Javascript must be enabled to continue!
Mercury dynamics in a changing coastal area over industrial and post-industrial phases
View through CrossRef
<p>The Venice Lagoon (Mediterranean Sea) is a shallow coastal lagoon that have been subjected to several anthropogenic pressures, including significant Hg loadings from industrial activities. Inorganic Hg is methylated to neurotoxic MeHg in lagoon water and sediment, posing the ecosystem wealth at risk.</p><p>Here, we use a biogeochemical model to investigate the long-term dynamics of Hg species in the Venice Lagoon from the pre-industrial period to the post-industrial period (1900-2100), also taking into account environmental changes occurred in the lagoon such as eutrophication, and the increase of sediment resuspension driven by manila clam harvesting.</p><p>Time-variable Hg emissions from industries were estimated from available information about industrial production and technology-dependent emissions factors, while Hg loading species from other sources (river, atmospheric deposition, urban wastes) where estimated through downscaling from global studies, using observations from previous field studies (1970 - 2010) as constraints. The impacts of future trends of Hg atmospheric deposition are explored through scenario analysis.&#160;</p><p>Modeled Hg species are in a satisfactory agreement with the available observations. In the current postindustrial phase, Hg<sub>T</sub> in the lagoon waters comes mostly from sediments, while MeHg comes primarily from the watershed.</p><p>We estimate in &#8764;56 kg y<sup>-1</sup> the HgT export for 2019 to the Adriatic Sea, which includes &#8764;0.13 kg y<sup>-1</sup> of MeHg. Both Hg and MeHg concentrations are decreasing since outputs slightly exceed inputs. The analysis of Hg and MeHg reservoirs and fluxes reveals the impacts of the changes in environmental conditions on Hg fluxes. On the one hand, eutrophication has enhanced sediment deposition to the seabed, causing a maximum in sediment Hg concentrations when Hg inputs were already declining; on the other hand, the enhanced sediment resuspension due to clam harvesting led to increased Hg fluxes from the sediment to the water, also causing a redistribution of Hg from the central lagoon to the northern and southern areas, as reported by observational studies. These results emphasize the importance of adopting an ecosystem approach when investigating Hg dynamics, considering the different uses of the ecosystem.</p>
Title: Mercury dynamics in a changing coastal area over industrial and post-industrial phases
Description:
<p>The Venice Lagoon (Mediterranean Sea) is a shallow coastal lagoon that have been subjected to several anthropogenic pressures, including significant Hg loadings from industrial activities.
Inorganic Hg is methylated to neurotoxic MeHg in lagoon water and sediment, posing the ecosystem wealth at risk.
</p><p>Here, we use a biogeochemical model to investigate the long-term dynamics of Hg species in the Venice Lagoon from the pre-industrial period to the post-industrial period (1900-2100), also taking into account environmental changes occurred in the lagoon such as eutrophication, and the increase of sediment resuspension driven by manila clam harvesting.
</p><p>Time-variable Hg emissions from industries were estimated from available information about industrial production and technology-dependent emissions factors, while Hg loading species from other sources (river, atmospheric deposition, urban wastes) where estimated through downscaling from global studies, using observations from previous field studies (1970 - 2010) as constraints.
The impacts of future trends of Hg atmospheric deposition are explored through scenario analysis.
&#160;</p><p>Modeled Hg species are in a satisfactory agreement with the available observations.
In the current postindustrial phase, Hg<sub>T</sub> in the lagoon waters comes mostly from sediments, while MeHg comes primarily from the watershed.
</p><p>We estimate in &#8764;56 kg y<sup>-1</sup> the HgT export for 2019 to the Adriatic Sea, which includes &#8764;0.
13 kg y<sup>-1</sup> of MeHg.
Both Hg and MeHg concentrations are decreasing since outputs slightly exceed inputs.
The analysis of Hg and MeHg reservoirs and fluxes reveals the impacts of the changes in environmental conditions on Hg fluxes.
On the one hand, eutrophication has enhanced sediment deposition to the seabed, causing a maximum in sediment Hg concentrations when Hg inputs were already declining; on the other hand, the enhanced sediment resuspension due to clam harvesting led to increased Hg fluxes from the sediment to the water, also causing a redistribution of Hg from the central lagoon to the northern and southern areas, as reported by observational studies.
These results emphasize the importance of adopting an ecosystem approach when investigating Hg dynamics, considering the different uses of the ecosystem.
</p>.
Related Results
COASTAL ENGINEERING 2000
COASTAL ENGINEERING 2000
*** Available Only Through ASCE ***
http://ascelibrary.aip.org/browse/asce/vol_title.jsp?scode=C
This Proceedings contains more than 300 papers pre...
Pollution Characteristics and Risk Assessments of Mercury in the Soil of the Main Regions in a China’s Typical Agricultural County: Dehui
Pollution Characteristics and Risk Assessments of Mercury in the Soil of the Main Regions in a China’s Typical Agricultural County: Dehui
Abstract
Dehui county is a typical agricultural area, with cultivated land accounting for more than 70% of the total land area. It has become a national agricultural demons...
Preparation of Silver-Based Mercury Film Electrodes for Anodic Stripping Voltammetry
Preparation of Silver-Based Mercury Film Electrodes for Anodic Stripping Voltammetry
The aim of this study was to develop an electrochemical method for reproducible preparation and evaluation of silver-based mercury film electrodes (SBMFE) for applications such as ...
A Nontoxic Pressure-Transferring Medium Used In Determination of High Pressure Physical And Chemical Properties of Oil And Natural Gas
A Nontoxic Pressure-Transferring Medium Used In Determination of High Pressure Physical And Chemical Properties of Oil And Natural Gas
Abstract
Physical and chemical properties of oil and gas in high pressure and high temperature are essential for the development of oilfield. These data have been...
Mercury Exposure and Heart Diseases
Mercury Exposure and Heart Diseases
Environmental contamination has exposed humans to various metal agents, including mercury. It has been determined that mercury is not only harmful to the health of vulnerable popul...
Thiosulphate assisted phytoextraction of mercury contaminated soils at the Wanshan Mercury Mining District, Southwest China
Thiosulphate assisted phytoextraction of mercury contaminated soils at the Wanshan Mercury Mining District, Southwest China
Wanshan, known as the “Mercury Capital†of China, is located in the Southwest of China. Due to the extensive mining and smelting works in the Wanshan area, the local ecosystem ...
Development of a Miniature Sensor for Point-of-Care Determination of Mercury
Development of a Miniature Sensor for Point-of-Care Determination of Mercury
Mercury is toxic to human health. In developing countries, artisanal and small scale gold mining (ASGM) entails mixing elemental mercury with crushed sediments to amalgamate gold. ...
Trace Mercury Ion Detection Sensor Employing SnO2/Rgo Nanocomposites Modified Electrode
Trace Mercury Ion Detection Sensor Employing SnO2/Rgo Nanocomposites Modified Electrode
Introduction
Heavy metal pollution seriously affects human health. Mercury is one of the most hazardous pollution, it has been accum...

