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Title

Measurement of the Diffusion Coefficient of Xenon in Self-Sintered Nanopore Graphite for Molten Salt Reactor.

Authors

Li, Pengda; Lei, Qiantao; Zhang, Heyao; Qi, Mingbo; Song, Jinliang; Lian, Pengfei; Cheng, Jinxing; Wang, Qingbo; Tang, Zhongfeng; Liu, Zhanjun

Abstract

The economics and safety of reactors can be affected by the diffusion of fission products into graphite. Xenon (Xe) fission products diffusing into graphite is the most critical neutron absorber and poison that can slow down or stop the chain reaction. The transport parameters for inhibiting the xenon diffusion in graphite are therefore an important scientific problem. Self-sintered nanopore-isotropic (~40 nm) graphite (SSNG) derived from green pitch coke can decrease Xe diffusion into graphite. In this study, the surface morphology and microstructural evolution in graphite before and after irradiation, as well as after annealing, were studied with different characterization methods. A method for the measurement of diffusion coefficients of fission products' diffusion in graphite using Rutherford backscattering spectrometry (RBS) was also reported. The SSNG substrates were implanted with Xe at a dose of 4.8 × 1015 ions/cm2 and energy of 7 MeV. The RT-implanted samples were annealed in a vacuum at 650 °C for 9 h. The implanted and annealed samples were characterized using RBS. The diffusion coefficient D (Xe, 650 °C) was 6.49 × 10−20 m2/s. The results indicate SSNG's excellent ability to inhibit Xe diffusion and are significant for designing and evaluating the safety of nuclear reactors.

Subjects

MOLTEN salt reactors; DIFFUSION measurements; FUSED salts; DIFFUSION coefficients; RUTHERFORD backscattering spectrometry; FISSION products; GRAPHITE

Publication

C, 2023, Vol 9, Issue 4, p113

ISSN

2311-5629

Publication type

Academic Journal

DOI

10.3390/c9040113

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