This work is licensed under the Creative Commons Attribution 4.0 International License.
Alloway B.J., 2013. Sources of Heavy Metals and Metalloids in Soils. In: Alloway B.J. (ed.), Heavy Metals in Soils-Trace Metals and Metalloids in Soils and their Bioavailability, Environmental Pollution, Springer, Dordrecht: 12–50. DOI 10.1007/978-94-007-4470-7.AllowayB.J.2013. Sources of Heavy Metals and Metalloids in Soils. In: AllowayB.J. (ed.), Heavy Metals in Soils-Trace Metals and Metalloids in Soils and their Bioavailability, Environmental Pollution, Springer, Dordrecht: 12–50. 10.1007/978-94-007-4470-7.Open DOISearch in Google Scholar
Alloway B.J., Ayres D.C., 1999. Chemical basis of environmental pollution. PWN, Warsaw.AllowayB.J.AyresD.C.1999. Chemical basis of environmental pollution. PWN, Warsaw.Search in Google Scholar
Arenas-Lago D., Vega F.A., Silva L.F.O., Andrade M.L., 2014. Copper distribution in surface and subsurface soil horizons. Environmental Science and Pollution Research 21: 10997–11008. DOI 10.1007/s11356-014-3084-4.Arenas-LagoD.VegaF.A.SilvaL.F.O.AndradeM.L.2014. Copper distribution in surface and subsurface soil horizons. Environmental Science and Pollution Research21: 10997–11008. 10.1007/s11356-014-3084-4.Open DOISearch in Google Scholar
Bednarek R., Dziadowiec H., Pokojska U., Prusinkiewicz Z., 2004. Ecopedological studies. PWN, Warsaw.BednarekR.DziadowiecH.PokojskaU.PrusinkiewiczZ.2004. Ecopedological studies. PWN, Warsaw.Search in Google Scholar
Blum W.E.H., 1998. Soil degradation caused by industrialization and urbanization. Towards Sustainable Land Use 31: 755–766.BlumW.E.H.1998. Soil degradation caused by industrialization and urbanization. Towards Sustainable Land Use31: 755–766.Search in Google Scholar
Cabral-Pinto M.M., Marinho-Reis A.P., et al 2018. Human predisposition to cognitive impairment and its relation with environmental exposure to potentially toxic elements. Environmental Geochemistry and Health 40: 1767–1784. DOI 10.1007/s10653-017-9928-3.Cabral-PintoM.M.Marinho-ReisA.P.2018. Human predisposition to cognitive impairment and its relation with environmental exposure to potentially toxic elements. Environmental Geochemistry and Health40: 1767–1784. 10.1007/s10653-017-9928-3.Open DOISearch in Google Scholar
Charzyński P., Bednarek R., Chmurzyński M., 2011. Properties of soils formed on structures in the city of Toruń. In: Jankowski M. (ed.), Selected problems of genesis, systematics, management and soil protection in region of Kuyavia and Pomerania, PTSH, PTG, Toruń: 11-28.CharzyńskiP.BednarekR.ChmurzyńskiM.2011. Properties of soils formed on structures in the city of Toruń. In: JankowskiM. (ed.), Selected problems of genesis, systematics, management and soil protection in region of Kuyavia and Pomerania, PTSH, PTG, Toruń: 11–28.Search in Google Scholar
Charzyński P., Bednarek R., Chmurzyński M., 2011. Properties of soils formed on structures in the city of Toruń. In: Jankowski M. (ed.), Selected problems of genesis, systematics, management and soil protection in region of Kuyavia and Pomerania, PTSH, PTG, Toruń: 11–28.CharzyńskiP.HuliszP.2013. Solis forming on the builgings in Toruń. In: CharzyńskiP.HuliszP.BednarekR. (eds), Technogenic soils of Poland. PSSS, Toruń: 81–95.Search in Google Scholar
