Chlorophyll-a concentration, algal biomass and photosynthetic activity decrease with increasing sediment depth. Chlorophyll-a and biomass minima were found a t the sediment surface on several occasions. This may be due to the removal of algae by wave action or vertical migrations of the algag in the
The distribution of ash in Icelandic lake sediments and the relative importance of mixing and erosion processes
β Scribed by Roy Thompson; Richard H. W. Bradshaw; John E. Whitley
- Publisher
- John Wiley and Sons
- Year
- 2009
- Tongue
- English
- Weight
- 720 KB
- Volume
- 1
- Category
- Article
- ISSN
- 0267-8179
No coin nor oath required. For personal study only.
β¦ Synopsis
During the Holocene the volcano Hekla explosively emitted highly silicic tephra on four occasions. The ash was widely dispersed by the wind. Distinctive light-coloured ash layers are now to be seen in the peats of Northern Iceland. Ash from the 1 104 AD eruption was carried as far as Scandinavia. The most recent three tephra are preserved in the top 6 m of sediment in Lake Svinavatn. Chemical data from the sediment of Lake Svinavatn, which lies near the north coast of Iceland 170 km from Hekla, reveal the presence of silicic ash above the tephra visible to the naked eye. Unlike the vertical spread of ash in ocean sediment cores which results from biological mixing effects, the upwards spread of ash in the Svinavatn lake sediment cores appears to have been produced by erosion of ash from the lake catchment in the decades following the eruptions. The variations in concentrations of 1 1 elements, as determined by neutron activation analysis, can be explained by an exponentially decreasing input from catchment erosion. The additional input to each of the three Hekla ash layers was in the region of 3% of the ash which fell on the Svinavatn catchment.
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