Szczegóły

Tytuł artykułu

Influence of former industrial waste landfill in central Poland on PCBs content in the environment

Tytuł czasopisma

Archives of Environmental Protection

Rocznik

2021

Wolumin

vol. 47

Numer

No 2

Afiliacje

Gabryszewska, Marta : Institute of Environmental Protection - National Research Institute, Poland ; Gworek, Barbara : Institute of Environmental Protection - National Research Institute, Poland

Autorzy

Słowa kluczowe

polychlorinated biphenyls ; industrial waste landfill ; groundwater

Wydział PAN

Nauki Techniczne

Zakres

61-69

Wydawca

Polish Academy of Sciences

Bibliografia

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  2. Arp H.P.H., Morin N.A.O., Andersson P.L., Hale S.E., Wania F., Breivik K. & Breedveld G.D. (2020). The presence, emission and partitioning behavior of polychlorinated biphenyls in waste, leachate and aerosols from Norwegian waste-handling facilities, Science of The Total Environment, 715, 136824. DOI: 10.1016/j.scitotenv.2020.136824
  3. Böhme, F., Welsch-Pausch, K. & McLachlan, M.S. (1999). Uptake of airborne semivolatile organic compounds in agricultural plants: Field measurements of interspecies variability. Environ. Sci. Technol. DOI: 10.1021/es980832l
  4. Degrendele, C., Fiedler, H., Kočan, A., Kukučka, P., Přribylová, P., Prokeš R, Klánová, J. & Lammel, G. (2020). Multiyear levels of PCDD/Fs, dl-PCBs and PAHs in background air in central Europe and implications for deposition. Chemosphere. 240: 124852. DOI: 10.1016/j.chemosphere.2019.124852
  5. Dias-Ferreira, C., Pato, R.L., Varejão, J.B., Tavares, A.O. & Ferreira, A.J.D. (2016). Heavy metal and PCB spatial distribution pattern in sediments within an urban catchment—contribution of historical pollution sources. J Soils Sediments. 16: 2594–2605. DOI: 10.1007/s11368-016-1542-y
  6. Erickson, M.D. (2001). Introduction: PCB Properties, Uses, Occurrence, and Regulatory History, in: PCBs: Recent Advances in Environmental Toxicology and Health Effects.
  7. Gabryszewska, M., Gworek, B. & Garlej, B. (2018). PCB content in soil and plants along routes with high traffic intensity. Desalin. WATER Treat. DOI: 10.5004/dwt.2018.22398
  8. Gabryszewska, M. & Gworek, B. (2020a). Impact of municipal and industrial waste incinerators on PCBs content in the environment. Plos One. DOI: 10.1371/journal.pone.0242698
  9. Gabryszewska, M. & Gworek, B. (2020b). Polychlorinated biphenyls in soils of diversified use. Przem. Chem. DOI: 10.15199/62.2020.12.18 (in Polish)
  10. Gabryszewska, M. & Gworek, B. (2020c). Municipal waste landfill as a source of polychlorinated biphenyls releases to the environment, Peer J, in press, DOI 10.7717/peerj.10546
  11. Gworek, B., Dmuchowski, W., Koda, E., Marecka, M., Baczewska, A.H., Bragoszewska, P., Sieczka, A. & Osiński, P. (2016). Impact of the municipal solid waste lubna landfill on environmental pollution by heavy metals. Water (Switzerland). DOI: 10.3390/w8100470
  12. Hansen, L. G. & Robertson, L. W. (2001). PCB Recent advances in environmental toxicology and health effects The University Press of Kentucky.
  13. Hue, N.T., Thuy, N.T.T. & Tung, N.H. (2016). Polychlorobenzenes and polychlorinated biphenyls in ash and soil from several industrial areas in North Vietnam: residue concentrations, profiles and risk assessment. Environ Geochem Health DOI:10.1007/s10653-015-9726-8