Charzyński P., Hulisz P., 2013. Solis forming on the builgings in Toruń. In: Charzyński P., Hulisz P., Bednarek R. (eds), Technogenic soils of Poland. PSSS, Toruń: 81–95.CharzyńskiP.HuliszP.BednarekR.PiernikA.WinklerM.ChmurzyńskiM.2015. Edifisols – a new soil unit of technogenic soils. Journal of Soils and Sediments15(8): 1675–1686. DOI10.1007/s11368-014-0983-4.Open DOISearch in Google Scholar
Dobrowolski R., Chabudziński Ł., 2021. Płaskowyż Świd-nicki (343.16). In: Richling A., Solon J., Macias A., Balon J., Borzyszkowski J., Kistowski M. (eds.), Regionalna geo-grafia fizyczna Polski, Bogucki Wydawnictwo Naukowe, Poznań: 431–432.DobrowolskiR.ChabudzińskiŁ.2021. Płaskowyż Świd-nicki (343.16). In: RichlingA.SolonJ.MaciasA.BalonJ.BorzyszkowskiJ.KistowskiM. (eds.), Regionalna geo-grafia fizyczna Polski, Bogucki Wydawnictwo Naukowe, Poznań: 431–432.Search in Google Scholar
El-Sherbiny Mohsen M., Ismail Ali I., EL-Hefnawy, Mohamed E., 2009. A preliminary assessment of potential ecological risk and soil contamination by heavy metals around a cement factory, western Saudi Arabia. Open Chemistry 17: 671–684. DOI 10.1515/chem-2019-0059. https://europolis.schuman.pl/raport/(accessed 28 November 2023).El-Sherbiny MohsenM.Ismail AliI.EL-HefnawyMohamedE.2009. A preliminary assessment of potential ecological risk and soil contamination by heavy metals around a cement factory, western Saudi Arabia. Open Chemistry17: 671–684. 10.1515/chem-2019-0059. https://europolis.schuman.pl/raport/ (accessed28 November 2023).Open DOISearch in Google Scholar
Gałuszka A., 2007. A review of geochemical background concepts and an example using data from Poland. Environmental Geology 52: 861–870. DOI 10.1007/s00254-006-0528-2.GałuszkaA.2007. A review of geochemical background concepts and an example using data from Poland. Environmental Geology52: 861–870. 10.1007/s00254-006-0528-2.Open DOISearch in Google Scholar
Greinert A., 2015. The heterogeneity of urban soils in the light of their properties. Journal of Soils and Sendiments 15: 1725–1157. DOI 10.1007/s11368-014-1054-6.GreinertA.2015. The heterogeneity of urban soils in the light of their properties. Journal of Soils and Sendiments15: 1725–1157. 10.1007/s11368-014-1054-6.Open DOISearch in Google Scholar
Gruszecka-Kosowska A., Baran A., Wdowin M., Mazur-Ka-jta K., Czech T., 2020. The contents of the potentially harmful elements in the arable soils of southern Poland, with the assessment of ecological and health risks: a case study. Environmental Geochemistry and Health 42(2): 419–442. DOI 10.1007/s10653-019-00372-w.Gruszecka-KosowskaA.BaranA.WdowinM.Mazur-Ka-jtaK.CzechT.2020. The contents of the potentially harmful elements in the arable soils of southern Poland, with the assessment of ecological and health risks: a case study. Environmental Geochemistry and Health42(2): 419–442. 10.1007/s10653-019-00372-w.Open DOISearch in Google Scholar
Håkanson L., 1980. An ecological risk index for aquatic pollution control. A sedimentological approach. Water Research 14(8): 975–1001.HåkansonL.1980. An ecological risk index for aquatic pollution control. A sedimentological approach. Water Research14(8): 975–1001.Search in Google Scholar
