Chemical Forms of Important Fission Products in Primary Circuit of HTR-PM under Conditions of Normal Operation and Overpressure and Water Ingress Accidents: A Study with a Chemical Thermodynamics Approach

Joint Authors

Li, Chuan
Fang, Chao
Li, Wenqian
Sun, Lifeng
Xing, Haoyu

Source

Science and Technology of Nuclear Installations

Issue

Vol. 2019, Issue 2019 (31 Dec. 2019), pp.1-12, 12 p.

Publisher

Hindawi Publishing Corporation

Publication Date

2019-07-25

Country of Publication

Egypt

No. of Pages

12

Abstract EN

The chemical forms of important fission products (FPs) in the primary circuit are essential to the source term analysis of high-temperature gas-cooled reactors because the volatility, transfer, and diffusion of these radionuclides are significantly influenced by their chemical forms.

Through chemical reactions with gaseous impurities in the primary circuit, these FPs exist in diverse chemical forms, which vary under different operational conditions.

In this paper, the chemical forms of cesium (Cs), strontium (Sr), silver (Ag), iodine (I), and tritium in the primary circuit of the Chinese pebble-bed modular high-temperature gas-cooled reactor (HTR-PM) under normal conditions and accident conditions (overpressure and water ingress accident) are studied with chemical thermodynamics.

The results under normal conditions show that Cs exists mainly in the form of Cs2CO3 at 250°C and gaseous form at 750°C, and for I and Ag, Ag3I3 and Ag convert to gaseous CsI and AgO, respectively, with increasing temperature, while SrCO3 is the only main kind of compound for Sr.

It is also observed that new compounds are generated under accidents: I exists in HI form when a water ingress accident occurs.

Regarding tritium, the chemical forms of FPs change little, but compounds need higher temperature to convert.

Furthermore, hazard of some FPs in different chemical forms is also discussed comprehensively in this paper.

This study is significant for understanding the chemical reaction mechanisms of FPs in an HTR-PM, and furthermore it may provide a new point of view to analyze the interaction between FPs and structural materials in reactor as well as their hazards.

American Psychological Association (APA)

Li, Chuan& Li, Wenqian& Sun, Lifeng& Xing, Haoyu& Fang, Chao. 2019. Chemical Forms of Important Fission Products in Primary Circuit of HTR-PM under Conditions of Normal Operation and Overpressure and Water Ingress Accidents: A Study with a Chemical Thermodynamics Approach. Science and Technology of Nuclear Installations،Vol. 2019, no. 2019, pp.1-12.
https://search.emarefa.net/detail/BIM-1210833

Modern Language Association (MLA)

Li, Chuan…[et al.]. Chemical Forms of Important Fission Products in Primary Circuit of HTR-PM under Conditions of Normal Operation and Overpressure and Water Ingress Accidents: A Study with a Chemical Thermodynamics Approach. Science and Technology of Nuclear Installations No. 2019 (2019), pp.1-12.
https://search.emarefa.net/detail/BIM-1210833

American Medical Association (AMA)

Li, Chuan& Li, Wenqian& Sun, Lifeng& Xing, Haoyu& Fang, Chao. Chemical Forms of Important Fission Products in Primary Circuit of HTR-PM under Conditions of Normal Operation and Overpressure and Water Ingress Accidents: A Study with a Chemical Thermodynamics Approach. Science and Technology of Nuclear Installations. 2019. Vol. 2019, no. 2019, pp.1-12.
https://search.emarefa.net/detail/BIM-1210833

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references

Record ID

BIM-1210833