| dc.description.abstract |
The utilization of nuclear methods has significant potential for human health and
sustainable environmental management. This study utilized various nuclear techniques
(alpha spectrometry, neutron activation analysis, and gamma-ray spectrometry) to
evaluate the sediment accumulation rate, elemental and radiological contamination
history, and ecological risks posed by elements in the Sundarban mangrove forest in
Bangladesh to develop a sustainable management strategy for the ecosystem. The mass
accumulation rates of sediments, determined for the first time in this area by 210Pb dating,
varied from 0.068 to 3.20 kg m -2 y -1, with an average of 0.61 kg m -2 y -1. The
contamination history of 11 metal(loid)s (Al, Ca, V, Cr, Fe, Ni, Cu, Zn, As, Hg, and Pb)
for this ecosystem has also been assessed. Different environmental contamination indices
suggested that Sundarban mangrove sediments have been contaminated by As.
Considering different sediment quality guidelines, it has been observed that Cr, Ni, and
As posed occasional adverse biological effects on marine organisms. This study also
evaluated the essential and toxic element contents of three widely used medicinal plant
leaves (Acanthus ilicifolius, Avicennia officinalis, and Xylocarpus mekongensis) of the
Sundarban mangrove ecosystem and the possible health risks associated with the
consumption of these plants for long time. The measured concentrations of the elements
have been compared with available WHO permissible limits, which indicated that the
average concentration of Zn in A. ilicifolius (41.2 ± 10.1 mg kg-1) is higher than that of
the permissible WHO limit (27 mg kg-1). The average concentrations of Cr in A. ilicifolius
(3.35 ± 0.37 mg kg-1) and X. mekongensis (4.02 ± 2.30 mg kg-1) are also higher than that
of the WHO permissible limit (2 mg kg-1). Nevertheless, the average daily intake of the
toxic elements is below the maximum tolerable daily intake (MTDI) values. In addition,
the natural radioactivity (226Ra, 232Th, and 40K) concentration levels of some medicinal
plants and soil cores of the Sundarban mangrove forest in Bangladesh have been assessed
using a gamma-ray spectrometry technique. The average activity concentrations at the
four cores of this mangrove system are relatively higher than those of their global mean
values. Depth-wise activity concentration variations for most of the cores indicate that
226Ra, 232Th, and 40K activities increase from the deeper layer to the surface soils, whereas
for other cores, variations are haphazard or overall showed no change over the studied
depths. The average activity concentrations of 226Ra, 232Th, and 40K in the studied
VII
medicinal plant leaves varied from 9.03 ± 3.01 to 66.9 ± 8.2 Bq kg-1, 25.3 ± 5.0 to 155 ±
16 Bq kg-1, and 68.1 ± 8.3 to 139 ± 12 Bq kg-1, respectively. For the studied medicinal
plants, the soil-to-plant transfer factors of 226Ra, 232Th, and 40K ranged from 0.20 to 1.36,
0.27 to 2.08, and 0.036 to 0.108, respectively. Although some radiological hazard
parameters for soils are higher than the global average values, excess lifetime cancer risk
values were below the acceptable limit. Different statistical analyses have been performed
to find out the origin and behavior of the metals and radionuclides in the mangrove
system. This study indicated that the calculated radiological risk parameters for medicinal
plants are lower than the acceptable limits prescribed by UNSCEAR. Therefore, the
consumption of these medicinal plants by an adult is radiologically safe. Multivariate
statistical approaches suggested that sources of metal(loid) pollution are a combination of
human activities and natural geological processes. The findings of this study will enhance
our understanding of metal pollution and the associated ecological and radiological risks
to organisms, hence facilitating the development of novel approaches and management
strategies to preserve vulnerable mangrove ecosystems. |
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