Hong-gui D., Teng-feng G., Ming-Hui L., Xu D., 2012. Comprehensive assessment model on heavy metal pollution in soil. International Journal of Electrochemical Science 7(6): 5286–5296. DOI10.1016/S1452-3981(23)19621-0.Hong-guiD.Teng-fengG.Ming-HuiL.XuD.2012. Comprehensive assessment model on heavy metal pollution in soil. International Journal of Electrochemical Science7(6): 5286–5296. 10.1016/S1452-3981(23)19621-0.Open DOISearch in Google Scholar
Horváth A., Szűcs P., Bidló A., 2015. Soil condition and pollution in urban soils: evaluation of the soil quality in a Hungarian town. Journal of Soils and Sediments 15: 1825–1835. DOI 10.1007/s11368-014-0991-4.HorváthA.Sz?csP.BidlóA.2015. Soil condition and pollution in urban soils: evaluation of the soil quality in a Hungarian town. Journal of Soils and Sediments15: 1825–1835. 10.1007/s11368-014-0991-4.Open DOISearch in Google Scholar
Islam S., Ahmed K., Mamun H., Masunaga S., 2015. Potential ecological risk of hazardous elements in different landuse urban soils of Bangladesh. Science of The Total Environment 512: 94–102. DOI 10.1016/j.scitotenv.2014.12.100.IslamS.AhmedK.MamunH.MasunagaS.2015. Potential ecological risk of hazardous elements in different landuse urban soils of Bangladesh. Science of The Total Environment512: 94–102. 10.1016/j.scitotenv.2014.12.100.Open DOISearch in Google Scholar
IUSS Working Group WRB., 2022. World Reference Base for Soil Resources. International soil classification system for naming soils and creating legends for soil maps. 4th edition. International Union of Soil Sciences (IUSS), Vienna, Austria.IUSS Working Group WRB2022. World Reference Base for Soil Resources. International soil classification system for naming soils and creating legends for soil maps. 4th edition. International Union of Soil Sciences (IUSS), Vienna, Austria.Search in Google Scholar
Kabała C., Greinert A., Charzyński P., Uzarowicz Ł., 2020. Technogenic soils-soils of the year 2020 in Poland. Concept, properties and classification of technogenic soils in Poland. Soil Science Annual, 71(4). DOI 10.37501/soilsa/131609.KabałaC.GreinertA.CharzyńskiP.UzarowiczŁ.2020. Technogenic soils-soils of the year 2020 in Poland. Concept, properties and classification of technogenic soils in Poland. Soil Science Annual, 71(4). 10.37501/soil-sa/131609.Open DOISearch in Google Scholar
Kabata-Pendias A., Pendias H., 1993. Biogeochemia pierwiast-ków śladowych. PWN, Warsaw.Kabata-PendiasA.PendiasH.1993. Biogeochemia pierwiast-ków śladowych. PWN, Warsaw.Search in Google Scholar
Kantor P., Svedova B., Drozdova J., Raclavska H., Kucbel M,. Raclavsky K., 2018. Comparison of enrichment factors for heavy metals in urban street dust and air aerosols. Inżynieria Mineralna 19(1): 209–216. DOI 10.29227/IM-2018-01-33.KantorP.SvedovaB.DrozdovaJ.RaclavskaH.KucbelMRaclavskyK.2018. Comparison of enrichment factors for heavy metals in urban street dust and air aerosols. Inżynieria Mineralna19(1): 209–216. 10.29227/IM-2018-01-33.Open DOISearch in Google Scholar
