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Selective Recovery of Rare Earth Elements from Coal Fly Ash Leachates Using Liquid Membrane Processes.

Publication ,  Journal Article
Smith, RC; Taggart, RK; Hower, JC; Wiesner, MR; Hsu-Kim, H
Published in: Environmental science & technology
April 2019

Coal combustion residues and other geological waste materials have been proposed as a resource for rare earth elements (REEs, herein defined as the 14 stable lanthanides, yttrium, and scandium). The extraction of REEs from residues often generate acidified leachates that require highly selective separation methods to recover the REEs from other major soluble ions in the leachates. Here, we studied two liquid membrane processes (liquid emulsion membranes, LEM, and supported liquid membranes, SLM) and compared them to standard solvent extraction techniques for selective recovery and concentration of REEs from a leachate of coal fly ash. All separation methods involved an organic solution of di(2-ethylhexyl)phosphoric acid dissolved in kerosene or mineral oil and an acid strippant solution of 5 M nitric acid for the liquid-based separations. The LEM configuration, which separated REEs by immersing an acid-in-oil emulsion in the ash leachate, resulted in similar recovery percentages of individual REEs as the conventional solvent extraction approach. The recovery of REEs in the SLM configuration, which involved the impregnation of the solvent in a hydrophobic membrane, was slower than the LEM process. However, the SLM process was notably more selective for the heavy (and higher value) REEs, while the conventional extraction and LEM processes were more selective for the light REEs. A flux-based model of the extraction processes suggested that recovery rates were limited by REE affinity for the solvent chelator in the SLM, while the rates of REEs separation via LEM were limited by diffusive mass transfer across the liquid membrane. Altogether, these results help to identify specific steps in the recovery process that future work should target in the development of scalable liquid membrane separations for REE recovery.

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Published In

Environmental science & technology

DOI

EISSN

1520-5851

ISSN

0013-936X

Publication Date

April 2019

Volume

53

Issue

8

Start / End Page

4490 / 4499

Related Subject Headings

  • Yttrium
  • Metals, Rare Earth
  • Lanthanoid Series Elements
  • Environmental Sciences
  • Coal Ash
  • Coal
 

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Smith, R. C., Taggart, R. K., Hower, J. C., Wiesner, M. R., & Hsu-Kim, H. (2019). Selective Recovery of Rare Earth Elements from Coal Fly Ash Leachates Using Liquid Membrane Processes. Environmental Science & Technology, 53(8), 4490–4499. https://doi.org/10.1021/acs.est.9b00539
Smith, Ryan C., Ross K. Taggart, James C. Hower, Mark R. Wiesner, and Heileen Hsu-Kim. “Selective Recovery of Rare Earth Elements from Coal Fly Ash Leachates Using Liquid Membrane Processes.Environmental Science & Technology 53, no. 8 (April 2019): 4490–99. https://doi.org/10.1021/acs.est.9b00539.
Smith RC, Taggart RK, Hower JC, Wiesner MR, Hsu-Kim H. Selective Recovery of Rare Earth Elements from Coal Fly Ash Leachates Using Liquid Membrane Processes. Environmental science & technology. 2019 Apr;53(8):4490–9.
Smith, Ryan C., et al. “Selective Recovery of Rare Earth Elements from Coal Fly Ash Leachates Using Liquid Membrane Processes.Environmental Science & Technology, vol. 53, no. 8, Apr. 2019, pp. 4490–99. Epmc, doi:10.1021/acs.est.9b00539.
Smith RC, Taggart RK, Hower JC, Wiesner MR, Hsu-Kim H. Selective Recovery of Rare Earth Elements from Coal Fly Ash Leachates Using Liquid Membrane Processes. Environmental science & technology. 2019 Apr;53(8):4490–4499.
Journal cover image

Published In

Environmental science & technology

DOI

EISSN

1520-5851

ISSN

0013-936X

Publication Date

April 2019

Volume

53

Issue

8

Start / End Page

4490 / 4499

Related Subject Headings

  • Yttrium
  • Metals, Rare Earth
  • Lanthanoid Series Elements
  • Environmental Sciences
  • Coal Ash
  • Coal