Determination of Trace Levels of Uranium and Thorium in High Purity Gadolinium Sulfate Using ICP-MS with Solid-Phase Chromatographic Extraction Resin
S. Ito, Y. Takaku, M. Ikeda, and Y. Kishimoto

TL;DR
This study developed a solid-phase extraction method combined with ICP-MS to accurately measure ultra-low levels of uranium and thorium in high purity gadolinium sulfate, crucial for low-background neutrino experiments.
Contribution
The paper introduces a novel solid-phase extraction technique that significantly improves the detection sensitivity of U and Th in gadolinium sulfate for neutrino research.
Findings
Achieved detection limits of 0.04 mBq/kg for U and 0.01 mBq/kg for Th.
Successfully measured low-level U and Th in multiple Gd$_2$(SO$_4$)$_3$ samples.
Demonstrated the method's effectiveness for ultra-trace radioactivity analysis.
Abstract
The new Super-Kamiokande-Gadolinium (SK-Gd) project is an upgrade of the Super-Kamiokande (SK) detector. In the SK-Gd project, 0.2\% Gd(SO) is loaded into the 50 kton water tank of the SK. One of the main purposes of the project is to discover Supernova Relic Neutrinos. Neutrino measurements and proton decay searches will also be performed in the SK-Gd. In order to measure solar neutrinos with a low energy threshold of 3.5 MeV in the SK-Gd, the main radioactive contaminations, U and Th, in Gd(SO)8HO, should be minimized before loading. Our maximum levels for U and Th are 5 mBq (U)/kg (Gd(SO)8HO) and 0.05 mBq (Th)/kg (Gd(SO)8HO). In order to measure such low concentrations of U and Th in Gd(SO)8HO, we developed the solid-phase extraction technique. Using this…
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