RADIOCARBON AND TRITIUM MEASUREMENTS AT THE GXNU-AMS FACILITY
A single-stage accelerator mass spectrometer (GXNU-AMS) developed for radiocarbon and tritium measurements was installed and commissioned at Guangxi Normal University in 2017. After several years of operational and methodological upgrades, its performance has been continuously improved and applied i...
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Veröffentlicht in: | Radiocarbon 2024-10, Vol.66 (5), p.1335-1344 |
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container_title | Radiocarbon |
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creator | Shen, Hongtao Chen, Dingxiong Tang, Junsen Zhang, Guofeng Wang, Li Qi, Linjie Wu, Kaiyong Han, Xinyi Ouyang, He Wang, Ning Sun, Xiaojun He, Ming Sasa, Kimikazu Jiang, Shan |
description | A single-stage accelerator mass spectrometer (GXNU-AMS) developed for radiocarbon and tritium measurements was installed and commissioned at Guangxi Normal University in 2017. After several years of operational and methodological upgrades, its performance has been continuously improved and applied in multidisciplinary fields. Currently, the measurement sensitivity for radiocarbon and tritium is 14C/12C ∼ (3.14 ± 0.05) ×10–15 and 3H/1H ∼ (1.23 ± 0.17)×10–16, respectively, and the measurement accuracy is ∼0.6%, which can meet the measurement requirements in the nuclear, earth, environmental and life science fields. This study presents the performance characteristics of GXNU-AMS and several interesting application studies. |
doi_str_mv | 10.1017/RDC.2023.31 |
format | Article |
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After several years of operational and methodological upgrades, its performance has been continuously improved and applied in multidisciplinary fields. Currently, the measurement sensitivity for radiocarbon and tritium is 14C/12C ∼ (3.14 ± 0.05) ×10–15 and 3H/1H ∼ (1.23 ± 0.17)×10–16, respectively, and the measurement accuracy is ∼0.6%, which can meet the measurement requirements in the nuclear, earth, environmental and life science fields. 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After several years of operational and methodological upgrades, its performance has been continuously improved and applied in multidisciplinary fields. Currently, the measurement sensitivity for radiocarbon and tritium is 14C/12C ∼ (3.14 ± 0.05) ×10–15 and 3H/1H ∼ (1.23 ± 0.17)×10–16, respectively, and the measurement accuracy is ∼0.6%, which can meet the measurement requirements in the nuclear, earth, environmental and life science fields. 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subjects | Accuracy Conference Paper Efficiency Energy Graphite Nuclear physics Performance characteristics Sensors Tritium |
title | RADIOCARBON AND TRITIUM MEASUREMENTS AT THE GXNU-AMS FACILITY |
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