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1.
Environ Pollut ; 200: 93-104, 2015 May.
Article in English | MEDLINE | ID: mdl-25703579

ABSTRACT

In recent decades, naturally growing mosses have been used successfully as biomonitors of atmospheric deposition of heavy metals and nitrogen. Since 1990, the European moss survey has been repeated at five-yearly intervals. In 2010, the lowest concentrations of metals and nitrogen in mosses were generally found in northern Europe, whereas the highest concentrations were observed in (south-)eastern Europe for metals and the central belt for nitrogen. Averaged across Europe, since 1990, the median concentration in mosses has declined the most for lead (77%), followed by vanadium (55%), cadmium (51%), chromium (43%), zinc (34%), nickel (33%), iron (27%), arsenic (21%, since 1995), mercury (14%, since 1995) and copper (11%). Between 2005 and 2010, the decline ranged from 6% for copper to 36% for lead; for nitrogen the decline was 5%. Despite the Europe-wide decline, no changes or increases have been observed between 2005 and 2010 in some (regions of) countries.


Subject(s)
Air Pollutants/analysis , Air Pollution/statistics & numerical data , Bryophyta/chemistry , Environmental Monitoring , Metals, Heavy/analysis , Nitrogen/analysis , Cadmium/analysis , Europe , Iron , Mercury , Metals , Nickel
2.
Environ Pollut ; 166: 1-9, 2012 Jul.
Article in English | MEDLINE | ID: mdl-22459708

ABSTRACT

Previous analyses at the European scale have shown that cadmium and lead concentrations in mosses are primarily determined by the total deposition of these metals. Further analyses in the current study show that Spearman rank correlations between the concentration in mosses and the deposition modelled by the European Monitoring and Evaluation Programme (EMEP) are country and metal-specific. Significant positive correlations were found for about two thirds or more of the participating countries in 1990, 1995, 2000 and 2005 (except for Cd in 1990). Correlations were often not significant and sometimes negative in countries where mosses were only sampled in a relatively small number of EMEP grids. Correlations frequently improved when only data for EMEP grids with at least three moss sampling sites per grid were included. It was concluded that spatial patterns and temporal trends agree reasonably well between lead and cadmium concentrations in mosses and modelled atmospheric deposition.


Subject(s)
Air Pollutants/analysis , Air Pollution/statistics & numerical data , Atmosphere/chemistry , Bryophyta/chemistry , Cadmium/analysis , Lead/analysis , Models, Chemical , Environmental Monitoring , Europe
3.
Environ Pollut ; 159(10): 2852-60, 2011 Oct.
Article in English | MEDLINE | ID: mdl-21620544

ABSTRACT

In 2005/6, nearly 3000 moss samples from (semi-)natural location across 16 European countries were collected for nitrogen analysis. The lowest total nitrogen concentrations in mosses (<0.8%) were observed in northern Finland and northern UK. The highest concentrations (≥ 1.6%) were found in parts of Belgium, France, Germany, Slovakia, Slovenia and Bulgaria. The asymptotic relationship between the nitrogen concentrations in mosses and EMEP modelled nitrogen deposition (averaged per 50 km × 50 km grid) across Europe showed less scatter when there were at least five moss sampling sites per grid. Factors potentially contributing to the scatter are discussed. In Switzerland, a strong (r(2) = 0.91) linear relationship was found between the total nitrogen concentration in mosses and measured site-specific bulk nitrogen deposition rates. The total nitrogen concentrations in mosses complement deposition measurements, helping to identify areas in Europe at risk from high nitrogen deposition at a high spatial resolution.


Subject(s)
Air Pollutants/analysis , Atmosphere/chemistry , Bryophyta/chemistry , Environmental Monitoring/methods , Nitrogen/analysis , Air Pollution/statistics & numerical data , Europe
4.
Environ Pollut ; 158(10): 3144-56, 2010 Oct.
Article in English | MEDLINE | ID: mdl-20674112

ABSTRACT

In recent decades, mosses have been used successfully as biomonitors of atmospheric deposition of heavy metals. Since 1990, the European moss survey has been repeated at five-yearly intervals. Although spatial patterns were metal-specific, in 2005 the lowest concentrations of metals in mosses were generally found in Scandinavia, the Baltic States and northern parts of the UK; the highest concentrations were generally found in Belgium and south-eastern Europe. The recent decline in emission and subsequent deposition of heavy metals across Europe has resulted in a decrease in the heavy metal concentration in mosses for the majority of metals. Since 1990, the concentration in mosses has declined the most for arsenic, cadmium, iron, lead and vanadium (52-72%), followed by copper, nickel and zinc (20-30%), with no significant reduction being observed for mercury (12% since 1995) and chromium (2%). However, temporal trends were country-specific with sometimes increases being found.


Subject(s)
Bryophyta/chemistry , Environmental Monitoring , Environmental Pollutants/analysis , Metals, Heavy/analysis , Atmosphere/chemistry , Environmental Pollution/statistics & numerical data , Europe , Rain/chemistry , Snow/chemistry
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