  14. Kaya, D., Imamoglu, I., Sanin, F.D. & Sowers, K.R. (2018). A comparative evaluation of anaerobic dechlorination of PCB-118 and Aroclor 1254 in sediment microcosms from three PCB-impacted environments. J. Hazard. Mater. DOI: 10.1016/j.jhazmat.2017.08.005
  15. Kodavanti, P.R.S. (2017). Polychlorinated Biphenyls (PCBs). Ref. Modul. Neurosci. Biobehav. Psychol. DOI: 10.1016/B978-0-12-809324-5.03955-9
  16. Kuzu, S.L., Saral, A., Demir, S., Coltu, H., Can, M. & Beyaz, T. (2013). Estimation of atmospheric PCB releases from industrial facilities in Turkey, Atmospheric Pollution DOI:10.5094/APR.2013.048
  17. Liu, J. & Schnoor, J.L. (2008). Uptake and translocation of lesser-chlorinated polychlorinated biphenyls (PCBs) in whole hybrid poplar plants after hydroponic exposure. Chemosphere. DOI: 10.1016/j.chemosphere.2008.08.009
  18. Liu, X., Fiedler, H., Gong, W., Wang, B. & Yu, G. (2018). Potential sources of unintentionally produced PCB, HCB, and PeCBz in China: A preliminary overview. Front. Environ. Sci. Eng. DOI: 10.1007/s11783-018-1036-9
  19. Melnyk, A., Dettlaff, A., Kuklińska, K., Namieśnik, J. & Wolska, L. (2015). Concentration and sources of polycyclic aromatic hydrocarbons (PAHs) and polychlorinated biphenyls (PCBs) in surface soil near a municipal solid waste (MSW) landfill. Sci. Total Environ. DOI: 10.1016/j.scitotenv.2015.05.092
  20. Murphy, T.J., Formanski, L.J., Brownawell, B. & Meyer, J.A. (1985). Polychlorinated biphenyl emissions to the atmosphere in the Great Lakes region. Municipal landfills and incinerators. Environmental Science Technology. 1985, 19 (10), pp. 942–946. DOI: 10.1021/es00140a009
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  22. Rosik-Dulewska, C. & Karwaczynska, U. (2008). Methods of leaching contaminants from mineral waste in the aspect of its potential utilization in hydrotechnical construction‎, Rocznik Ochrona Środowiska, 10, pp.‏ 205-219.(in Polish)
  23. Ti, Q., Gu, C., Liu, C., Cai, J., Bian, Y., Yang, X., Song, Y., Wang, F., Sun, C. & Jiang, X. (2018). Comparative evaluation of influence of aging, soil properties and structural characteristics on bioaccessibility of polychlorinated biphenyls in soil. Chemosphere. DOI: 10.1016/j.chemosphere.2018.07.111
  24. Travis, C.C. & Hester, S.T. (1991). Global chemical pollution. Environ. Sci. Technol. 25 5: 814–819.
  25. Whitfield Åslund, M.L., Rutter, A., Reimer, K.J. & Zeeb, B.A. (2008). The effects of repeated planting, planting density, and specific transfer pathways on PCB uptake by Cucurbita pepo grown in field conditions. Sci. Total Environ. DOI: 10.1016/j.scitotenv.2008.07.066
  26. WHO. (1992). IPCS INTERNATIONAL PROGRAMME ON CHEMICAL SAFETY Health and Safety Guide No. 68 POLYCHLORINATED BIPHENYLS (PCBs) AND POLYCHLORINATED TERPHENYLS (PCTs) HEALTH AND SAFETY GUIDE [WWW Document]. WHO. URL http://www.inchem.org/documents/hsg/hsg/hsg68.htm#SubSectionNumber:2.5.2 (accessed 21.07.2020).
  27. Yu, L., Duan, L., Naidu, R. & Semple, K.T. (2018). Abiotic factors controlling bioavailability and bioaccessibility of polycyclic aromatic hydrocarbons in soil: Putting together a bigger picture. Sci. Total Environ. DOI: 10.1016/j.scitotenv.2017.09.025

Data

2021.06.23

Typ

Article

Identyfikator

DOI: 10.24425/aep.2021.137278 ; ISSN 2083-4772 ; eISSN 2083-4810

Źródło

Archives of Environmental Protection; 2021; vol. 47; 61-69

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