Kowalska J.B., Mazurek R., Gąsiorek M., Zaleski T., 2018. Pollution indices as useful tools for the comprehensive evaluation of the degree of soil contamination–A review. Environmental Geochemistry and Health 40: 2395–2420. DOI 10.1007/s10653-018-0106-z.KowalskaJ.B.MazurekR.GąsiorekM.ZaleskiT.2018. Pollution indices as useful tools for the comprehensive evaluation of the degree of soil contamination–A review. Environmental Geochemistry and Health40: 2395–2420. 10.1007/s10653-018-0106-z.Open DOISearch in Google Scholar
Li X., Liu L., Wang Y., Luo G., Chen X., Yang X., Hall M.H.P., Guo R., Wang H., Cui J., He X., 2013. Heavy metal contamination of urban soil in an old industrial city (Shenyang) in Northeast China. Geoderma 192: 50–58. DOI 10.1016/j.geoderma.2012.08.011.LiX.LiuL.WangY.LuoG.ChenX.YangX.HallM.H.P.GuoR.WangH.CuiJ.HeX.2013. Heavy metal contamination of urban soil in an old industrial city (Shenyang) in Northeast China. Geoderma192: 50–58. 10.1016/j.geoderma.2012.08.011.Open DOISearch in Google Scholar
Markiewicz M., Hulisz P., Charzyński P., Piernik A., 2018. Characteristics of soil organic matter of edifisols–An example of techno humus system. Applied Soil Ecology 123: 509–512. DOI 10.1016/j.apsoil.2017.04.022.MarkiewiczM.HuliszP.CharzyńskiP.PiernikA.2018. Characteristics of soil organic matter of edifisols–An example of techno humus system. Applied Soil Ecology123: 509–512. 10.1016/j.apsoil.2017.04.022.Open DOISearch in Google Scholar
Martín J.A.R., Arias M.L., Corbí J.M.G., 2006. Heavy metals contents in agricultural topsoils in the Ebro basin (Spain). Application of the multivariate geoestatistical methods to study spatial variations. Environmental Pollution 144(3): 1001–1012. DOI 10.1016/j.envpol.2006.01.045.MartínJ.A.R.AriasM.L.CorbíJ.M.G.2006. Heavy metals contents in agricultural topsoils in the Ebro basin (Spain). Application of the multivariate geoestatistical methods to study spatial variations. Environmental Pollution144(3): 1001–1012. 10.1016/j.envpol.2006.01.045.Open DOISearch in Google Scholar
Maurya S., Abraham J.S., Somasundaram S., Toteja R., Gupta R., Makhija S., 2020. Indicators for assessment of soil quality: a mini-review. Environmental Monitoring and Assessment 192: 1–22. DOI 10.1007/s10661-020-08556-z.MauryaS.AbrahamJ.S.SomasundaramS.TotejaR.GuptaR.MakhijaS.2020. Indicators for assessment of soil quality: a mini-review. Environmental Monitoring and Assessment192: 1–22. 10.1007/s10661-020-08556-z.Open DOISearch in Google Scholar
Mazurek R., Kowalska J., Gąsiorek M., Zadrożny P., Józe-fowska A., Zaleski T., Kępka W., Tymczuk M., Orłowska K., 2017. Assessment of heavy metals contamination in surface layers of Roztocze National Park forest soils (SE Poland) by indices of pollution. Chemosphere 168: 839–850. DOI 10.1016/j.chemosphere.2016.10.126.MazurekR.KowalskaJ.GąsiorekM.ZadrożnyP.Józe-fowskaA.ZaleskiT.KępkaW.TymczukM.OrłowskaK.2017. Assessment of heavy metals contamination in surface layers of Roztocze National Park forest soils (SE Poland) by indices of pollution. Chemosphere168: 839–850. 10.1016/j.chemosphere.2016.10.126.Open DOISearch in Google Scholar
Mireles F., Davila J.I., Pinedo J.L., Reyes E., Speakman R.J., Glascock M.D., 2013. Assessing urban soil pollution in the cities of Zacatecas and Guadalupe, Mexico by instrumental neutron activation analysis. Microchemical Journal 103: 158–164. DOI 10.1016/j.microc.2012.02.009.MirelesF.DavilaJ.I.PinedoJ.L.ReyesE.SpeakmanR.J.GlascockM.D.2013. Assessing urban soil pollution in the cities of Zacatecas and Guadalupe, Mexico by instrumental neutron activation analysis. Microchemical Journal103: 158–164. 10.1016/j.microc.2012.02.009.Open DOISearch in Google Scholar
