CHARACTERIZATION OF SOILS IN THE ALMASU MARE AREA THROUGH THE DETERMINATION OF LEAD CONCENTRATIONS
DOI:
https://doi.org/10.24193/subbchem.2018.2.08Keywords:
mining area, “Radeş” dump, lead concentrationAbstract
The present study consisted in the determination of lead concentrations in soil samples and sterile material dumped collected from the Almașu Mare mining area. The lead concentration in the samples collected were determined by atomic adsorption spectrometry (AAS). In spite of the fact that all mines from area are nowadays inactive, the results of the chemical analysis showed that the soils in the area are still highly polluted with lead, except at the base of the “Radeș” dump, where the lead concentrations were below the intervention thresholds.
References
A. Buscaroli, Ecological Indicators, 2017, 82, 367.
M. Boroș, V. Micle, Scientific Papers. Series E. Land Reclamation, Earth Observation & Surveying, Environmental Engineering, 2014, Vol. III, 2285.
L. Wang, B. Ji, Y. Hu, R. Liu, W. Sun, Chemosphere, 2017, Vol.184, 594.
I.M. Sur, V. Micle, T. Gabor, Studia UBB Chemia, 2016, LXI, 3 (2), 364.
V. Farkas, A. Hegedűsova, S. Jakabova, C. Majdik, T. Pernyeszi, Studia UBB Chemia, 2011, 56(2), 65.
B. Alpaslan, M. Ali Yukselen, Water, Air and Soil Pollution, 2002, 133(1–4), 253.
G.A. Seilkhanova, A N. Imangaliyeva, D.N. Akbayeva, Z.Z. Kenzhalina, Studia UBB Chemia, 2017, 62(1), 35.
E.B. Culbard, I. Thornton, J. Watt, M. Wheatley, S. Moorcroft, M. Thompson, Journal of Environmental Quality, 1988,17, 226.
J. Watt, I. Thornton, J. Cotter-Howells, Applied Geochemistry, Supplementary, 1993, 2, 269.
A.A. Juwarkar, A. Nair, K.V. Dubey, S.K. Singh, S. Devotta, Chemosphere, 2017, 68(10), 1996.
A. Mahar, P. Wang, A. Ali, M. K. Awasthi, A.H. Lahori, Q. Wang, R. Li, Z. Zhang, Ecotoxicology and Environmental Safety, 2016, 126, 111.
R.R. Brooks, Microbiology, Archaeology, Mineral Exploration and Phytomining. CAB International, Wallingford, Oxford, UK, 1998, 384.
M. Rezvani, F. Zaefarian, Australian Journal of Agricultural Engineering, 2011, 2(4), 114.
L.Q. Ma, K.M. Komar, C. Tu, W. Zhang, T. Cai, E.D. Kenelly, Nature, 2001, 409, 579.
C. Cluis, Biotech J., 2004, 2, 60.
A.J.M. Baker, R.R. Brooks, Biorecovery, 1989, 1, 81.
W.H. Zhang, Y Cai, C. Tu, Q.L. Ma, Science of the Total Environment, 2002, 300, 167.
A.Q. Fayiga, L.Q. Ma, Science of the Total Environment, 2006, 359, 17.
J.M. Arocena, V.J.M. Mourik, A. Faz-Cano. Canadian Journal of Soil Science, 2012, Vol. 92, 243.
K. Rowshanbakht, M. Khamehchiyan, R.H Sajedi, M.E. Nikudel, Ecological Engineering, 2016, Vol. 89, 49.
R. Zornoza, M. Gómez-Garrido, S. Martínez-Martínez, M. Dolores, G. López, Á. Faz, Science of the Total Environment, 2017, Vol. 593 - 594, 357.
R. Budău, I. A. Timofte, N. Kopacz, Annals of the University of Oradea, Faculty of Environmental Protection, 2014, Vol. XXIII, 337.
S. Varvara, M. Popa, R. Bostan, G. Damian, Journal of Environmental Protection and Ecology, 2013, 14 (4), 1506.
ORDER 756/1997 published in Monitorul Oficial 303 from 06.11.1997, modified by Order 592/2002 published in Monitorul Oficial from 21.10.2002.
Mining Industry Strategy in Romania 2008-2020.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2018 Studia Universitatis Babeș-Bolyai Chemia
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.