Lithium Fusion Analysis
Lithium Fusion analysis is widely recognized as one of the most accurate and reliable techniques for determining the chemical composition of mineral materials, including salt. In this method, the sample is prepared through high-temperature fusion with lithium borate fluxes, producing a homogeneous glass bead suitable for high-precision elemental analysis. This preparation process minimizes errors associated with sample heterogeneity, significantly improving the accuracy, precision, and reproducibility of the analytical results.
Using the Lithium Fusion technique, both major and minor constituents of salt can be determined with exceptional accuracy. The analysis typically includes key elements such as Sodium (Na), Chlorine (Cl), Calcium (Ca), Magnesium (Mg), Potassium (K), Sulfur (S), Silicon (Si), Iron (Fe), and Aluminum (Al), together with additional trace elements when required. Quantitative determination of these constituents provides valuable information regarding the purity, mineral composition, and overall quality of the salt, enabling a comprehensive evaluation of its chemical characteristics.
The analytical results obtained through Lithium Fusion play a critical role in quality control, verification of compliance with industrial specifications, raw material evaluation, and the selection of the most appropriate applications for salt products. Owing to its outstanding analytical accuracy and consistency, this technique is widely accepted across the chemical, mining, food processing, pharmaceutical, water treatment, and other specialized industries as a dependable method for chemical characterization.
The chemical analysis of the salt products was carried out using advanced analytical instrumentation in accordance with internationally recognized laboratory standards. The resulting data provide a comprehensive and accurate assessment of the chemical composition of each product, enabling customers and industrial users to confidently evaluate product purity, mineral content, and overall quality while selecting the most suitable salt for their specific applications.
