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1.
Environ Monit Assess ; 161(1-4): 93-105, 2010 Feb.
Article in English | MEDLINE | ID: mdl-19184485

ABSTRACT

Sediment cores collected from different locations of Lake Umbozero were studied with respect to concentration and mobility of trace and heavy metals Co, Cu, Fe, Mn, Ni, Pb, U, and Zn. Lake Umbozero is the second largest lake in the Murmansk Region and subjected to contamination by air-borne emissions and river transportation from the nearby metallurgical and mining industries. Unlike its neighboring, more industry-prone Lake Imandra, Lake Umbozero is relatively unexplored with respect to its state of pollution. In our study, metal distribution in sediments was found to vary with respect to the cores, although in general the concentrations were at the same level throughout the lake indicating uniform horizontal distribution of metals. When compared to Lake Imandra, the concentrations of most of the metals studied were significantly lower and represented the levels in sediments measured in lakes of Kola Peninsula located further off from industrial pollutant sources. An exception was Pb the concentration of which was at the same level as in Lake Imandra, probably due to long-distance transport. Sediment layers were subjected to four-step sequential extraction procedure to reveal the metal distribution in soluble, exchangeable, acid-soluble, and residual fractions. Indicative of their potential higher lability, Mn, U, and Zn were generally found in exchangeable fraction; as also Mn and U extensively in the acid-soluble fraction.


Subject(s)
Environmental Monitoring , Fresh Water/analysis , Geologic Sediments/analysis , Metals, Heavy/analysis , Water Pollutants, Chemical/analysis , Cobalt/analysis , Copper/analysis , Geography , Iron/analysis , Lead/analysis , Manganese/analysis , Nickel/analysis , Russia , Uranium/analysis , Zinc/analysis
2.
Anal Chem ; 75(10): 2292-8, 2003 May 15.
Article in English | MEDLINE | ID: mdl-12918969

ABSTRACT

A novel sample cleanup procedure for the Am determination in environmental samples by alpha-spectrometry is described. The method is based on the use of three analytical chromatographic columns. TEVA-Spec. from Eichrom has been packed in an analytical chromatographic column to carry out the lanthanide/actinide separation. A CS5A mixed-bed column from Dionex was used to separate Am from lanthanide impurities and other actinides. A TCC-II column from Dionex was used to connect the TEVA to the CS5A and act as a preconcentrator column for the trivalent ions. The behavior of the columns was studied by coupling the chromatograph to an ICPMS detector. A chromatographic fraction has been used for sample preparation for alpha-spectrometric determination of 241Am. The analytical procedure has been validated with certified reference materials (sediment and soil) and was applied to sediment core samples from the Irish Sea and compared with the classical radiochemical separation of Am.


Subject(s)
Americium/analysis , Geologic Sediments/chemistry , Soil Pollutants/analysis , Americium/chemistry , Chromatography, High Pressure Liquid/methods , Environmental Monitoring , Spectrum Analysis/methods
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