A series of relatively simple incubation experiments to assess and evaluate microbial mercury (Hg) transformations in water column and sediments were performed monthly or bimonthly in a period from March 2011 to December 2011. Sampling campaigns were performed at station F in the southeastern part of Gulf of Trieste, northern Adriatic Sea. Gulf of Trieste has been for the last 500 year continuously impacted with inflow of Hg, originating from the Idrija Hg mine. The microbial mercury transformations were assessed using a short-lived (t1/2=64.12 h) radioisotope 197Hg. Calculated activities of microbial Hg reduction and methylation were correlated with other environmental factors, such as temperature, nutrient availability, oxygenation, organ...
Mercury (Hg) contamination in the Gulf of Trieste (northern Adriatic Sea) due to mining activity in ...
Coastal areas in the northernmost part of the Adriatic Sea (Gulf of Trieste and the adjacent Grado L...
Microbial activity is a critical factor controlling methylmercury formation in aquatic environments....
A series of relatively simple incubation experiments to assess and evaluate microbial mercury (Hg) t...
Purpose Concentrations and transformations of mercury were measured in river, estuarine, and marine ...
The Gulf of Trieste is one of the most mercury-contaminated areas in the Mediterranean Sea. It is ch...
The distribution, sources and fate of mercury (Hg) in the water column of the Gulf of Trieste (north...
4siThe Gulf of Trieste and adjacent Grado and Marano Lagoon (northern Adriatic Sea) are considered ...
Some general facts, uncertainties and gaps in current knowledge of Hg cycling in coastal and oceanic...
Mercury (Hg) mobility at the sediment-water interface was investigated during a laboratory incubatio...
The role of the major biogeochemical processes in Hg cycling at the sediment\u2013water interface wa...
4noThe coastal sediments of the Gulf of Trieste have been historically contaminated by mercury (Hg) ...
The Gulf of Trieste (northern Adriatic Sea) is one of the most mercury-polluted areas in the Mediter...
Mercury (Hg) mobility at the sediment-water interface was investigated during a laboratory incubatio...
Mercury (Hg) mobility at the sediment-water interface was investigated during a laboratory incubatio...
Mercury (Hg) contamination in the Gulf of Trieste (northern Adriatic Sea) due to mining activity in ...
Coastal areas in the northernmost part of the Adriatic Sea (Gulf of Trieste and the adjacent Grado L...
Microbial activity is a critical factor controlling methylmercury formation in aquatic environments....
A series of relatively simple incubation experiments to assess and evaluate microbial mercury (Hg) t...
Purpose Concentrations and transformations of mercury were measured in river, estuarine, and marine ...
The Gulf of Trieste is one of the most mercury-contaminated areas in the Mediterranean Sea. It is ch...
The distribution, sources and fate of mercury (Hg) in the water column of the Gulf of Trieste (north...
4siThe Gulf of Trieste and adjacent Grado and Marano Lagoon (northern Adriatic Sea) are considered ...
Some general facts, uncertainties and gaps in current knowledge of Hg cycling in coastal and oceanic...
Mercury (Hg) mobility at the sediment-water interface was investigated during a laboratory incubatio...
The role of the major biogeochemical processes in Hg cycling at the sediment\u2013water interface wa...
4noThe coastal sediments of the Gulf of Trieste have been historically contaminated by mercury (Hg) ...
The Gulf of Trieste (northern Adriatic Sea) is one of the most mercury-polluted areas in the Mediter...
Mercury (Hg) mobility at the sediment-water interface was investigated during a laboratory incubatio...
Mercury (Hg) mobility at the sediment-water interface was investigated during a laboratory incubatio...
Mercury (Hg) contamination in the Gulf of Trieste (northern Adriatic Sea) due to mining activity in ...
Coastal areas in the northernmost part of the Adriatic Sea (Gulf of Trieste and the adjacent Grado L...
Microbial activity is a critical factor controlling methylmercury formation in aquatic environments....