Abstract
Changes in heavy metal speciation and uptake by maize in a soil before and after washing with chelating organic acids, citric acid, tartaric acid and ethylenediaminetetraacetic acid were assessed. A sandy loam was collected from the vicinity of the Benue industrial layout, Makurdi, Nigeria and spiked with a quinternary mixture of nickel, copper, zinc, cadmium and lead nitrates to achieve higher levels of contamination. Batch soil washing experiments performed on 1.0 g portions of the spiked soil using 0.05 M chelating agents at a solid:liquid ratio of 1:25 showed that washing efficiencies varied in the order: ethylenediaminetetraacetic acid> citric acid> tartaric acid with metal extraction yields typically following the sequence, copper> nickel> zinc> cadmium> lead. Sequential extractions proposed by the European Communities Bureau of Reference method used to assess the redistribution of heavy metal forms in the soil showed that apparent metal mobilities were reduced upon soil washing. Citric acid removed most of the metals hitherto associated with the exchangeable and reducible fractions; tartaric acid, the exchangeable metal pools; and ethylenediaminetetraacetic acid, the non-residual metal pools. Heavy metal assay of harvested biomass of maize grown on unwashed and washed soil samples indicated that metal transfer coefficients, decreased in the order of treatment: ethylenediaminetetraacetic acid <citric acid <tartaric acid <unwashed soil. Ethylenediaminetetraacetic acid and citric acid appeared to offer greater potentials as chelating agents to use in remediating the high permeability soil. Tartaric acid, however, is recommended in events of moderate contamination.
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References
Atafar, Z.; Mesdaghinia, A.R.; Nouri, J.; Homaee, M.; Yunesian, M.; Ahmadimoghaddam, M.; Mahvi, A. H., (2010). Effect of fertilizer application on soil heavy metal concentration. Environ. Monitor. Assess., 160(1–4), 83–89 (7 pages).
Battaglia, A.; Calace, N.; Nardi, E.; Petronio, B.M.; Pietroletti, M., (2006). Reduction of Pb and Zn bioavailable forms in metal polluted soils due to paper mill sludge addition:Effects on Pb and Zn transferability to barley. Bioresour. Tech., 98(16), 2993–2999 (7 pages).
Chao, J. C.; Hong, A.; Okey, R. W.; Peters, R. W., (1998). Selection of chelating agents for remediation of radionuclide-contaminated soil. Proceedings of the 1998 Conference on Hazardous Waste Research, 142–155.
Chu, W.; Chan, K. H., (2003). The mechanism of the surfactant-aided soil washing system for hydrophobic and partial hydrophobic organics. Sci. Total Environ., 307(1–3), 83–92 (10 pages).
D’amore, J. J.; Al-Abed, S. R.; Scheckel, K. G.; Ryan, J. A., (2005). Methods of speciation of metals in soils. J. Environ. Qual., 34(5), 1707–1745 (38 pages).
Davies, A. P.; Singh, I., (1995). Washing of zinc (Zn) from contaminated soil column. J. Environ. Eng., 121(2), 174–185 (12 pages).
Dikinya, O.; Areola, O., (2010). Comparative analysis of heavy metal concentration in secondary treated wastewater irrigated soils cultivated by different crops. Int. J. Environ. Sci. Tech., 7(2), 337–346 (10 pages).
Doumett, S.; Lamperi, L.; Checchini, L.; Azzarello, E.; Mugnai, S.; Mancuso, S.; Petruzzelli, G.; Del Bubba, M., (2008). Heavy metal distribution between contaminated soil and Paulownia tomentosa, in a pilot-scale assisted phytoremediation study: Influence of different complexing agents. Chemosphere, 72(10), 1481–1490 (10 pages).
Ehsan, S.; Prasher, S. O.; Marshall, W. D., (2006). A washing procedure to mobilize mixed contaminants from soil: II. Heavy metals. J. Environ. Qual., 35(6), 2084–2091 (8 pages).
Fawzy, E. M., (2008). Soil remediation using in-situ immobilization techniques. Chem. Eco., 24(2), 147–156 (10 pages).
