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Analysis of the composition of the substance

Technoanalitpribor LLC has its own research base and highly qualified specialists with fundamental knowledge in the field of nuclear physics analysis methods.

This gives us the opportunity to conduct our own scientific research in the latest areas of using physical and nuclear-physical methods of analysis and control of the qualitative and quantitative composition of matter.

Such analysis is an integral part not only for laboratory research, but also for non-destructive testing in production and industry, which helps to significantly save money spent in the event of a violation of the technological process.

The most in-demand areas of industry for monitoring the composition of substances are the following:

Mineral exploration

Currently, modern methods of analysis are widely used for exploration of various minerals and allow solving the following problems:

  1. Development and application of nuclear physics methods and equipment for solving geological and geophysical problems.
  2. Development of nuclear-physical methods for mineral exploration.
  3. Determination of hydrogen and moisture content of rocks.
  4. Determination of rock-forming elements (oxygen, sodium, magnesium, aluminum, silicon, potassium, calcium).
  5. Methods of searching and exploring deposits of lithium, beryllium, boron, fluorine (fluorite), aluminum.
  6. Methods and equipment for prospecting and exploration of titanium, vanadium and scandium deposits.
  7. Methods and equipment for rapid analysis of titanium, vanadium, scandium, chromium, manganese, iron, nickel, cobalt, arsenic, copper.
  8. Methods and equipment for searching and exploring deposits of rare and trace elements (gallium, germanium, selenium, rubidium, strontium, zirconium, niobium, tellurium, cesium, hafnium, tantalum, rhenium, thallium).
  9. Methods and equipment for searching and exploring deposits of rare earth elements.
  10. Methods and equipment for prospecting and exploration of platinum group metals and gold.
  11. Methods and equipment for prospecting and exploration of polymetallic deposits.
  12. Methods and equipment for searching and prospecting for radioactive ores.

Environmental Pollution Control

  • Water analysis
  • Air analysis
  • Soil analysis
  • Industrial Materials Analysis
  • Radiation measurement and dose control

Today, the issue of environmental pollution control is extremely acute. Modern methods of analysis allow all necessary measurements to be carried out simply and quickly. Our company offers equipment for both laboratory analysis and for work in field conditions. This equipment is reliable, easy to use, and can work with a wide variety of samples.

Analysis of oil and petroleum products

  1. Analysis of sulfur, vanadium and nickel in petroleum products.
  2. Analysis of lead in gasoline.
  3. Analysis of phosphorus, sulfur, calcium, barium and zinc in lubricating oils.

At the present stage of technical development, oil and its refined products are the main source of modern types of liquid fuel: gasoline, kerosene, jet, diesel. This fuel is used in almost all modern vehicles. Lubricating and special oils, petroleum pitch, various bitumens, lubricants, paraffin hydrocarbons, etc. are also produced from oil. In turn, the most important products for various areas of industry, agriculture, medicine and everyday life are obtained from oil refined products. Therefore, the issue of careful extraction and rational use of oil and oil products is very important from an economic point of view and requires high-quality control at all stages of production.

During processing, the quality and quantity of hydrocarbon systems obtained are influenced by the nature of the oil feedstock, therefore the chemical and fractional composition of oil must be known in order to select a rational oil refining process.

Our company develops a substance composition analyzer used for mining and processing plants. The analyzer allows for the analysis of elements in technological products of mineral raw material processing directly in the flow, without sampling.

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