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1.
J Hazard Mater ; 266: 122-31, 2014 Feb 15.
Article in English | MEDLINE | ID: mdl-24389006

ABSTRACT

Phosphogypsum (PG) has been usually applied as Ca-amendment to reclaim sodic soils such as those in the marshland area of Lebrija (SW Spain). This work aimed at the effects of PG amendments on the uptake of trace-elements by tomato and its implications for food safety. A completely randomized experiment was performed using a representative soil from Lebrija in a greenhouse involving six replicates and four PG treatments equivalent to 0, 20, 60, and 200 Mg ha(-1). Soil-to-plant transfer factors (TFs) were determined for Be, B, Al, Ti, V, Cr, Mn, Fe, Co, Ni, Cu, Zn, As, Se, Sr, Mo, Ag, Cd, Sb, Cs, Ba, Tl, Pb, Th and U. The highest TF in shoots was observed for Cd (4.0; 1.5 in fruits), its concentration being increased with increasing PG doses due to its content in this metal (2.1 mg Cd kg(-1)PG). Phosphogypsum applying decreased the concentrations of Mn, Co and Cu in shoots; and of B, Cu, Sb, Cs, Ba, Tl and Th in fruits, however enhanced the accumulation of Se in fruits. Although Cd concentrations in tomato were below the maximum allowed levels in control pots (0 Mg PG ha(-1)), PG amendments above 60 Mg ha(-1) exceeded such limits.


Subject(s)
Calcium Sulfate/pharmacology , Metalloids/metabolism , Metals/metabolism , Phosphorus/pharmacology , Soil Pollutants/metabolism , Solanum lycopersicum/drug effects , Calcium Sulfate/chemistry , Environmental Monitoring , Food Safety , Fruit/drug effects , Fruit/metabolism , Solanum lycopersicum/metabolism , Metalloids/analysis , Metalloids/chemistry , Metals/analysis , Metals/chemistry , Phosphorus/chemistry , Plant Shoots/drug effects , Plant Shoots/metabolism , Soil Pollutants/analysis , Soil Pollutants/chemistry
2.
Sci Total Environ ; 403(1-3): 80-8, 2008 Sep 15.
Article in English | MEDLINE | ID: mdl-18602676

ABSTRACT

Phosphogypsum (PG), a by-product of the phosphate fertiliser industries, has been applied as soil amendment to reduce Na saturation in soils, as in the reclaimed marsh area from SW Spain, where available PG has a typical fingerprint of 710+/-40 Bq kg(-1) of (226)Ra, 165+/-15 Bq kg(-1) of (238)U and 2.8+/-0.4 mg kg(-1) of Cd. This work was focussed on the cumulative effects of PG amendments on the enrichment of these pollutants in cultivated soils and plants (Lycopersicum esculentum Mill L.) from the area studied, where PG has been applied since 1978 at recommended rates of 20-25 Mg ha(-1) every 2-3 years. A field experiment was conducted over three years to compare activity concentrations of (226)Ra ((214)Pb) and (238)U ((234)Th) in non-reclaimed soils, reclaimed soils with no additional PG application, and reclaimed soils with two additional PG applications. A non-significant effect of two PG amendments (in three years) was observed when compared with non-amended reclaimed plots. Nevertheless, a significant (p<0.05) enrichment of (226)Ra was observed in the surface horizon (0-30 cm) of reclaimed plots relative to deeper horizons and also when compared with the surface horizon of non-reclaimed soil (p<0.05), thereby revealing the cumulative effect of three decades of PG applications. Furthermore, the effect of a continuous application of PG was studied by analysing soils and tomato fruits from six commercial farms with different cumulative rates of PG applied. Cadmium concentrations in tomatoes, which were one order of magnitude higher than those found in tomatoes from other areas in South Spain, were positively correlated (r = 0.917) with (226)Ra-concentration in soils, which can be considered an accurate index of the cumulative PG rate of each farm.


Subject(s)
Calcium Sulfate/analysis , Fertilizers/analysis , Industrial Waste/analysis , Phosphorus/analysis , Soil Pollutants, Radioactive/analysis , Soil/analysis , Solanum lycopersicum/chemistry , Cadmium Compounds/analysis , Chemical Industry , Conservation of Natural Resources , Environmental Monitoring , Food Contamination/analysis , Radioisotopes/analysis , Radium/analysis , Spain , Uranium Compounds/analysis
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