Lanmodulin-Decorated Microbes for Efficient Lanthanide Recovery.
basic_science · Level V
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- Record sourced from PubMed, PMID 39821920.
- Also identified by DOI 10.1002/adma.202412607 and PMC identifier 13135379.
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Abstract
Rare earth elements (REEs) are essential for many clean energy technologies. Yet, they are a limited resource currently obtained through carbon-intensive mining. Here, bio-scaffolded proteins serve as simple, effective materials for the recovery of REEs. Surface expression of the protein lanmodulin (LanM) on E. coli, followed by freeze-drying of the microbes, yields a displayed protein material for REE recovery. Four REE cations (Y<sup>3+</sup>, La<sup>3+</sup>, Gd<sup>3+</sup>, and Tb<sup>3+</sup>) are captured efficiently, with over 80% recovery even in the presence of competitive ions at one-hundred-fold excess. Moreover, these materials are readily integrated into a filter with high capture capacity (12 mg g<sup>-1</sup> dry cell weight) for the selective isolation and recovery of REEs from complex matrices. Further, the proteins in the filter remain stable over ten bind-and-release cycles and a week of storage. To improve the deployability of this filter material, a simple colorimetric assay with the dye alizarin-3-methyliminodiacetic acid is incorporated. The assay can be performed in under 5 min, enabling rapid monitoring of REE recovery and filter efficiency. Overall, this low-cost, robust material will enable environmentally friendly recycling and recovery of critical elements.
Medical subject headings
- Lanthanoid Series Elements
- Escherichia coli