PDF

Potential of Electrolytic Processes for Recovery of Molybdenum from Molten Salts for 99Mo Production

Jisue Moon, Kristian Myhre

1966enmolybdenumelectrolyticmolten saltsproductionradioisotopes

Abstract

Language:

Molten salt reactor (MSR) technologies are receiving significant interest for commercialization because of their potential safety features and efficient energy production. In addition to producing reliable and clean energy, high-value radioisotopes could be harvested from MSRs as an additional revenue stream. Although significant quantities of 99Mo will be produced in MSRs through fission, how accessible 99Mo will be for direct recovery from a fuel salt is unclear. Electrolytic processes in fused salts have been used extensively for processing molten salts and have the potential to enable the extraction of 99Mo directly from the fuel salt. This paper reviews the behavior of 99Mo in the molten salt reactor experiment and summarizes theoretical aspects of the electrolytic process in high-temperature fused salt and the published experimental results on Mo extraction through electrolytic processes. The general principle of fused-salt electrolytic processes is described, by electrodeposition of Mo with the following aspects: electrowinning, electrorefining, electroplating, and electroextraction with several experimental considerations. Finally, important considerations for recovery of 99Mo from MSR relevant molten salts via electrodeposition are discussed.

Download

Cite This Work

@article{9705f6b6-a5a6-4116-8839-6abc8eec3737,
  title={Potential of Electrolytic Processes for Recovery of Molybdenum from Molten Salts for 99Mo Production},
  author={Jisue Moon and Kristian Myhre},
  year={1966},
  language={en}
}
TY  - JOUR
TI  - Potential of Electrolytic Processes for Recovery of Molybdenum from Molten Salts for 99Mo Production
AU  - Jisue Moon
AU  - Kristian Myhre
PY  - 1966
LA  - en
ER  -

Similar Items

Metal Casting Processes

Unknown, Unknown

This chapter discusses metal casting processes, highlighting the diversity and common characteristics among them. The objective is to elucidate the fu

2023enPDF

Artificial intelligence-aided materials design: AI-algorithms and case studies on alloys and metallurgical processes

Rajesh Jha, Bimal Kumar Jha

This book describes the application of artificial intelligence (AI) and machine learning (ML) concepts to develop predictive models that can be used t

2022enPDF

Metallurgical Plant Design and Operating Strategies

The Australasian Institute of Mining and Metallurgy

This conference, held in Perth, Western Australia, focuses on the latest advancements in metallurgical processing plant design and operational strateg

2006enPDF

Metallurgical Plant Design and Operating Strategies

David Pollard, Geoff Dunlop

The MetPlant 2008 conference focused on advancements in metallurgical processing of ores, emphasizing plant design, operation strategies, and innovati

2008enPDF

Metallurgical Plant Design and Operating Strategies

P Card, J Canterford

This document presents a collection of papers from the METPLANT 2011 conference focusing on metallurgical plant design and operating strategies. The o

2011enPDF

Plant auditing: a powerful tool for improving metallurgical plant performance

Deepak Malhotra

This work discusses the essential components of a rigorous auditing process aimed at enhancing metallurgical plant performance. The objective is to id

2015enPDF