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Article

Geochemical Behaviors and Constraints on REE Enrichment in Weathered Crust of Shallow Metamorphic Rocks: Insights from the Getengzui Ion-Adsorption REE Deposit, South China

1
Chinese Academy of Geological Sciences, Beijing 100037, China
2
Key Laboratory of Ionic Rare Earth Resources and Environment, Ministry of Natural Resources, Ganzhou 341000, China
3
The Seventh Geological Brigade of Jiangxi Bureau of Geology, Ganzhou 341000, China
4
Jiangxi College of Applied Technology, Ganzhou 341000, China
5
Jiangxi Bureau of Geology, Nanchang 330036, China
6
Institute of Mineral and Resources, Chinese Academy of Geological Sciences, Beijing 100037, China
7
National Key Laboratory of Uranium Resources Exploration-Mining and Nuclear Remote Sensing, East China University of Technology, Nanchang 300013, China
*
Author to whom correspondence should be addressed.
Minerals 2026, 16(3), 321; https://doi.org/10.3390/min16030321
Submission received: 31 January 2026 / Revised: 14 March 2026 / Accepted: 15 March 2026 / Published: 19 March 2026
(This article belongs to the Special Issue Geochemical Exploration for Critical Mineral Resources, 2nd Edition)

Abstract

Ion-adsorption rare earth element (REE) deposits represent strategic critical resources in China, which were traditionally considered to be predominantly hosted in granite weathering crusts. However, the recent discovery of new deposit types within the weathering crusts of shallow metamorphic rocks in South China has opened up novel exploration frontiers, while research on their metallogenic mechanisms remains insufficient. To elucidate the REE enrichment mechanisms in shallow metamorphic rock weathering crusts, this study focuses on the Getengzui ion-adsorption REE deposit in southern Jiangxi Province. Twenty-four samples were collected from the weathering crust profiles of the Qingbaikouan Shenshan and Kuli Formations. Multiple analytical approaches were employed, including major and trace element analysis, Chemical Index of Alteration (CIA), Base Leaching Index (BA), and quantitative evaluation of element mass transfer coefficients (τ). Trace element spider diagrams, REE distribution patterns, and A-CN-K diagram analysis were also utilized. The results reveal that the weathering crusts have progressed to the middle–late stage of chemical weathering. The average CIA value is 83 for the middle-upper part of the completely weathered horizon in the Kuli Formation. In contrast, for the completely weathered horizon in the Shenshan Formation, the value is 86. Intense chemical weathering has resulted in the near-complete decomposition of primary silicate minerals and extensive leaching of base cations. This progress has created an acidic pore water environment, which is critical for REE mobilization. REEs exhibit characteristics of in situ secondary enrichment, with significant enrichment of ΣREE in the middle-upper part of the completely weathered horizon. The peak τ(ΣREE) values reach 0.78 and 2.43 for the Kuli and Shenshan Formations, respectively. Apatite dissolution is identified as the primary source of REE ions. Differences exist in the geochemical mobility sequences of elements between the two formations. REE enrichment is controlled by multi-stage geochemical barriers, including an oxidation barrier and a clay adsorption barrier. The oxidation barrier preferentially fixes Ce4+, whereas the clay adsorption barrier serves as the dominant mechanism for large-scale REE enrichment. Parent rock lithology is the primary factor governing the efficiency, scale, and fractionation characteristics of REE enrichment. The Kuli Formation is favorable for forming the thick, large-scale orebodies enriched in light rare earth elements (LREEs). In the contrast, the Shenshan Formation tends to host higher-grade orebodies, characterized by a relatively balanced ratio of LREEs and heavy rare earth elements (HREEs). This study clarifies the main controlling factors for ion-adsorption REE mineralization in two shallow metamorphic rocks. It thereby provides a theoretical basis for future exploration. This framework is applicable to analogous REE resources within shallow metamorphic rock distributions across South China and nationwide.
Keywords: ion-adsorption REE deposit; shallow metamorphic rock; weathering crust; geochemistry; Getengzui ion-adsorption REE deposit; shallow metamorphic rock; weathering crust; geochemistry; Getengzui

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MDPI and ACS Style

Fan, H.; Chen, Z.; Zeng, L.; Wu, D.; Qi, F.; Chen, Z.; Wang, T.; Wan, W.; Wang, S. Geochemical Behaviors and Constraints on REE Enrichment in Weathered Crust of Shallow Metamorphic Rocks: Insights from the Getengzui Ion-Adsorption REE Deposit, South China. Minerals 2026, 16, 321. https://doi.org/10.3390/min16030321

AMA Style

Fan H, Chen Z, Zeng L, Wu D, Qi F, Chen Z, Wang T, Wan W, Wang S. Geochemical Behaviors and Constraints on REE Enrichment in Weathered Crust of Shallow Metamorphic Rocks: Insights from the Getengzui Ion-Adsorption REE Deposit, South China. Minerals. 2026; 16(3):321. https://doi.org/10.3390/min16030321

Chicago/Turabian Style

Fan, Huihu, Zhenya Chen, Luping Zeng, Dehai Wu, Fuyong Qi, Zhenghui Chen, Tao Wang, Wei Wan, and Shuilong Wang. 2026. "Geochemical Behaviors and Constraints on REE Enrichment in Weathered Crust of Shallow Metamorphic Rocks: Insights from the Getengzui Ion-Adsorption REE Deposit, South China" Minerals 16, no. 3: 321. https://doi.org/10.3390/min16030321

APA Style

Fan, H., Chen, Z., Zeng, L., Wu, D., Qi, F., Chen, Z., Wang, T., Wan, W., & Wang, S. (2026). Geochemical Behaviors and Constraints on REE Enrichment in Weathered Crust of Shallow Metamorphic Rocks: Insights from the Getengzui Ion-Adsorption REE Deposit, South China. Minerals, 16(3), 321. https://doi.org/10.3390/min16030321

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