The exact contents of trace sulfur, chlorine and phosphorus in coal ash were determined by energy dispersive X-ray fluorescence spectrometer EDX8800M MAX

Coal ash is a by-product of coal combustion and is generally treated as waste, but in fact, coal ash contains some substances that are harmful to humans and the environment. Therefore, it is very important to measure the content of hydrophobic, chlorine, phosphorus and exact content in coal ash. First of all, the role of measuring the content of sulfur, chlorine, phosphorus and arsenic in coal is to protect the port environment and human health. Substances such as chlorine, phosphorus and other substances in coal may penetrate into the groundwater, resulting in pollution. At the same time, these substances exist in the air will also be a potential threat to human health. Therefore, measuring the content of these substances can effectively control the degree of distribution of these hazardous substances in the environment and mouth. Secondly, coal ash has a wide range of uses. One of the main components of coal ash is silicon oxide. Will receive the application scenario of coal ash. In addition, coal ash also plays an important role in the iron and steel industry, after purification and treatment, some components of coal ash can also be reused: such as, as a pure acid detergent, make steel more high-quality, in general, the determination of trace ash, chlorine, phosphorus, exact content of the role is extremely important, through this application, can reduce the ring and people by the good material. At the same time, coal friends have a wide range of application value, can provide support for all walks of life. Therefore, the determination and utilization of coal ash is not only the most basic needs of people, but also the embodiment of the new progress in the process of scientific and technological development.

The exact contents of trace sulfur, chlorine and phosphorus in coal ash were determined by energy dispersive X-ray fluorescence spectrometer EDX8800M MAX

As a high-energy vertical high-performance X-ray EDXRF material analyzer, the EDX8800M MAX is equipped with a high rate X-ray generation system and a high count rate and high resolution FSDD detector, which provides excellent linear dynamic range. Enables higher precision process and quality control in coal ash, metals, cement, minerals, mining, glass and ceramics,
EDX800M MAX focuses on qualitative and quantitative analysis of major, trace and quantitative elements or compounds of various materials, widely used in: alloy materials, precious metals, iron, non-ferrous metals and powders, metallurgy, metal and non-gold heavy products, Fire materials, fire raw materials, lack of white powder, gypsum, catalyst, cement lime glaze industry quartz feldite, calcite, soil rock wool, soil solid waste dust removal ash chilli Ni, ash soil permanent magnet petroleum oil, slag and other production raw materials and finished chemical composition qualitative and quantitative rapid analysis, fast and accurate, non-destructive, efficient environmental protection, no acid and base chemical agents.

The EDX8800M MAX has an FSDD silicon detector equipped with Peltie electrical cooling, which not only has excellent short-term repeatability and long-term reproducibility, but also has excellent elemental peak fraction. Simultaneous analysis of elements and oxides; Specially designed light path and vacuum system greatly improve the test precision and accuracy of the elements (aMg,Al S,P). The gas distribution system can be selected at the same time to realize the direct measurement of liquid and powder samples. Eight optical path collocation systems can automatically switch according to different sample sizes, and can also test different positions of the sample and then calculate the average value. The error caused by the peak and low sample inhomogeneity can be equipped with a sample spin platform to increase the sample detection area. Improve test accuracy and precision and other advantages.
The exact contents of trace sulfur, chlorine and phosphorus in coal ash were determined by energy dispersive X-ray fluorescence spectrometer EDX8800M MAX

The energy dispersive X-ray fluorescence spectrometer EDX880 MAX is a non-destructive technology used to separate the components in the sample. It has the advantages of fast precision and reliability. It can be used to close the trace elements in the coal. This technology also has a wide range of applications in other fields, such as metal, chemical, food and other industries.

The following is a EDX8800M MAX test of coal ash test report:

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