposure to mercury-contaminated soils: exposure assessment and risk characterization, Arch. Environ. Contam. Toxicol., 65 (2013) 345–355.
  14. J. Kondracki, Geography of Poland: Physical–Geographical Mezoregions, PWN, Warsaw, 1994, pp. 194–195 (in Polish).
  15. H. Tomassi-Morawiec, I. Bojakowska, A. Dusza-Dobek, A. Pasieczna, Geochemical Atlas of Warsaw and Environs, Warsaw, 2016.
  16. T. Rozbicki, M. Kleniewska, G. Majewski, K. Rozbicka, D. Gołaszewski, Influence of various dynamics of town planning changes on air temperature in Warsaw agglomeration within the period of 1961–2010, Acta Geogr. Lodz., 104 (2016) 35–44 (in Polish).
  17. A. Ostrowska, S. Gawliński, Z. Szczybiała, Methods of Analyses and Estimation of Soils and Plants Properties – Catalogue, IOŚ, Warsaw, 1991 (in Polish).
  18. B. Gworek, P. Dąbrowski, B. Poniecka, J. Wrzosek, Impact of road traffic on the soils and plants contamination, Przem. Chem., 89/7 (2010) 267–271 (in Polish).
  19. A. Dusza-Dobek, Geochemical studies of soils in selected parks of Warsaw, Bull. Pol. Geol. Inst., 450 (2012) 35–46 (in Polish).
  20. S. Rożański, H. Dąbkowska-Naskręt, Spatial and profile distribution of mercury in urban soils of Bydgoszcz city, Environ. Prot. Nat. Resour., 49 (2011) 489–496 (in Polish).
  21. R. Pannu, S.D. Siciliano, N.J. O’Driscoll, Quantifying the effects of soil temperature, moisture and sterilization on elemental mercury formation in boreal soils, Environ. Pollut., 193 (2014) 138–146.
  22. Decree by Ministry of Environment of 1 September 2016 on the Method for Assessment of Land Surface Contamination, Official Journal of Laws Item 1395, 2016.
  23. A. Pasieczna, J. Małecka, T. Lipnicka, Atlas of Urban Soils Contamination in Poland. PIG, Warsaw, 2003.
  24. A. Dradrach, A. Karczewska, Mercury in soils of municipal lawns in Wroclaw, Poland, Fresenius Environ. Bull., 22 (2013) 968–972.
  25. A. Kabata-Pendias, Trace Elements in Soils and Plants, CRC Press, Taylor & Francis Group, Boca Raton, 2010.
  26. R.G. Riley, J.M. Zachara, Chemical Contaminants on DOE Lands and Selection of Contaminated Mixtures for Subsurface Science Research, US-DOE, Energy Resource Subsurface Science Program, Washington, D.C., USA, 1992.
  27. NJDEP, Soil Cleanup Criteria, New Jersey Department of Environmental Protection, Proposed Cleanup Standards for Contaminated Sites, NJAC 7:26D, New Jersey, USA, 1996.
  28. Soil Guideline Values for Mercury in Soil Science Report SC050021/Mercury SGV, Esdat Environmental Database Management Software. Available at: www.esdat.net.
  29. S.M. Rodrigues, M.E. Pereira, A. da Costa, D.B. Vrščaj, Mercury in urban soils: a comparison of local spatial variability in six European cities, Sci. Total Environ., 368 (2006) 926–936.
  30. Council Directive 86/278/EEC of 12 June 1986 on the Protection of the Environment and in Particular of the Soil when Sewage Sludge Is Used in Agriculture.
  31. Council Directive 91/156/EEC of 18 March 1991 Establishes the Obligation to Draw Up Inventories of Contaminated Sites.
  32. Strategy for Soil Protection in a Document COM (2012) 46 Final.
  33. Directive 2010/75/EU on Industrial Emissions (Integrated Pollution Prevention and Control – IPPC).
  34. Council Directive 1999/31/EC of 26 April 1999 on Landfill of Waste Dealing with Maintenance, Monitoring and Control of the Polluted Soils.
  35. M. Linde, H. Bengtsson, I. Öborn, Concentrations and pools of heavy metals in urban soils in Stockholm, Sweden, Water Air Soil Pollut., 1 (2001) 83–101.
  36. D. Münch, Concentration profiles of arsenic, cadmium, chromium, copper, lead, mercury, nickel, zinc, vanadium and polynuclear aromatic hydrocarbons (PAH) in forest soil beside an urban road, Sci. Total Environ., 138 (1993) 47–55.
  37. E. Schuster, The behavior of mercury in the soil with special emphasis on complexation and adsorption processes – a review of the literature, Water Air Soil Pollut., 56 (1991) 667–680.
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