Muller G., 1969. Index of geo-accumulation in sediments of the Rhine River. Geojournal 2: 108–118.MullerG.1969. Index of geo-accumulation in sediments of the Rhine River. Geojournal2: 108–118.Search in Google Scholar
Pasieczna A., 2003. Atlas zanieczyszczeń gleb miejskich w Polsce. PIG, Warsaw.PasiecznaA.2003. Atlas zanieczyszczeń gleb miejskich w Polsce. PIG, Warsaw.Search in Google Scholar
Picket S.T., Cadenasso M.L., 2009. Altered resources, disturbance and heterogeneity: a framework for comparing urban and non-urban soils. Urban Ecosystem 12: 23–44. DOI 10.1007/s11252-008-0047-x.PicketS.T.CadenassoM.L.2009. Altered resources, disturbance and heterogeneity: a framework for comparing urban and non-urban soils. Urban Ecosystem12: 23–44. 10.1007/s11252-008-0047-x.Open DOISearch in Google Scholar
Plak A., 2007. Czynniki kształtujące zawartość i formy arsenu w glebach aglomeracji lubelskiej. Acta Agrophysica. Instytut Agrofizyki im. Bohdana Dobrzańskiego PAN, Lublin.PlakA.2007. Czynniki kształtujące zawartość i formy ar-senu w glebach aglomeracji lubelskiej. Acta Agrophysica. Instytut Agrofizyki im. Bohdana Dobrzańskiego PAN, Lublin.Search in Google Scholar
Plak A., 2018. Funkcje miasta a zawartość i rozmieszczenie metali ciężkich, metaloidów i pierwiastków ziem rzadkich w glebach miejskich. UMCS, Lublin.PlakA.2018. Funkcje miasta a zawartość i rozmieszczenie metali ciężkich, metaloidów i pierwiastków ziem rzadkich w glebach miejskich. UMCS, Lublin.Search in Google Scholar
Pratush A., Kumar A., Hu Z., 2018. Adverse effect of heavy metals (As, Pb, Hg, and Cr) on health and their bioremediation strategies: A review. International Microbiology 21: 97–106. DOI 10.1007/s10123-018-0012-3.PratushA.KumarA.HuZ.2018. Adverse effect of heavy metals (As, Pb, Hg, and Cr) on health and their bioremediation strategies: A review. International Microbiology21: 97–106. 10.1007/s10123-018-0012-3.Open DOISearch in Google Scholar
Regulation of the Minister of the Environment (2016) Assessment procedures for the land surface pollution. Regulation No. 1395.Regulation of the Minister of the Environment (2016) Assessment procedures for the land surface pollution. Regulation No. 1395.Search in Google Scholar
Sheldric B.H., Wang C., 1993. Particle size distribution. In: Carter M.R. (ed) Soil Sam Methods Analysis. Lewis Publishers, Ottawa: 499–509.SheldricB.H.WangC.1993. Particle size distribution. In: CarterM.R. (ed) Soil Sam Methods Analysis. Lewis Publishers, Ottawa: 499–509.Search in Google Scholar
Soliman N.F, Nasr S.M., Okbah M.A., 2015. Potential ecological risk of heavy metals in sediments from the Mediterranean coast, Egypt. Journal of Environmental Health Science and Engineering 13: 1–12. DOI 10.1186/s40201-015-0223-x. https://stat.gov.pl/(accessed 28 November 2023).SolimanN.FNasrS.M.OkbahM.A.2015. Potential ecological risk of heavy metals in sediments from the Mediterranean coast, Egypt. Journal of Environmental Health Science and Engineering13: 1–12. 10.1186/s40201-015-0223-x. https://stat.gov.pl/ (accessed 28 November 2023).Open DOISearch in Google Scholar
