Scoping Analyses on Tritium Permeation to VHTR Integarted Industrial Application Systems | |
Oh, Chang H. ; Kim, Eung S. | |
Idaho National Laboratory | |
关键词: Isotopic Exchange; Electrolysis; Very High Temperature Reactor; Hydrogen Production; Ternary Fission; | |
DOI : 10.2172/1010677 RP-ID : INL/EXT-10-19607 RP-ID : DE-AC07-05ID14517 RP-ID : 1010677 |
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美国|英语 | |
来源: UNT Digital Library | |
【 摘 要 】
Tritium permeation is a very important current issue in the very high temperature reactor (VHTR) because tritium is easily permeated through high temperature metallic surfaces. Tritium permeations in the VHTR-integrated systems were investigated in this study using the tritium permeation analysis code (TPAC) that was developed by Idaho National Laboratory (INL). The INL TPAC is a numerical tool that is based on the mass balance equations of tritium containing species and hydrogen (i.e. HT, H2, HTO, HTSO4, TI) coupled with a variety of tritium sources, sink, and permeation models. In the TPAC, ternary fission and thermal neutron caption reactions with 6Li, 7Li 10B, 3He were taken into considerations as tritium sources. Purification and leakage models were implemented as main tritium sinks. Permeation of tritium and H2 through pipes, vessels, and heat exchangers were considered as main tritium transport paths. In addition, electroyzer and isotope exchange models were developed for analyzing hydrogen production systems including high temperature electrolysis (HTSE) and sulfur-iodine processes.
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