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Lithium-7 qNMR as a method to quantify lithium content in brines using benchtop NMR
Juan F Araneda1, Paul Hui, Garett M Leskowitz
1Nanalysis Corp., 1-4600 5 St NE, Calgary, AB T2E 7C3, Canada. juan.araneda@nanalysis.com.
A new quantitative nuclear magnetic resonance (qNMR) method accurately measures lithium in brine samples. This technique offers a faster, matrix-effect-free alternative for lithium analysis in the mining industry.
Area of Science:
- Analytical Chemistry
- Materials Science
Background:
- Lithium quantification is crucial for resource evaluation.
- Existing methods like atomic absorption spectroscopy can be time-consuming and matrix-dependent.
Purpose of the Study:
- To develop and validate a novel quantitative nuclear magnetic resonance (qNMR) method for lithium analysis.
- To assess the applicability of this method for real brine samples using benchtop NMR instruments.
Main Methods:
- Development of a 7Li qNMR method.
- Validation including determination of limits of detection (40 ppm) and quantification (100 ppm).
- Experimental assessment of linearity, precision, and bias.
Main Results:
- The developed 7Li qNMR method provides accurate and precise lithium quantification.
- Excellent correlation was observed when compared to atomic absorption spectroscopy.
- The method demonstrated no significant matrix effects and required minimal sample preparation.
Conclusions:
- The novel 7Li qNMR method is a viable, accurate, and precise technique for lithium analysis in brine.
- Its ease of use and lack of matrix effects suggest significant potential for the mining industry.
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