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[A Method to Extract Content of Minerals Based on Measured Hyperspectral Data]
This study introduces an improved method for extracting mineral content from rock spectra, enhancing accuracy through spectral matching and the Hapke model. The new approach achieves high accuracy in identifying and quantifying minerals, aiding in rapid alteration analysis.
Area of Science:
- Geoscience
- Spectroscopy
- Mineralogy
Context:
- Accurate mineral content extraction is crucial for geological surveys and resource exploration.
- Traditional linear decomposition models face challenges with spectral data complexity and noise.
- Existing spectral matching methods can be limited by spectral library completeness and noise interference.
Purpose:
- To develop an advanced method for mineral content extraction from rock spectra (350-2500 nm).
- To enhance the accuracy of mineral identification and quantification using spectral matching and the Hapke model.
- To improve upon linear decomposition models by incorporating mineral symbiotic relationships and sectional noise filtering.
Summary:
- A novel method utilizes rock spectra (350-2500 nm), spectral matching, and the Hapke model to transform reflectance into single scattering albedo for mineral content determination.
- The method incorporates sectional noise filtering and regional mineral spectra libraries to boost identification accuracy.
- Validation on the Baogutu rock body showed high accuracies for identifying quartz (75%), feldspar class (100%), and altered minerals (92.2%), and for extracting content of feldspar class (80.5%), hornblende (64%), and altered minerals (92.36%).
Impact:
- The method theoretically improves accuracy by using single scattering albedo, avoiding complex nonlinear calculations.
- Incorporating mineral symbiotic relationships enhances the reliability of mineral identification.
- The approach offers significant guidance for rapid analysis of alteration information in geological studies.
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