Elemental (Composition) Analyzer / Refractory Material

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Quartz Sand

 Quartz sand consists of quartz particles obtained by crushing quartz stone. Quartz sand is an important industrial mineral raw material and a non-hazardous chemical substance. The main mineral component of quartz sand is SiO2. In addition to silicon dioxide, quartz sand usually contains small amounts of impurities such as Al2O3, CaO, MgO, Na2O, K2O, Fe2O3, TiO2, and Cr2O3, which affect the chemical stability and application performance of the sand. It is an important indicator for testing the quality of quartz sand. The chemical analysis method is currently one of the most commonly used methods for determining the composition of quartz sand. This method performs chemical analysis on quartz sand samples to obtain key parameters such as composition and content data. Commonly used chemical analysis methods include spark spectrometry, X-ray fluorescence spectrometry, energy spectrometry, etc.
Quartz Sand

Limestone

 The quality of raw limestone is one of the important factors determining the quality of the final product. The chemical composition of limestone not only affects the technical quality indicators of the product but also has a significant impact on the processing of limestone. Different regions have different requirements for limestone composition. Therefore, continuous monitoring of limestone quality variations is necessary to ensure the consistency of the final product quality and the safety of the process. The traditional chemical sample detection process is cumbersome, requires the use of hazardous chemical reagents such as strong acids, and cannot detect multiple elemental components simultaneously. XRF, as an accurate and efficient analytical method, can easily achieve simple, fast, and precise sample testing purposes and plays a very important role in limestone quality testing.
Limestone

Industrial Silicone

 Industrial silicon, also known as metallic silicon, is produced through high-temperature reduction reactions of silicon ore (whose main component is silica), charcoal, coal, petroleum coke, and other carbonaceous reducing agents. Its impurities mostly include iron, aluminum, calcium, etc. Different qualities can be distinguished based on the contents of iron, aluminum, and calcium. Common grades include 5530#, 5210#, 4410#, 4210#, 4110#, 3303#, 2202#, 1101#, etc. Industrial silicon holds a special place in our country’s economic and social development. It is an indispensable and important material for the development of new energy and new material industries, offering wide application possibilities. XRF, a fast and non-destructive elemental content detection method, can help users quickly test the impurity elements in industrial silicon and differentiate their qualities.
Industrial Silicone

Glass

 Glass is composed of various inorganic minerals (quartz sand, borax, boric acid, barite, barium carbonate, limestone, feldspar, soda ash, etc.) as the main raw materials, with a small amount of auxiliary materials added. Its main components are silica and other oxides. X-ray fluorescence spectroscopy (XRF) can simply and quickly analyze the composition and concentration of SiO2, Na2O, CaO, MgO, Al2O3, K2O, Fe2O3, and other components in glass samples.
Glass