Can Sediments Contaminated by Mining be a Source of Mercury in the Coastal Environment Due to Dredging? Evidence from Thermo-Desorption and Chemical Speciation
Могут ли загрязнённые горнодобывающей деятельностью донные отложения быть источником ртути в прибрежной зоне вследствие дноуглубительных работ? Данные термодесорбции и определения химических форм
2021-03-02
SCID: 54.1/ycvkafq6
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Cinnabar and metacinnabarGulf of TriesteMercury-contaminated sedimentsSelective sequential extractionThermo-desorption
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Abstract (AI)
The sediments in the Gulf of Trieste (northern Adriatic Sea, Italy) are contaminated by mercury (Hg) due to historic mining which took place in Idrija (Slovenia). Despite many studies having been done regarding Hg, no information is available on the potential impact of dredging required along the main channel approaching the Port of Monfalcone. Sixteen surface sediment samples were collected along the channel to determine both total Hg concentration and chemical species using the thermo-desorption (TD) technique. Six samples were also chosen to apply a selective sequential extraction (SSE). The TD technique showed the maximum Hg release approximately at 260 and 335°C, corresponding to metacinnabar (β-HgS) and cinnabar (α-HgS), respectively. The SSE demonstrated that Hg was mainly associated with poorly soluble or insoluble compounds (98.7%). A resuspension event over a limited period of time can be considered of negligible impact to the water column due to the scarce Hg mobility from sediments.
Key Findings
1
Because mercury is weakly mobile in these sediments, short-term resuspension during dredging is expected to have negligible impact on the water column.
2
Selective sequential extraction showed that 98.7% of sedimentary mercury was associated with poorly soluble or insoluble compounds.
3
Sixteen Gulf of Trieste sediment samples were analyzed for total mercury and chemical species using thermo-desorption, with six additionally examined by selective sequential extraction.
4
Thermo-desorption identified maximum mercury release near 260°C and 335°C, corresponding to metacinnabar (β-HgS) and cinnabar (α-HgS), respectively.
Research Object
Mercury-contaminated surface sediments along the main channel approaching the Port of Monfalcone in the Gulf of Trieste
Research Subject
Mercury concentration, chemical speciation, thermal release, mobility, and potential water-column impact during dredging-related resuspension
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2021-03-02
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