Superson J., Reder J., Demczuk P., 2018. Regionalne uwarun-kowania rozwoju rzeźby terenu Lublina. Annales UMCS 73: 107–124. DOI 10.17951/b.2018.73.0.107-124.SupersonJ.RederJ.DemczukP.2018. Regionalne uwarun-kowania rozwoju rzeźby terenu Lublina. Annales UMCS73: 107–124. 10.17951/b.2018.73.0.107-124.Open DOISearch in Google Scholar
Sutherland R.A., 2000. Bed sediment-associated trace metals in an urban stream, Oahu, Hawaii. Environmental Geology 39: 611–627. DOI 10.1007/s002540050473.SutherlandR.A.2000. Bed sediment-associated trace metals in an urban stream, Oahu, Hawaii. Environmental Geology39: 611–627. 10.1007/s002540050473.Open DOISearch in Google Scholar
Systematyka gleb Polski, 2019. Polskie Towarzystwo Gle-boznawcze, Komisja Genezy Klasyfikacji i Kartografii Gleb. Wydawnictwo Uniwersytetu Przyrodniczego we Wrocławiu, Polskie Towarzystwo Gleboznawcze, Wroclaw–Warsaw.Systematyka gleb Polski, 2019. Polskie Towarzystwo Gle-boznawcze, Komisja Genezy Klasyfikacji i Kartografii Gleb. Wydawnictwo Uniwersytetu Przyrodniczego we Wrocławiu, Polskie Towarzystwo Gleboznawcze, Wroclaw–Warsaw.Search in Google Scholar
Szuszkiewicz M., Łukasik A., Magiera T., Mendakiewicz M., 2016. Combination of geo-pedo-and technogenic magnetic and geochemical signals in soil profiles e Diversification and its interpretation: A new approach. Environmental Pollution 214: 464–477. DOI 10.1016/j.en-vpol.2016.04.044.SzuszkiewiczM.ŁukasikA.MagieraT.MendakiewiczM.2016. Combination of geo-pedo-and technogenic magnetic and geochemical signals in soil profiles e Diversification and its interpretation: A new approach. Environmental Pollution214: 464–477. 10.1016/j.en-vpol.2016.04.044.Open DOISearch in Google Scholar
Tomlinson D.L., Wilson J.G., Harris C.R., Jeffney D.W., 1980. Problems in the assessment of heavy metal levels in estuaties and the formation of a pollution index. Hel-goländer Meeresuntersuchungen 33: 566–572. DOI 10.1007/BF02414780.TomlinsonD.L.WilsonJ.G.HarrisC.R.JeffneyD.W.1980. Problems in the assessment of heavy metal levels in estuaties and the formation of a pollution index. Hel-goländer Meeresuntersuchungen33: 566–572. 10.1007/BF02414780.Open DOISearch in Google Scholar
U.S. Departament of Agriculture, 2002. Field Book for Describing and Sampling Soils. NSSC, NRCS, Lincoln.U.S. Departament of Agriculture, 2002. Field Book for Describing and Sampling Soils. NSSC, NRCS, Lincoln.Search in Google Scholar
United Nations, Department of Economic and Social Affairs, Population Division, 2019. World Urbanization Prospects: The 2018 Revision (ST/ESA/SER.A/420), New York.United Nations, Department of Economic and Social Affairs, Population Division, 2019. World Urbanization Prospects: The 2018 Revision (ST/ESA/SER.A/420), New York.Search in Google Scholar
Van Reeuwijk L.P., 2002. Procedures for soil analysis. Report No 9. ISRIC, FAO, Rome.Van ReeuwijkL.P.2002. Procedures for soil analysis. Report No 9. ISRIC, FAO, Rome.Search in Google Scholar
Wang X., Qin Y., 2007. Some characteristics of the distribution of heavy metals in urban topsoil of Xuzhou, China. Environmental Geochemistry and Health 29: 11–19. DOI 10.1007/s10653-006-9052-2.WangX.QinY.2007. Some characteristics of the distribution of heavy metals in urban topsoil of Xuzhou, China. Environmental Geochemistry and Health29: 11–19. 10.1007/s10653-006-9052-2.Open DOISearch in Google Scholar
