Estudo da labilidade de espécies metálicas empregando difusão em filmes finos por gradiente de concentração (DGT) em água superficial e solo da região de Ponta Grossa, Paraná
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Universidade Estadual de Ponta Grossa
Abstract
The quality of water and soil resources is fundamental for sustainability and human well-
being, being directly affected by the presence of trace metals, which can be non-degradable
environmental contaminants, toxic, and bioaccumulative. Assessing the chemical speciation
of these metals is essential as their mobility, toxicity, and bioavailability critically depend on
the forms and chemical species present. The Diffusion in Thin Films with a Gradient of
Concentration technique allows for in situ determination of labile metal fractions in natural
waters, soils, and sediments. DGT (Diffusive gradients in thin films) offers advantages such
as: passive sampling, pre-concentration capability, and minimal sample alteration due to
collection. However, traditional DGT devices use toxic synthetic materials and have high
export costs. In this context, an alternative DGT device was developed using agarose
hydrogel, a more environmentally benign material, for the diffusive phase and a Chelex®-100
resin-impregnated phase for studying the behavior of metal species in environmental water
and soil samples from Ponta Grossa (Paraná, Brazil), an area with limited scientific data on
these species in environmental samples. Initial studies were conducted with agarose hydrogels
for the diffusive and binding phases with homemade devices. After determining the diffusion
coefficient (D) and elution coefficient (ƒe) values for Cd, Cu, and Cr for the prepared DGT
devices, indicating their adequacy and good elution efficiency, accuracy tests were performed
with aqueous solutions containing Cd(II), Cu(II), and Cr(III) without organic ligands. The
recovery values obtained for these metals were 100.36% ± 0.25% for cadmium, 86.14% ±
2.73% for copper, and 81.85% ± 1.20%, respectively. These values fall within the 100 ± 20%
range considered acceptable for commercial DGT devices, indicating the precision and
accuracy of the device in determining Cd, Cu, and Cr under conditions similar to those of a
natural water sample. The DGT devices were applied for 24 hours in surface water samples
collected from the Cará-Cará River in Ponta Grossa - Paraná. The total concentrations
determined in the samples were 0.57 μg L-1
for Cd, 2.2 μg L-1
for Cu, and 2.9 μg L-1
for Cr,
and the labile concentrations were 0.182 μg L-1
, 0.4 μg L-1
, and 0.39 μg L-1
for Cd, Cu, and
Cr, respectively. The bioavailable percentages in the water were 31.93% for Cd, 18.18% for
Cu, and 13.45% for Cr. The distribution of labile species in the Cará-Cará River revealed a
greater lability for Cd, followed by Cu and Cr(III). The results suggest that DGT devices with
agarose can be effectively used for speciation analysis. Subsequently, studies were conducted
on soil near the Cará-Cará River. This soil is classified by EMBRAPA as Latossolo Vermelho
Distrófico, with a major fraction of sand totaling 67.28%. The soil also had high values of
Silicon, Aluminum, and Iron oxides. Additionally, the soil pH is acidic (5.44), and its cation
exchange capacity is relatively low (8.16 cmolc dm-3
). The pseudototal metal concentrations
were determined using USEPA 3050B methodology, and the values obtained were 0.053 ±
0.27 and 20.25 ± 0.77 μg g-1
for Cd and Cu, respectively, which are below the levels
established by CONAMA Resolution 420/2009. However, the concentration determined by
DGT to predict the bioavailability of these elements showed that Cd (CDGT – 0.0053 μg g−1
)
is more available in the soil than Cu (CDGT – 0.0026 μg g−1
), with bioavailable percentages in
the soil being 10.53% for Cd and 0.015% for Cu. The R ratio, representing the relationship
between the bioavailable concentration estimated by DGT (CDGT) and the concentration in the
soil’s liquid phase (Csol), was 0.27 for Cadmium and 0.21 for Copper, indicating that
Cadmium, even in lower pseudototal concentrations, tends to be more mobile and bioavailable
in the soil from the Ponta Grossa region. Additionally, a study was conducted on soil enriched
with these metal species to assess the performance of the homemade DGT device in
determining the lability of Cd and Cu in contaminated soil samples. A linear relationship was
observed for increasing concentrations of Cd, whereas for Cu, which is naturally less
available, concentrations above 100 μg g−1
resulted in an R value exceeding 90%, indicating
that artificially contaminated soil can influence the accuracy of DGT measurements.
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COSTA, Karine Andréa da. Estudo da labilidade de espécies metálicas empregando difusão em filmes finos por gradiente de concentração (DGT) em água superficial e solo da região de Ponta Grossa, Paraná. 2024. Tese (Doutorado em Química) - Universidade Estadual de Ponta Grossa, Ponta Grossa, 2024.
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