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土壌鉱物が希土類元素を分別:資源抽出への応用(Iron Minerals Can Fractionate Critical Rare Earth Elements)

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2025-09-12 パシフィック・ノースウェスト国立研究所(PNNL)

太平洋北西国立研究所(PNNL)の研究によると、鉄鉱物が重要希土類元素(REE)の分別に寄与する可能性が示された。実験では、鉄酸化物が軽希土類と重希土類を異なる形で吸着することが確認され、地質環境におけるREEの分布や資源回収の効率化に役立つとされる。この知見は持続可能な希土類資源の利用に向けた新しいアプローチを提供する。

土壌鉱物が希土類元素を分別:資源抽出への応用(Iron Minerals Can Fractionate Critical Rare Earth Elements)Goethite is found in laterite soils and hosts rare earth elements with heavy rare earth elements preferentially incorporated.
(Image by Derek Munson | Pacific Northwest National Laboratory)

<関連情報>

構造への組み込みがゴエタイト中の希土類元素を分画する Structural incorporation into goethite fractionates rare earth elements

Sebastian T. Mergelsberg,Alex J. Kugler,Elaine D. Flynn,Eric J. Bylaska,Duo Song,Jeffrey G. Catalano and  Eugene S. Ilton
RSC Advances Published:14 Aug 2025
DOI:https://doi.org/10.1039/D5RA04022A

Abstract

Up to 20% of rare earth elements (REEs) in ion adsorption deposits (IADs) are associated with iron oxide minerals, primarily goethite. Often termed “non-extractable”, goethite-hosted REEs are thought to be structurally incorporated into the mineral lattice. The large mismatch in size and charge density between REEs (ionic radius, r = 0.86–1.03 Å) and Fe3+ (r = 0.65 Å), however, makes direct substitution energetically unfavorable. To determine REE compatibility with and incorporation into goethite on the atomic level, we used X-ray pair distribution function analysis (PDF) and LIII-edge extended X-ray absorption fine structure (EXAFS) spectroscopy. The compatibility of REEs with goethite and the precursor ferrihydrite (FH) is Lu ≥ Yb ≫ Dy > Nd for both phases. Nd and Dy primarily form secondary amorphous phases, with <30% Nd and Dy incorporated into goethite. In the FH precursor at pH 6.8, Yb and Lu assumed a local REE-OOH like structure with next nearest neighbor Fe. The Yb, Lu, and Nd-FH samples were also matured at ambient conditions for 100 days; despite the presence of only ∼5% goethite, Lu and Yb were 42% and 100% in goethite-like structural environments, respectively, whereas the PDF and EXAFS of Nd showed little evidence of any incorporation. Using ab initio molecular dynamics (AIMD) to model the EXAFS, we determined the presence of protonated Fe vacancies, edge-sharing with structural Lu and Yb, likely helped accommodate these REEs in the goethite structure. Incorporation into Fe oxyhydroxides thus potentially fractionates the REEs during weathering associated with formation of lateritic and ion adsorption deposits.

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0800資源工学一般
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