References
- A. Kabata-Pendias, Trace Elements in Soils and Plants,
CRC Press, Boca Raton, 2010, 548 pp.
- E. Ociepa, P. Pachura, A. Ociepa-Kubicka, Effect of Fertilization
Unconventional Migration of Heavy Metals in the Soil-Plant
System, Inżynieria i Ochrona Środowiska, 2014, t. 17, nr 2, s.
325–338 (in Polish).
- R. Attinti, K.R. Barrett, R. Datta, D. Sarkar, Ethylenediaminedisuccinic
acid (EDDS) enhances phytoextraction of
lead by vetiver grass from contaminated residential soils in a
panel study in the field, Environ. Pollut., 225 (2017) 524–533.
- A. Kavehei, G.C. Hose, D.B. Gore, Effects of red earthworms
(Eisenia fetida) on leachability of lead minerals in soil, Environ.
Pollut., 237 (2018) 851–857.
- T. Chen, Q. Chang, J. Liu, J.G.P.W. Clevers, L. Kooistra,
Identification of soil heavy metal sources and improvement in
spatial mapping based on soil spectral information: a case study
in northwest China, Sci. Total Environ., 565 (2016) 155–164.
- L. Zhang, Z. Mo, J. Qin, Q. Li, Y. Wei, S. Ma, Y. Xiong, G. Liang,
L. Qing, Z. Chen, X. Yang, Z. Zhang, Y. Zou, Change of water
sources reduces health risks from heavy metals via ingestion
of water, soil, and rice in a riverine area, South China, Sci.
Total Environ., 530 (2015) 163–170.
- H.W. Mielke, T.P. Covington, P.W. Mielke Jr., F.J. Wolman,
E.T. Powell, C.R. Gonzales, Soil intervention as a strategy for
lead exposure prevention: the New Orleans lead-safe childcare
playground project, Environ. Pollut., 159 (2011) 2071–2077.
- EPA, Lead, 2019 (cited 8 November 2019). Available at: https://www.epa.gov/lead
- M. Ashrafi, S. Mohamad, I. Yusoff, F. Shahul Hamid,
Immobilization of Pb, Cd, and Zn in a contaminated soil using
eggshell and banana stem amendments: metal leachability and
a sequential extraction study, Environ. Sci. Pollut. Res. Int.,
22 (2015) 223–230.
- Journal of Laws of 2016 Item 1395, Regulation of the Minister
of the Environment, (in Polish).
- Journal of Laws of 2017 Item 2294, Regulation of the Minister
of Health, (in Polish).
- M. Moameri, M. Jafari, A. Tavili, B. Motasharezadeh, M.A. Zare
Chahouki, F.M. Diaz, Investigating lead and zinc uptake and
accumulation by Stipa hohenackeriana trin and rupr. in field and
pot experiments, Biosci. J., 34 (2018) 138–150.
- M. Moameri, M.A. Khalaki, Capability of Secale montanum
trusted for phytoremediation of lead and cadmium in soils
amended with nano-silica and municipal solid waste compost,
Environ. Sci. Pollut. Res., 26 (2019) 24315–24322.
- A. Ostrowska, S. Gawliński, Z. Szczubiałka, Methods of
Analysis and Assessment of the Properties of Soils and Plants
– Catalogue IEP, Warsaw, 1991 (in Polish).
- M.B. McBride, H.A. Shayler, H.M. Spliethoff, R.G. Mitchell,
L.G. Marquez-Bravo, G.S. Ferenz, J.M. Russell-Anelli, L. Casey,
S. Bachman, Concentrations of lead, cadmium and barium in
urban garden-grown vegetables: the impact of soil variables,
Environ. Pollut., 194 (2014) 254–261.
- T. Liu, F. Li, Z. Jin, Y. Yang, Acidic leaching of potentially toxic
metals cadmium, cobalt, chromium, copper, nickel, lead, and
zinc from two Zn smelting slag materials incubated in an acidic
soil, Environ. Pollut., 238 (2018) 359–368.
- StatSoft, Inc. 2001 STATISTICA 6.0 PL – Data Analysis Software
(in Polish).
- Journal of Laws of 2003 No. 37, Item 326, Regulation of the
Minister of Health (in Polish).
- Journal of Laws of 2006 No. 136, Item 964, Regulation of the
Minister of Construction (in Polish).