Selective actinide(III) separation using 2,6-bis[1-(propan-1-ol)-1,2,3-triazol-4-yl]pyridine (PyTri-Diol) in the innovative-SANEX process: laboratory scale counter current centrifugal contactor demonstration

Author:

Wilden Andreas1ORCID,Schneider Dimitri1ORCID,Paparigas Zaina1ORCID,Henkes Maximilian1ORCID,Kreft Fabian1ORCID,Geist Andreas2ORCID,Mossini Eros3ORCID,Macerata Elena3ORCID,Mariani Mario3ORCID,Gullo Maria Chiara4ORCID,Casnati Alessandro4ORCID,Modolo Giuseppe1ORCID

Affiliation:

1. Forschungszentrum Jülich GmbH, Institut für Energie – und Klimaforschung – Nukleare Entsorgung und Reaktorsicherheit (IEK-6) , 52428 Jülich , Germany

2. Karlsruhe Institute of Technology (KIT), Institute for Nuclear Waste Disposal (INE) , 76021 Karlsruhe , Germany

3. Department of Energy, Politecnico di Milano , 20133 Milano , Italy

4. Department of Chemistry , Università di Parma, Life Sciences and Environmental Sustainability , 43124 Parma , Italy

Abstract

Abstract An innovative-SANEX process for the selective separation of the trivalent actinides americium and curium from a simulated PUREX raffinate solution was successfully demonstrated on the laboratory scale using a 16-stage 1 cm annular centrifugal contactor setup. The solvent was composed of 0.2 mol L−1 N,N,N′,N′-tetra-n-octyl-diglycolamide (TODGA) and 5% v/v 1-octanol in a kerosene diluent. Zr(IV) and Pd(II) co-extraction was prevented using trans-1,2-diaminocyclohexane-N,N,N′,N′-tetraacetic acid (CDTA) as a masking agent in the feed. The actinide(III) selective back-extraction was achieved using 2,6-bis[1-(propan-1-ol)-1,2,3-triazol-4-yl]pyridine (PyTri-Diol) in 0.45 mol L−1 HNO3 as a CHON alternative to the sulfur-containing stripping agent used in a previous version of the innovative-SANEX process. The new process described in this paper showed excellent performance for the recovery of An(III). An An(III) product with a quasi-quantitative recovery of americium and curium (≥99.9%) and very good separation from fission and activation products was obtained (decontamination factors ≥4000). Only a slight contamination with Zr and Ru was observed. This test demonstrates the successful use of molecules containing only carbon, hydrogen, oxygen, and nitrogen atoms (so-called CHON molecules) for the selective separation of An(III) from a simulated PUREX raffinate solution. By avoiding sulfur- or phosphorous-containing molecules, the generation of secondary radioactive waste during process operation can be reduced drastically.

Publisher

Walter de Gruyter GmbH

Subject

Physical and Theoretical Chemistry

Reference72 articles.

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2. International Atomic Energy Agency (IAEA) Nuclear Technology Review 2021, Vienna, Austria, 2021, September 2021.

3. OECD-NEA Nuclear Energy Data – Données sur l’énergie nucléaire 2020; OECD/NEA Publishing: Paris, France, 2021. Vol. NEA No. 7556.

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