Academic literature on the topic 'Non-exchangeable organically bound tritium'
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Journal articles on the topic "Non-exchangeable organically bound tritium":
Baumg�rtner, F., and W. Donhaerl. "Non-exchangeable organically bound tritium (OBT): its real nature." Analytical and Bioanalytical Chemistry 379, no. 2 (May 1, 2004): 204–9. http://dx.doi.org/10.1007/s00216-004-2520-6.
Kim, S. B., and V. Korolevych. "Quantification of exchangeable and non-exchangeable organically bound tritium (OBT) in vegetation." Journal of Environmental Radioactivity 118 (April 2013): 9–14. http://dx.doi.org/10.1016/j.jenvrad.2012.11.006.
Bondareva, Lydia, Nadezhda Kudryasheva, and Ivan Tananaev. "Tritium: Doses and Responses of Aquatic Living Organisms (Model Experiments)." Environments 9, no. 4 (April 14, 2022): 51. http://dx.doi.org/10.3390/environments9040051.
Akata, Naofumi, Hideki Kakiuchi, Nagayoshi Shima, Toshiya Tamari, and Tibor Kovács. "Determination of non-exchangeable organically bound tritium concentration in reference material of pine needles (NIST 1575a)." Journal of Radioanalytical and Nuclear Chemistry 319, no. 3 (January 2, 2019): 1359–63. http://dx.doi.org/10.1007/s10967-018-6397-9.
Péron, O., E. Fourré, L. Pastor, C. Gégout, B. Reeves, H. H. Lethi, G. Rousseau, et al. "Towards speciation of organically bound tritium and deuterium: Quantification of non-exchangeable forms in carbohydrate molecules." Chemosphere 196 (April 2018): 120–28. http://dx.doi.org/10.1016/j.chemosphere.2017.12.136.
Pointurier, F., N. Baglan, A. Alanic, and R. Chiappini. "An improved method for the determination of low-level non-exchangeable organically bound tritium in biological samples." Radioprotection 37, no. C1 (February 2002): C1–967—C1–972. http://dx.doi.org/10.1051/radiopro/2002233.
Zhang, Qin, Yu-hua Ma, Ke Deng, Zhao-wei Ma, Guo Yang, Shao-zhong Gu, and Wei Liu. "Distribution of non-exchangeable organically bound tritium activities at the surface soil around Qinshan Nuclear Power Plant." Journal of Radioanalytical and Nuclear Chemistry 319, no. 1 (November 3, 2018): 237–43. http://dx.doi.org/10.1007/s10967-018-6325-z.
Hirao, Shigekazu, Hideki Kakiuchi, Naofumi Akata, Toshiya Tamari, Shinji Sugihara, Nagayoshi Shima, and Masahiro Tanaka. "Assessing the variability of tissue-free water tritium and non-exchangeable organically bound tritium in pine needles in Fukushima using atmospheric titrated water vapor." Science of The Total Environment 907 (January 2024): 168173. http://dx.doi.org/10.1016/j.scitotenv.2023.168173.
Zhang, Qin, Lin Du, Zhong-qin Dai, Yu-hua Ma, Lai-lai Qin, Ke Deng, Zhao-wei Ma, Guo Yang, Jia-yu Liu, and Wei Liu. "Studies of particle size distribution of Non-Exchangeable Organically Bound Tritium activities in the soil around Qinshan Nuclear Power Plant." Journal of Environmental Radioactivity 192 (December 2018): 362–67. http://dx.doi.org/10.1016/j.jenvrad.2018.07.004.
Baglan, N., R. Le Meignen, G. Alanic, and F. Pointurier. "Determination of the Non Exchangeable-Organically Bound Tritium (NE-OBT) Fraction in Tree Leaf Samples Collected Around a Nuclear Research Center." Fusion Science and Technology 54, no. 1 (July 2008): 243–47. http://dx.doi.org/10.13182/fst08-a1804.
Dissertations / Theses on the topic "Non-exchangeable organically bound tritium":
Bacchetta, Audrey. "Analyse et spéciation du tritium dans des matrices environnementales." Electronic Thesis or Diss., Paris 6, 2014. http://www.theses.fr/2014PA066026.
This study deals with environmental monitoring. The main aims are (i) the optimisation of the analytical procedure for the tritium in organic form determination, and (ii) the identification of the tritium bearing molecules which are responsible for its transfer from the environment to man. The study was divided into three stages. First an analytical method was developed to determine hydrogen content of several samples, which is a key element to calculate accurate organically bound tritium activities. Secondly, the impact of the organically bound tritium fractions separation (labile exchange) for the determination of the representative fraction of the level of environmental tritium activity was then evaluated. For that, the amount of solubilised sample was estimated. Finally, the speciation of tritium in environmental samples was investigated. Several molecules classes and organic compounds dissolved in the labile exchanges solvent were identified. The results show that the distribution of tritium in organisms depends on both properties of the chemical bond in which it is involved and chemical properties of tritium bearing molecules. The identified compounds belong to the molecules classes such as carbohydrates or amino acids, constitutive of living organisms. It would now be of interest to study the tritium distribution in an environmental sample to target molecules of interest and study the impact of tritium from the environment to man
Bacchetta, Audrey. "Analyse et spéciation du tritium dans des matrices environnementales." Phd thesis, Université Pierre et Marie Curie - Paris VI, 2014. http://tel.archives-ouvertes.fr/tel-00978875.