Pre- and post-industrial environmental changes as revealed by the biogeochemical sedimentary record of Drammensfjord, Norway
Publication date
2005
Authors
Smittenberg, R.H.
Baas, M.
Green, M.J.
Hopmans, E.C.
Schouten, S.
Sinninghe Damsté, J.S.
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Article
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Abstract
The biogeochemical sedimentary record of the anoxic Drammensfjord, Norway, was investigated on a decadal to centennial
time scale over the last millennium, in order to reconstruct the pre-industrial fjord environment and ecosystem and humaninduced
environmental changes. The sediments were dated by a combination of 14C and 210Pb analysis and varve counting.
Analysis of the bulk sedimentary parameters and of the biomarker distribution revealed that the sedimentary organic matter of
the fjord is primarily of terrigenous origin, indicating that the fjord was oligotrophic or mesotrophic. The fjord’s bottom water
has been continuously euxinic since at least 1000 AD, but photic zone euxinia occurred only irregularly in the fjord. The
organic matter flux and composition remained virtually invariable until the 18th century. After that time, the flux of material
derived from coniferous trees started to increase, indicated by elevated concentrations of dehydroabietic acid and related
compounds, but also by raising levels of C24 n-alcohols and fatty acids. This marked the onset of sawmill activities in the
hinterland. After the beginning of the industrial revolution, around 1850, the flux of organic waste from sawmills and paper
mills increased substantially. It is suggested that slow bacterial degradation of this relatively nutrient-poor organic waste caused
a gradual eutrophication trend, which is reflected in substantial increased bacterial and moderately increased other aquatic
biomarker accumulation rates. After the industrial revolution, this trend accelerated and was possibly enhanced by a growing
population of the area with accompanying agricultural and domestic waste. This promoted primary productivity and changed
the phytoplankton composition in the fjord.
Keywords
environmental change, Norway, fjord, biomarkers, eutrophication