Gao, Y.; He, J.; Ling, W.; Hu, H.; Liu, F., (2003). Effects of organic acids on copper and cadmium desorption from contaminated soils. Environ. Int., 29(5), 613–618 (6 pages).
GOC, (2003) Site Remediation Technologies: A Reference Manual, Contaminated Sites Working Group, Ontario, Chapter 6.
Golia, E. E.; Tsiropoulos, N. G; Dimirkou, A.; Mitsios, I., (2007). Distribution of heavy metals of agricultural soils of central Greece using the modified BCR sequential extraction method. Int. J. Environ. Anal. Chem., 87(13–14), 1053–1063 (11 pages).
Kabala, C.; Singh, B. R., (2001 ). Fractionation and mobility of copper, lead and zinc in soil profiles in the vicinity of a copper smelter. J. Environ. Qual, 30(2), 485–492 (8 pages).
Ke, X.; Li, P.; Zhou, Q.; Zhang, Y.; Sun, T., (2006). Removal of heavy metals from a contaminated soil using tartaric acid. J. Environ. Sci. (China), 18(4), 727–733 (7 pages).
Khodadoust, A. P.; Reddy, K. R.; Maturi, K., (2005). Effect of different extraction agents on metal and organic contaminant removal from a field soil. J. Hazard. Mater., 117(1), 15–24 (10 pages).
Kirpichtchikova, T. A.; Manceau, A.; Spadini, L; Panfili, F.; Marcus, M. A.; Jacquet, T., (2006). Speciation and solubility of heavy metals in contaminated soil using X-ray microfluorescence, EXAFS spectroscopy, chemical extraction, and thermodynamic modeling. Geochim. Cosmochim. Acta, 70(9), 2163–2190 (28 pages).
Kord B.; Mataji A.; Babaie S., (2010). Pine (Pinus eldarica Medw.) needles as indicator for heavy metals pollution. Int. J. Environ. Sci. Tech., 7(1), 79–84 (6 pages).
Labanowski, J.; Monna, F.; Bermond, A.; Cambier, P.; Fernandez, C.; Lamy, I.; van Oort, F., (2008). Kinetic extractions to assess mobilization of Zn, Pb, Cu, and Cd in a metal-contaminated soil: EDTA vs citrate. Environ. Pollut., 152(3), 693–701 (9 pages).
Maturi, K.; Reddy, K. R., (2008). Extractants for the removal of mixed contaminants from soils. Soil Sed. Contamin., 17(6), 586–608 (23 pages).
Naidu, R.; Harter, R. D., (1998). Effect of different organic ligands on cadmium sorption and extractability from soils. Soil Sc. Soc. Am. J., 62(3), 644–650 (7 pages).
Nolan, A. L.; Zhang, H.; McLaughlin, M. J., (2005). Prediction of zinc, cadmium, lead and copper availability to wheat in contaminated soils using chemical speciation, diffusive gradients in thin films, extraction and isotopic dilution techniques. J. Environ. Qual., 34(2), 496–507 (12 pages).
Norvell, W. A., (1991). Reactions of metal chelates in soils and nutrient solutions. Mortverdt, J. J., Cox, F. R., Shuman, L. M., Welch, R.M. (Eds.), Micronutrients in Agriculture (2nd. Ed.), Soil Science Society of America, Wiscosin.
Nouri, J., (1980). Heavy metals in sewage sludge, soils amended with sludge and their uptake by plants. Ph.D. dissertation, Westfield College, University of London.
Nouri, J.; Mahvi, A. H.; Babaei, A.; Ahmadpour, E., (2006). Regional pattern distribution of groundwater fluoride in the Shush aquifer of Khuzestan County Iran. Fluoride, 39(4), 321–325 (5 pages).
Nouri, J.; Khorasani, N.; Lorestani, B.; Karami, M.; Hassani, A.H.; Yousefi, N. (2009). Accumulation of heavy metals in soil and uptake by plant species with phytoremediation potential. Environ. Earth Sci., 59(2), 315–323 (9 pages).
Nouri, J.; Mahvi, A.H.; Jahed, G.R.; Babaei, A.A. (2008). Regional distribution pattern of groundwater heavy metals resulting from agricultural activities. Environ. Geo., 55(6), 1337–1343 (7 pages).
