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How to Rapidly Evaluate Uranium Adsorption Capacity Using Only a Portable Geiger Counter?

Authors :
Bi, Jingtao
Xing, Siyang
Li, Chengqian
Sun, Mengmeng
Wu, Hongqing
Zhao, Yingying
Source :
Annalen der Physik. Jun2024, Vol. 536 Issue 6, p1-6. 6p.
Publication Year :
2024

Abstract

The development of the nuclear industry has stimulated research in uranium extraction from seawater (UES) by adsorption. However, in practical applications, it's hard to equip various ion concentration measurement instruments for real‐time characterizing uranium adsorption capacity. Given the radioactive property of uranium, if only a Geiger counter is possessed, how it can be utilized to rapidly evaluate uranium adsorption in the adsorbent? This study proposes the Geiger‐Uranium‐Distance model, which establishes correlations among Geiger counter readings, uranium adsorption capacity, and distance, thereby offering a viable approach. While maintaining a constant radius for the adsorbent stack point, during the laboratory phase, the average molecular mass (MA) and the kGg(z) values of the original adsorbent are determined. In practical applications, the surrounding radiation background GE (µSv h−1) is detected. Subsequently, the Geiger counter is vertically positioned above the stacked point of adsorbent after uranium adsorption. Utilizing the measured radiation intensity value G (µSv h−1), and employing the equation G=kGg(z)Qe1+MAQe+GE$G\ = {k}_G\ g(z)\frac{{{Q}_e}}{{1 + {M}_A{Q}_e}} + {G}_E$, the uranium adsorption capacity Qe can be obtained. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00033804
Volume :
536
Issue :
6
Database :
Academic Search Index
Journal :
Annalen der Physik
Publication Type :
Academic Journal
Accession number :
177773158
Full Text :
https://doi.org/10.1002/andp.202300425