Changes in sulfate (SO42–) deposition have been linked to changes in mercury (Hg) methylation in peatlands and water quality in freshwater catchments. There is little empirical evidence, however, of how quickly methyl-Hg (MeHg, a bioaccumulative neurotoxin) export from catchments might change with declining SO42– deposition. Here, we present responses in total Hg (THg), MeHg, total organic carbon, pH, and SO42– export from a peatland-dominated catchment as a function of changing SO42– deposition in a long-term (1998–2011), whole-ecosystem, control-impact experiment. Annual SO42– deposition to half of a 2-ha peatland was experimentally increased 6-fold over natural levels and then returned to ambient levels in two phases. Sulfate additions l...
Peatlands are abundant elements of boreal landscapes where inorganic mercury (IHg) can be transforme...
Peatlands are globally important ecosystems where inorganic mercury is converted to bioaccumulating ...
Peatlands are globally important ecosystems where inorganic mercury is converted to bioaccumulating ...
Changes in sulfate (SO42–) deposition have been linked to changes in mercury (Hg) methylation in pea...
Between 2001 and 2008 we experimentally manipulated atmospheric sulfate-loading to a small boreal pe...
In this paper we investigate the hypothesis that long-term sulphate (SO42-) deposition has made peat...
The AGU allows final articles to be placed in an institutional repository 6 months after publication...
In this paper we investigate the hypothesis that long-term sulphate (SO(4) (2-)) deposition has made...
Peatlands are a major source of methylmercury that contaminates downstream aquatic food webs. The la...
During most of an annual cycle, we studied the temporal variation of total mercury (Hg-T) and methyl...
We investigated the influence of sulfate (SO42-) deposition and concentrations on the net formation ...
This is an Open Access version of the article that was published on May 16, 2016.Increased depositio...
University of Minnesota Ph.D. dissertation. July 2014. Major: Water Resources Science. Advisor: Dani...
Climate change is expected to alter the hydrology and vascular plant communities in peatland ecosyst...
Peatlands are abundant elements of boreal landscapes where inorganic mercury (IHg) can be transforme...
Peatlands are globally important ecosystems where inorganic mercury is converted to bioaccumulating ...
Peatlands are globally important ecosystems where inorganic mercury is converted to bioaccumulating ...
Changes in sulfate (SO42–) deposition have been linked to changes in mercury (Hg) methylation in pea...
Between 2001 and 2008 we experimentally manipulated atmospheric sulfate-loading to a small boreal pe...
In this paper we investigate the hypothesis that long-term sulphate (SO42-) deposition has made peat...
The AGU allows final articles to be placed in an institutional repository 6 months after publication...
In this paper we investigate the hypothesis that long-term sulphate (SO(4) (2-)) deposition has made...
Peatlands are a major source of methylmercury that contaminates downstream aquatic food webs. The la...
During most of an annual cycle, we studied the temporal variation of total mercury (Hg-T) and methyl...
We investigated the influence of sulfate (SO42-) deposition and concentrations on the net formation ...
This is an Open Access version of the article that was published on May 16, 2016.Increased depositio...
University of Minnesota Ph.D. dissertation. July 2014. Major: Water Resources Science. Advisor: Dani...
Climate change is expected to alter the hydrology and vascular plant communities in peatland ecosyst...
Peatlands are abundant elements of boreal landscapes where inorganic mercury (IHg) can be transforme...
Peatlands are globally important ecosystems where inorganic mercury is converted to bioaccumulating ...
Peatlands are globally important ecosystems where inorganic mercury is converted to bioaccumulating ...