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- W3162136629 startingPage "112443" @default.
- W3162136629 abstract "Measuring environmental contaminants in coastal areas is critical for monitoring and managing their impacts. Commonly used techniques involve repetitive field sampling, which provides a single moment in time during each effort. In this study, we examine the potential for using foraminifera in monitoring and risk assessment as recorders of bioavailable pollutants. Geochemical analysis of benthic foraminifera (Operculina ammonoides) shells sampled annually at a previous fish farm location showed extremely high levels of copper (Cu), zinc (Zn), and phosphorus (P) during the three years following the fish cages removal, with a general reduction afterwards. Levels of Cu/Ca were still more than 4-fold higher than background levels 10 years after the removal of the fish cages. Based on our finds, it is concluded that the geochemical analysis of recent benthic foraminifera shells can serve as a powerful monitoring tool of bioavailable contaminants in seawater. Additionally, the results highlight the need for heavy metal monitoring near marine aquaculture facilities and suggest that long-term effects extend spatially and temporally far beyond the original point source. Finally, we observed variations in micro-distribution of elements within the top 1–2 μm of the shells, where Cu/Ca, Zn/Ca and P/Ca are consistently higher in the chamber wall than in the septa. This observation is relevant for studies conducting single chamber analyses." @default.
- W3162136629 created "2021-05-24" @default.
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- W3162136629 date "2021-07-01" @default.
- W3162136629 modified "2023-09-26" @default.
- W3162136629 title "Benthic foraminifera geochemistry as a monitoring tool for heavy metal and phosphorus pollution — A post fish-farm removal case study" @default.
- W3162136629 cites W1487040053 @default.
- W3162136629 cites W1527038167 @default.
- W3162136629 cites W1966279069 @default.
- W3162136629 cites W1972256909 @default.
- W3162136629 cites W1974608252 @default.
- W3162136629 cites W1984007290 @default.
- W3162136629 cites W1984750810 @default.
- W3162136629 cites W1986296137 @default.
- W3162136629 cites W1987564023 @default.
- W3162136629 cites W1988188849 @default.
- W3162136629 cites W1992134819 @default.
- W3162136629 cites W1992149186 @default.
- W3162136629 cites W1992984103 @default.
- W3162136629 cites W1994181729 @default.
- W3162136629 cites W1995332137 @default.
- W3162136629 cites W1996668881 @default.
- W3162136629 cites W1997895159 @default.
- W3162136629 cites W1998241752 @default.
- W3162136629 cites W2001550318 @default.
- W3162136629 cites W2007736771 @default.
- W3162136629 cites W2013030650 @default.
- W3162136629 cites W2013289113 @default.
- W3162136629 cites W2020736229 @default.
- W3162136629 cites W2021547532 @default.
- W3162136629 cites W2023630656 @default.
- W3162136629 cites W2025821863 @default.
- W3162136629 cites W2029677500 @default.
- W3162136629 cites W2031720212 @default.
- W3162136629 cites W2031867688 @default.
- W3162136629 cites W2041003609 @default.
- W3162136629 cites W2048401618 @default.
- W3162136629 cites W2057489657 @default.
- W3162136629 cites W2058330428 @default.
- W3162136629 cites W2068748886 @default.
- W3162136629 cites W2079489386 @default.
- W3162136629 cites W2079956254 @default.
- W3162136629 cites W2079961636 @default.
- W3162136629 cites W2081097476 @default.
- W3162136629 cites W2082133536 @default.
- W3162136629 cites W2083103474 @default.
- W3162136629 cites W2086782132 @default.
- W3162136629 cites W2086822304 @default.
- W3162136629 cites W2087838164 @default.
- W3162136629 cites W2090999550 @default.
- W3162136629 cites W2092505139 @default.
- W3162136629 cites W2098128814 @default.
- W3162136629 cites W2099767513 @default.
- W3162136629 cites W2108918162 @default.
- W3162136629 cites W2109454577 @default.
- W3162136629 cites W2119745963 @default.
- W3162136629 cites W2141861004 @default.
- W3162136629 cites W2147346611 @default.
- W3162136629 cites W2149897302 @default.
- W3162136629 cites W2153505784 @default.
- W3162136629 cites W2158639809 @default.
- W3162136629 cites W2162368318 @default.
- W3162136629 cites W2165828331 @default.
- W3162136629 cites W2166276153 @default.
- W3162136629 cites W2167148885 @default.
- W3162136629 cites W2214506790 @default.
- W3162136629 cites W2414313223 @default.
- W3162136629 cites W2521498911 @default.
- W3162136629 cites W2539704463 @default.
- W3162136629 cites W2561804998 @default.
- W3162136629 cites W2583300026 @default.
- W3162136629 cites W2752440597 @default.
- W3162136629 cites W2774521433 @default.
- W3162136629 cites W2782661972 @default.
- W3162136629 cites W2784067303 @default.
- W3162136629 cites W2792251994 @default.
- W3162136629 cites W2794086370 @default.
- W3162136629 cites W2889496244 @default.
- W3162136629 cites W2901069548 @default.
- W3162136629 cites W2904407798 @default.
- W3162136629 cites W2915416708 @default.
- W3162136629 cites W2920330930 @default.
- W3162136629 cites W2989005772 @default.
- W3162136629 cites W3012836317 @default.
- W3162136629 cites W3015583186 @default.
- W3162136629 cites W3027120633 @default.
- W3162136629 cites W3087717086 @default.
- W3162136629 cites W3125411366 @default.
- W3162136629 cites W4243826644 @default.
- W3162136629 doi "https://doi.org/10.1016/j.marpolbul.2021.112443" @default.
- W3162136629 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/34000710" @default.
- W3162136629 hasPublicationYear "2021" @default.
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