Quantitative estimation of concentrations of dissolved rare earth elements using reflectance spectroscopy

  • Dai J
  • Wang D
  • Wang R
  • et al.
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Abstract

Characteristic spectral parameters such as the wavelength and depth of absorption bands are widely used to quantitatively estimate the composition of samples from hyperspectral reflectance data in soil science, mineralogy as well as vegetation study. However, little research has been conducted on the spectral characteristic of rare earth elements (REE) and their relationship with chemical composition of aqueous solutions. Reflectance spectra of ore leachate solutions and contaminated stream water from a few REE mines in the Jiangxi Province, China, are studied for the first time in this work. The results demonstrate that the six diagnostic absorption features of the rare earths are recognized in visible and near-infrared wavelengths at 574, 790, 736, 520, 861, and 443 nm. The intensity of each of these six absorption bands is linearly correlated with the abundance of total REE, with the r2 value > 0.95 and the detection limit at ?75;000 ?g?L. It is suggested that reflectance spectroscopy provides an ideal routine analytical tool for characterizing leachate samples. The outcome of this study also has implications for monitoring the environmental effect of REE mining, in particular in stream water systems by hyperspectral remote sensing.© The Authors. Published by SPIE under a Creative Commons Attribution 3.0 Unported License.

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Dai, J., Wang, D., Wang, R., & Chen, Z. (2013). Quantitative estimation of concentrations of dissolved rare earth elements using reflectance spectroscopy. Journal of Applied Remote Sensing, 7(1), 073513. https://doi.org/10.1117/1.jrs.7.073513

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