Wang X., Qin Y., Sang S.X., 2005. Accumulation and sources of heavy metals in urban topsoils: a case study from the city of Xuzhou, China. Environmental Geology 48: 101–10. DOI 10.1007/s00254-005-1270-x.WangX.QinY.SangS.X.2005. Accumulation and sources of heavy metals in urban topsoils: a case study from the city of Xuzhou, China. Environmental Geology48: 101–10. 10.1007/s00254-005-1270-x.Open DOISearch in Google Scholar
Wieczorek K., Anna T., Małgorzata S., Wojciech M. Wolf, 2020. Comprehensive Evaluation of Metal Pollution in Urban Soils of a Post-Industrial City-A Case of Łódź, Poland. Molecules 25,18: 4350. DOI 10.3390/mole-cules25184350.WieczorekK.AnnaT.MałgorzataS.WojciechM.Wolf2020. Comprehensive Evaluation of Metal Pollution in Urban Soils of a Post-Industrial City-A Case of Łódź, Poland. Molecules25,18: 4350. 10.3390/mole-cules25184350.Open DOISearch in Google Scholar
Yang J.L., Zhang G.L., 2015. Formation, characteristics and eco-environmental implications of urban soils–A review. Soil Science and Plant Nutrition 61(sup1): 30–46. DOI 10.1080/00380768.2015.1035622.YangJ.L.ZhangG.L.2015. Formation, characteristics and eco-environmental implications of urban soils–A review. Soil Science and Plant Nutrition61(sup1): 30–46. 10.1080/00380768.2015.1035622.Open DOISearch in Google Scholar
Gülşen Y., Tokalıoğlu Ş., 2016. Heavy metal speciation in various grain sizes of industrially contaminated street dust using multivariate statistical analysis. Ecotoxicology and Environmental Safety 124: 369–376. DOI 10.1016/j.ecoenv.2015.11.006.GülşenY.TokalıoğluŞ.2016. Heavy metal speciation in various grain sizes of industrially contaminated street dust using multivariate statistical analysis. Ecotoxicology and Environmental Safety124: 369–376. 10.1016/j.ecoenv.2015.11.006.Open DOISearch in Google Scholar
Zgłobicki W., Telecka M., Skupiński S., Pasierbińska A., Kozieł M., 2018. Assessment of heavy metal contamination levels of street dust in the city of Lublin, E Poland. Environmental Earth Sciences 774: 1-11. DOI 10.1007/s12665-018-7969-2.ZgłobickiW.TeleckaM.SkupińskiS.PasierbińskaA.KoziełM.2018. Assessment of heavy metal contamination levels of street dust in the city of Lublin, E Poland. Environmental Earth Sciences774: 1-11. 10.1007/s12665-018-7969-2.Open DOISearch in Google Scholar
Zhang G., Zhu Y., Fu B., 2003. Quality changes of soils in urban and suburban areas and its eco-environmental im-pacts-A review. Acta Ecologica Sinica 23(3): 539–546.ZhangG.ZhuY.FuB.2003. Quality changes of soils in urban and suburban areas and its eco-environmental im-pacts-A review. Acta Ecologica Sinica23(3): 539–546.Search in Google Scholar
Zhao M., Cheng C., Zhou Y., Li X., Shen S., Song C., 2022. A global dataset of annual urban extents (1992–2020) from harmonized nighttime lights. Earth System Science Data 14(2): 517–534. DOI 10.5194/essd-14-517-2022.ZhaoM.ChengC.ZhouY.LiX.ShenS.SongC.2022. A global dataset of annual urban extents (1992–2020) from harmonized nighttime lights. Earth System Science Data14(2): 517–534. 10.5194/essd-14-517-2022.Open DOISearch in Google Scholar