Emerging Analytical Techniques for Rare Earth Element Study: Basic Principles and Cutting-Edge Developments
Современные аналитические методы исследования редкоземельных элементов: основные принципы и передовые разработки
2025-09-10
SCID: 54.1/jqym8hdz
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Hyperspectral remote sensingICP-MSIsotope datingPortable XRFRare earth elements
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Abstract (AI)
Fundamental research, exploration, extraction, and metallurgical studies of rare earth elements (REEs) require the use of analytical techniques. Recently, emerging developments of analytical instrumentation for REEs have taken place, with some of them having shrunk in size, becoming handheld devices. The Flame and Graphite Furnace AAS, ICP-OES, and MP-AES are standard laboratory techniques used for the analysis of REEs. ICP-MS, ICP-MS/MS, ICP-TOF-MS, HR-ICP-MS, MH-ICP-MS, and MC-ICP-MS are popular techniques for REE analysis thanks to their ultrahigh sensitivity, minimal interference effects, and broad applicability. The INAA, XRF, LIBS, and LA-based ICP-MS techniques are widely employed for the direct analysis of solid samples. The TIMS, SIMS, and SHRIMP are common techniques used for dating isotopic REE deposits. The portable XRF, LIBS, and Raman spectrometer devices can perform on-the-spot in situ analysis, which may help make speedy decisions in the exploration study of REEs. Currently, hyperspectral remote sensing platforms, such as handheld, drone, and satellite-based devices, are preferred for the exploration of REEs due to their cost-effectiveness, which enables the coverage of large areas in a limited amount of time. The use of microanalytical sensors installed on remotely operated vehicles has been successfully applied in analyzing rich REE-bearing deposits in the deep sea. In general, this review provides in-depth information on all essential aspects, from analytical instruments to cutting-edge developments in the analysis of REE-bearing resources.
Key Findings
1
Analytical techniques are essential across rare earth element research, exploration, extraction, metallurgy, and characterization of REE-bearing resources.
2
INAA, XRF, LIBS, and laser-ablation ICP-MS enable direct analysis of solid samples, whereas TIMS, SIMS, and SHRIMP support isotopic dating of REE deposits.
3
Microanalytical sensors on remotely operated vehicles have been successfully used to analyze REE-rich deep-sea deposits, demonstrating expanding capabilities for remote resource assessment.
4
Portable XRF, LIBS, and Raman instruments enable rapid in situ exploration decisions, and hyperspectral platforms provide cost-effective large-area coverage.
5
Standard laboratory methods include AAS, ICP-OES, and MP-AES, while multiple ICP-MS platforms provide ultrahigh sensitivity, low interference, and broad applicability.
Research Object
rare earth elements (REEs) and REE-bearing resources and deposits
Research Subject
analytical techniques, instrumentation, and emerging developments for the analysis, exploration, extraction, metallurgical study, and isotopic dating of REEs
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2025-09-10
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