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1.
Molecules ; 25(9)2020 May 03.
Article in English | MEDLINE | ID: mdl-32375226

ABSTRACT

A new chemical separation has been developed to isolate uranium (U) using two UTEVA columns to minimize iron and thorium interferences from high background area soil samples containing minerals like monazites and ilmenite. The separation method was successfully verified in some certified reference materials (CRMs), for example, JSd-2, JLk-1, JB-1 and JB-3. The same method was applied for purification of U in Fukushima soil samples affected by the Fukushima dai-ichi nuclear power station (FDNPS) accident. Precise and accurate measurement of 234U/238U and 235U/238U isotope ratios in chemically separated U were carried out using a multi-collector inductively coupled plasma mass spectrometer (MC-ICP-MS). In this mass spectrometric method, an array of two Faraday cups (1011 Ω, 1012 Ω resistor) and a Daly detector were simultaneously employed. The precision of U isotope ratios in an in-house standard was evaluated by replicate measurement. Relative standard deviation (RSD) of 234U/238U and 235U/238U were found to be 0.094% (2σ) and 0.590% (2σ), respectively. This method has been validated using a standard reference material SRM 4350B, sediment sample. The replicate measurements of 234U/238U in SRM shows 0.7% (RSD). This developed method is suitable for separation of U and its isotope ratio measurement in environmental samples.


Subject(s)
Mass Spectrometry , Radioisotopes/chemistry , Soil/chemistry , Spectrum Analysis , Uranium/chemistry , Environmental Monitoring/methods , Reproducibility of Results , Soil Pollutants, Radioactive
2.
Radiat Prot Dosimetry ; 159(1-4): 203-11, 2014 Jun.
Article in English | MEDLINE | ID: mdl-24795384

ABSTRACT

Barite is a mineral newly found to be practically useful for electron spin resonance (ESR) dating of sulphide deposits formed by the sea-floor hydrothermal activities. The recent studies for the properties of the ESR dating signal in barite are summarised in the present paper as well as the formulas for corrections for accurate dose-rate estimation are developed including the dose-rate conversion factors, shape correction for gamma-ray dose and decay of (226)Ra. Although development of the techniques for ESR dating of barite has been completed, further comparative studies with other dating techniques such as U-Th and (226)Ra-(210)Pb dating are necessary for the technique to be widely used.


Subject(s)
Barium Sulfate/chemistry , Electron Spin Resonance Spectroscopy/methods , Fossils , Oceans and Seas , Radiometric Dating/methods , Sulfides/chemistry , Barium Sulfate/radiation effects , Gamma Rays , Radiation Dosage , Sulfides/radiation effects , Temperature
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