References
- A. Chrzan, G. Formicki, Content of Heavy Metals in Soils
in Different Seasons, In: Proceedings of ECOpole, Opole
University/Society of Ecological Chemistry and Engineering,
2012.
- A. Skowroński, Sustainable development as the perspective
of further civilisation development, Problemy Ekorozwoju,
1 (2006) 47–57.
- A. Gałązka, Soil contamination with petroleum-derived
substances, including biological methods of their purification,
Kosmos, 64 (2015) 145–164.
- E. Koshlaf, A.S. Ball, Soil bioremediation approaches for
petroleum hydrocarbon polluted environments, AIMS
Microbiol.,
3 (2017) 25–49.
- B. Yaron, R. Calvet, R. Prost, Soil Pollution: Processes and
Dynamics, Springer, Berlin, 1996.
- L. Bandura, A. Woszuk, D. Kołodynska, W. Franus, Application
of mineral sorbents for removal of petroleum substances:
a review, Minerals, 7 (2017) 37.
- A.M.G. Figueiredo, J. Enzweiler, S.P. Camargo, J. Sígolo,
F.C. Gumiero, A. Pavese, F. Milian, Metal concentration in
urban park soils of Sao Paulo, J. Radioanal. Nucl. Chem.,
280 (2009) 419–425.
- H. Różański, D. Włodkówic, The effects of oil-related pollutants
on the natural environment, Wszechświat Pismo Przyrodnicze,
7–9 (2002) 223–226.
- M. Ali, M. Al.-Bared, M. Marto, N. Latifi, Utilization of recycled
tiles and tyres in stabilization of soil and production of
construction materials – a state-of-the-art review, J. Civ. Eng.,
22 (2018) 3860–3874.
- G. Gordon, I. Stavi, U. Shavit, R. Rosenzweig, Oil spill effects
on soil hydrophobicity and related properties in a hyper-arid
region, Geoderma, 312 (2018) 114–120.
- E. Martinez-Mera, A. Terregroza-Espinosa, T. Crissien-Borrero,
J. Marrugo-Negrete, L. Gonzalez-Marquez, Evaluation of
contaminants in agricultural soils in an Irrigation District in
Colombia, Heliyon, 5 (2019), doi: 10.1016/j.heliyon.2019.e02217.
- A.N. Gennadiev, Y.I. Pikovskii, A.S. Tsibart, M.A. Smirnova,
Hydrocarbons in soils: origin, composition, and behavior
(review), Eurasian Soil Sci., 48 (2015) 1076–1089.
- N. Gmitrzuk, Wpływ roślinności na rozkład substancji
ropopochodnych-potencjalne możliwości w podczyszczaniu
wód opadowych, Ochrona Środowiska i Zasobów Naturalnych,
50 (2011) 193–201.
- C.P. Devatha, A. Vishnu Vishal, J. Purna Chandra Rao,
Investigation of physical and chemical characteristics on soil
due to crude oil contamination and its remediation, Appl.
Water Sci., 9 (2019) 1–10, doi: 10.1007/s13201-019-0970-4.
- J. Rakowska, K. Radwan, Z. Ślosorz, E. Pietraszek, M. Łudzik,
P. Suchorab, Removal of Petroleum Substances from Roads
and Lands, CNBOP-PIB, ISBN: 978-83-61520-53-5, National
Research Institute – Józefów/Scientific and Research Center for
Fire Protection, 2012.
- Traffic Intensity on Warsaw Street in Kielce, Available at:
https://kielce.wyborcza.pl/kielce/7,47262,24538893,wyremont
uja-newralgiczne-skrzyzowanie-bo-nawierzchnia-fatalna.html
(accessed May 05, 2019).
- Ordinance of the Minister of the Environment of 5 September
2016 on How to Conduct an Assessment of Land Surface
Pollution, OJ.165.1359, Poland, 2016.
- N. Das, P. Chandran, Microbial degradation of petroleum
hydrocarbon contaminants, Biotechnol. Res. Int., 2011 (2011)
1–13, doi: 10.4061/2011/941810.
- PN-ISO 10381-1 Soil Quality, Sampling, Part 1: Guidance on the
Design of Sampling Programmes.
- PN-ISO 10381-2 Soil Quality, Sampling — Part 2: Guidance on
Sampling Techniques.
- PN-ISO 10390:1997, Soil Quality: PH Determination.
- PN-83C-97555.04, Activated Carbons, Research Methodology,
Determination of Adsorption Value of Iodine.
- E. Bezak-Mazur, M. Dańczuk, Sorption capacity of conditioned
sewage sludge in environmental conditions, Arch. Waste
Manage. Environ. Prot., 15 (2013) 87–92.
- C. Kabała, A. Karczewska, Methodology of Laboratory Analysis
of Soils and Plants, Vol. 8, Wydanie, Wrocław, 2017.
- PN-V-04007-Gleba, Water and Sewage, Research on the Content
of Crude Oil and Its Components, Determination of Non-Polar
Aliphatic Hydrocarbons by Infrared Spectrophotometry.
- EN-13346:2000, Characterization of Sludges, Determination
of Trace Elements and Phosphorous, Aqua Regia Extraction
Methods.
- Campus of the Kielce University of Technology, Map of Kielce
from the “Google Maps” Website (accessed May 05, 2019).
- PN-EN ISO 14688-2:2018-05, Geotechnical Research, Marking,
identification and classification of land, Vol. 2, Classification
rules.
- T.L. de Pastrovich, Protecting Groundwater from Oil Pollution,
Concawe, Water Pollution Special Task Force No. 11, 1979.
- H.C. Buckman, N.C. Brandy, Soil and Its Properties, PWRiL,
Warszawa, 1971.
- M. Widłak, The variability of selected parameters of arable
soils during the vegetation cycle of plants, Rocznik Ochrona
Środowiska, 18 (2016) 803–814.
- F.M. Bento, F.A.O. Camargo, B. Okeke, Comparative bioremediation
of soils contaminated with diesel oil by natural
attenuation, biostimulation and bioaugmentation, Bioresour.
Technol., 96 (2005) 1049–1055.
- A. Grobelak, M. Kacprzak, K. Fijałkowski, Phytoremediation
- the underestimated potential of plants in cleaning up the
environment, J. Ecol. Health, 14 (2010) 276–280.
- Plant Cleansing, Garden, 2011. Available at: https://www.zszp.
pl/pliki/MPO09-Fitoremediacja.pdf (accessed May 05, 2019).
- D. Trang, L. Byeong-Kyu, Determining contamination level of
heavy metals in road dust from busy traffic areas with different
characteristics, J. Environ. Manage., 92 (2010) 554–562.