Abstract
Acetohydroxamic acid (AHA) has been proposed as an alternative agent for the selective separation of plutonium and neptunium from co-extracted uranium during the reprocessing of used nuclear fuel. However, the fundamental radiolytic behavior of this molecule under envisioned process conditions – i.e., acidic biphasic solvent systems – is not sufficiently understood to support process applications. Here we present a systematic irradiation study (steady-state gamma and time-resolved pulsed electron) into the radiolytic integrity of AHA and formation of degradation products in aqueous nitric acid (HNO3) solutions (0.2 M) in presence and absence of an organic phase, comprising current (tri-butyl phosphate - TBP) and future (N,N-di-(2-ethylhexyl)butyramide - DEHBA and di-2-ethylhexylisobutyramide - DEHiBA) reprocessing ligands dissolved in n-dodecane diluent. Experimental data are complimented by predictive multiscale model calculations for the elucidation of underpinning mechanisms.
| Original language | English |
|---|---|
| State | Published - Jan 14 2022 |
| Event | 16th DAE-BRNS Biennial Trombay Symposium on Radiation & Photochemistry (TSRP-2022) - Virtual Duration: Jan 12 2022 → Jan 15 2022 |
Conference
| Conference | 16th DAE-BRNS Biennial Trombay Symposium on Radiation & Photochemistry (TSRP-2022) |
|---|---|
| Period | 01/12/22 → 01/15/22 |
Keywords
- Acetohydroxamic Acid
- Gamma Radiolysis
- Multiscale Modeling
- Pulsed Electron Radiolysis
INL Publication Number
- INL/CON-21-65479
- 106595
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