Nwachukwu, M. A.; Feng, H.; Alinnor, J., (2010). Assessment of heavy metal pollution in soil and their implications within and around mechanic villages. Int. J. Environ. Sci. Tech., 7(2), 347–358 (12 pages).
Nwuche, C. O.; Ugoji, E. O., (2008). Effects of heavy metal pollution on the soil microbial activity. Int. J. Environ. Sci. Tech., 5(3), 409–414 (6 pages).
Okezie, C.N., (1985). Geological Map of Nigeria. Div. Geological Survey, Lagos, Nigeria.
Peters, R. W., (1999). Chelant extraction of heavy metals from contaminated soils. J. Hazard. Mater., 66(2), 151–210 (60 pages).
Reddy, K. R.; Chinthamreddy, S., (2000). Comparison of extractants for removing heavy metals from contaminated clayey soils. Soil Sediment Contaminat., 9(5), 449–462 (14 pages).
Soil Survey Staff, (1998). Keys to Soil Taxonomy (8th. Ed.), USDA-NRCS, Center Technology Evaluation Report TE-98-01, 37.
Sun, B.; Zhao, F. J.; Lombi, E.; McGrath, S. P., (2001). Leaching of heavy metals from contaminated soils using EDTA. Environ. Pollut., 113(2), 111–120 (10 pages).
Tejowulan, R. S.; Hendershot, W. H., (1998). Removal of trace metals from contaminated soils using EDTA incorporating resin trapping techniques. Environ. Pollut., 103(1), 135–142 (8 pages).
Tokalioglu, S.; Kartal, S.; Gültekin, A., (2006). Investigation of heavy-metal uptake by vegetables growing in contaminated soils using the modified BCR sequential extraction method. Int. J. Environ. Anal. Chem., 86(6), 417–430 (14 pages).
Ure, A. M.; Quevauviller, P. H.; Muntau, H.; Griepink, B., (1993). Speciation of heavy metals in soils and sediments. An account of the improvement and harmonization of extraction techniques undertaken under the auspices of the BCR of Commission of the European Communities. Int. J. Environ. Anal. Chem., 51(1–4), 135–151 (17 pages).
USEPA (1990). Engineering bulletin: Soil washing treatment, EPA/540/2-90/017, Office of Emergency and Remedial Response, Washington, D.C.
USEPA (1995). Contaminants and remedial options at selected metal contaminated sites, EPA/542/R-97/004, Office of Research and Development, Washington, D.C.
Wood, A. L.; Bouchard, D. C.; Brusseau, M. L.; Rao, S. C., (1990). Cosolvent effect on sorption and mobility of organic contaminants in soils. Chemosphere, 21(4–5), 575–587 (13 pages).
Wood, P., (1997). Remediation Methods for Contaminated Sites, in: Hester, R. and Harrison, R. (Eds.), Contaminated Land and Its Reclamation, Royal Society of Chemistry, Cambridge.
Yu, J.; Klarup, D., (1994). Extraction kinetics of copper, zinc, iron, and manganese from contaminated sediment using disodium Ethylenediaminetetraacetate. Water Air Soil Pollut., 75(3–4), 205–225 (21 pages).
Zhang, H.; Zheng, L.C.; Yi, X.Y., (2009). Remediation of soil co-contaminated with pyrene and cadmium by growing maize (Zea mays L). Int. J. Environ. Sci. Tech., 6(2), 249–258 (10 pages).
Zvinowanda, C. M.; Okonkwo, J. O.; Shabalala, P. N.; Agyei, N. M., (2009). A novel adsorbent for heavy metal remediation in aqueous environments. Int. J. Environ. Sci. Tech., 6(3), 425–434 (10 pages).
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Wuana, R.A., Okieimen, F.E. & Imborvungu, J.A. Removal of heavy metals from a contaminated soil using organic chelating acids. Int. J. Environ. Sci. Technol. 7, 485–496 (2010). https://doi.org/10.1007/BF03326158
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DOI: https://doi.org/10.1007/BF03326158