<p>The separation of <sup>241</sup>Am, <sup>244</sup>Cm and <sup>249</sup>Cf from rare earth elements using LN resin and lactate buffer solutions with diethylenetriaminepentaacetic acid is described with numerous columns studies. The elutions are based on TALSPEAK liquid–liquid extraction chemistry, and provide high yield (&gt; 90%), rapid, simple separations of the trivalent actinides from the lanthanides, which is often challenging due to similarities in chemical behavior among the trivalent f-block elements. All three actinides can be separated from rare earth elements, including from massless fission product samples and samples with small amounts (~ 1–5&#xa0;mg) of stable lanthanides. Separations with no detectable overlap between the actinide and lanthanide elutions is possible with massless samples, and in samples with mass high separation factors can be achieved (Am/Eu: 171; Am/La: 10<sup>6</sup>).</p>

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TALSPEAK-based separation of the trivalent actinides from rare earth elements using LN resin

  • Kelly N. Kmak,
  • John D. Despotopulos,
  • Tony L. Huynh,
  • William M. Kerlin

摘要

The separation of 241Am, 244Cm and 249Cf from rare earth elements using LN resin and lactate buffer solutions with diethylenetriaminepentaacetic acid is described with numerous columns studies. The elutions are based on TALSPEAK liquid–liquid extraction chemistry, and provide high yield (> 90%), rapid, simple separations of the trivalent actinides from the lanthanides, which is often challenging due to similarities in chemical behavior among the trivalent f-block elements. All three actinides can be separated from rare earth elements, including from massless fission product samples and samples with small amounts (~ 1–5 mg) of stable lanthanides. Separations with no detectable overlap between the actinide and lanthanide elutions is possible with massless samples, and in samples with mass high separation factors can be achieved (Am/Eu: 171; Am/La: 106).