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1.
Chemosphere ; 42(1): 1-8, 2001 Jan.
Article in English | MEDLINE | ID: mdl-11142913

ABSTRACT

The goal of this work was to develop computational techniques for sulphates, nickel and copper accumulation in the snow in the local pollution zone. The main task was to reveal the peculiarities of formation and pollution of snow cover on the region with complex cross-relief. A digital cartographic model of aerotechnogenic pollution of snow cover in the landscapes of the local zone has been developed, based on five-year experimental data. Data regarding annual emissions from the industrial complex, information about distribution of wind and the sum of precipitation from meteostation "Nikel" for the winter period, allowed the model to ensure: * material presentation in the form of maps of water capacity and accumulation of sulphates, nickel and copper in the snow over any winter period in retrospective; * calculation of water capacity and accumulation of pollutants for watersheds and other natural-territorial complexes; * solution of the opposite problem about the determination of the emissions of sulphates, nickel and copper from the enterprise by measuring snow pollution in datum points. The model can be used in other northern regions of the Russian Federation with similar physical-geographical and climatic conditions. The relationships between the sum of precipitation and water capacity in the landscapes of the same type and also the relationships between pollution content in snow and relief, pollution content in snow and distance from the source of emissions, were used as the basis for the model.


Subject(s)
Copper/analysis , Environmental Monitoring/methods , Nickel/analysis , Snow , Sulfates/analysis , Geography , Models, Theoretical
2.
Chemosphere ; 42(1): 51-9, 2001 Jan.
Article in English | MEDLINE | ID: mdl-11142917

ABSTRACT

Within the period from 1989 to 1993, the impact of heavy metals and acid oxides on lakes, more than 100 km distant from the nearest source of pollution (enterprises of the copper-nickel industry), has been investigated. On the basis of complex investigations (chemical composition of snowpack and lake sediments, state of fish organisms and populations), it was discovered that there is intensive precipitation of heavy metals and acid oxides within the catchment of the lake Kochejavr. The catchment is characterized by a natural buffer capacity to neutralize acid precipitation. Active accumulation of heavy metals is observed in lake sediments. Metal accumulation causes subtoxic effects on the lake fish. The levels of precipitation of nickel and copper of 0.9 mg/m2 per year over long periods was found to be dangerous for biological systems of freshwater catchments.


Subject(s)
Air Pollutants/adverse effects , Fishes , Metals, Heavy/adverse effects , Water Pollutants/adverse effects , Air Pollutants/analysis , Air Pollutants/pharmacokinetics , Animals , Arctic Regions , Environmental Monitoring , Geologic Sediments/chemistry , Metals, Heavy/analysis , Metals, Heavy/pharmacokinetics , Snow , Tissue Distribution , Water Pollutants/analysis , Water Pollutants/pharmacokinetics
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