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Environmental liquid scintillation analysis

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TLDR
In this article, the authors present the principles of liquid scintillation counting (LSC) measurement techniques and focus on the practical issues in the LSC determination of environmental radionuclides, as well as the status of the present research progress in these aspects.
Abstract
Liquid scintillation counting (LSC) is a major method for the measurement of beta-emitting and some alpha-emitters. It has been applied in many aspects such as the monitoring of environmental radioactivity, the behavior of radionuclides in the environment, and the characterization of nuclear waste for the decommissioning of nuclear facilities. Radionuclides are also widely applied to the investigation of environmental processes. However, the level of radionuclides in the environment is normally very low, and the resolution of LSC alone is not sufficiently high to identify and quantitatively measure different radionuclides. Low background LSC and chemical separation and purification are needed. This chapter aims to present the principles of LSC measurement techniques for the above purposes and focus on the practical issues in the LSC determination of environmental radionuclides, as well as the status of the present research progress in these aspects. The principles of low-level counting using LSC including the methods for reducing the background in the LSC instrument and practical issues in sample preparation are presented. The principles and applications for the measurement of alpha-emitters using LSC with the alpha/beta discrimination features are presented. The main application of triple-to-double coincidence ratio–based LSC in normal and Cerenkov counting models are also described. Most of the effort of this chapter focuses on the application of LSC in the determination of different anthropogenic and naturally occurring radionuclides, including tritium, 14C, 55Fe, 63Ni, 89,90Sr, 90Y, 99Tc, 241Pu, 36Cl, 41Ca, 129I, 210Po, 210Pb, isotopes of uranium, thorium, radium, and radon. Besides the LSC measurement methods, the detailed and practical chemical separation of these radionuclides from different sample matrices, as well as the sample preparation methods for LSC measurement are discussed based on the open publications and the experiences of the authors.

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Citations
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References
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Journal ArticleDOI

Fast determination of 90Sr/90Y activity in milk by Cherenkov counting

TL;DR: A quench correction method based on the external source of some liquid scintillation systems (named ESAR - external source area ratio) was proposed and checked for aqueous solutions and was proved to be effective also for urine samples.
Journal ArticleDOI

Energy resolution, yield and radon diffusion in the electrodeposition of radium

TL;DR: In this paper, two methods of electrodeposition of 226 Ra were investigated in order to study the resulting radium sources energy resolution, yield and 222 Rn emanation, which corresponded to a 22-23% diffusion factor per day for these electrodeposited 226 Ra sources.
Journal ArticleDOI

Flowsheet for the Recovery and Purification of 63Ni

TL;DR: In this article, the authors present a flow-heets for high specific activity ( > 1 0 Ci/g) 6 Ni with a long irradiation period at high neutron flux.
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Separation and subsequent determination of low radioactivity levels of radium by extraction scintillation.

TL;DR: It was found that the extraction of ( 226)Ra by Aliquat-336 is highly selective with efficient separation capability from (133)Ba, which is necessary to determine the yield and recovery of (226)Ra in related measurements.
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Rapid method to determine 89/90 Sr in steel samples

TL;DR: In this article, a new method for the determination of radiostrontium in 1-2g steel samples has been developed at the Savannah River Environmental Laboratory, which employs a rugged acid digestion that includes hydrofluoric acid, followed by a single preconcentration step to rapidly collect the radiostronium and remove nearly all of the high iron content.
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What are some of the environmental limitations of Scintillation counter printout for measuring dose rate?

The text does not provide information about the environmental limitations of scintillation counter printout for measuring dose rate.