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Inductively coupled plasma atomic emission spectrometry

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The issues of qualitative and quantitative analysis for the determination of the purity of liquids and solids are becoming more and more relevant. Research work and the practice of analysis in many areas of industrial production, the food sector and the study of the impact of man and his activities on nature require the use of more and more modern and effective methods and instruments.

There are and are operating many analytical schemes and systems for determining the exact composition of objects of different production, natural and artificial origin, but the need for more and more accurate analytics is constantly growing and requires new high-precision developments at the level of the smallest units of elements of substances.

ICPE (Atomic Emission Spectrometry) is a combination of various analysis methods. Free atoms (ions) in the gas phase give their own unique radiation spectrum, which can be recorded and studied in order to establish the composition and purity of the presented sample. To obtain the gas (plasma) phase of the sample, the ICP inductively coupled plasma method is used, and this method is completely referred to as ICPE.

ICPE has the ability to quickly quantify elements with sufficient accuracy using minimum sample weights.

To obtain inductively coupled sample plasma, an ionized discharge is created in an argon medium, which is then maintained in the plasma state by a high-frequency electromagnetic field. Inside the plasma, the temperature reaches values up to 10,000 degrees Kelvin.

In this state, the test substances of the sample are decomposed into atoms, each of which, with its own radiation frequency, appears in the general spectrum and is recorded using an atomic emission spectrometer.

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Preparation and performance of spectrometry:

  • Sample formation;
  • Evaporation of liquid or solid state of the sample;
  • Decomposition into atoms;
  • Transfer of atoms (ions) to a high energy state;
  • Registration of the entire spectrum;
  • Exploring the spectrum;
  • Comparison of the volumetric composition.

Latest Instruments ICPE-9800 ICPE-9810 (Axial View), ICPE-9820 (Axial Radial View)

ICPE 9000 The devices are made in Germany, have excellent structural design, are easy to study and easy to master the operations.

Our laboratory has mastered the conduct of such analyzes on ICPE-9800, ICPE-9810 and ICPE-9820 devices. Based on the results of analyzes carried out on these devices, our customers send only positive feedback. The specialists of our laboratory carry out a lot of work on a daily basis to study samples of various products and make their significant contribution to the high technological development of many sectors of the country's national economy.

These devices provide:

  • Registration of wavelengths of all elements in one measurement;
  • Two-way analysis without wavelength selection is performed by the operator;
  • Automatic selection of wavelengths, no overlap;
  • The concentration of the test solutions is provided by the program;
  • Plasma dual view increases the sensitivity and accuracy of measurements;
  • The evacuation of the spectrometer, the use of a mini-burner, and the eco-mode with a gas flow rate of 5 l / min fundamentally reduce the argon consumption.

Areas of use:

  • Metallurgy
  • Petrochemistry
  • Medicine / biology
  • Environmental protection
  • Glass, ceramics
  • Details of mechanisms and machines
  • Oil and petroleum products
  • Oils and fuels
  • Catalysts
  • Chemical products
  • Biological objects
  • Pharmaceuticals
  • Plants
  • Food products
  • Drinking water, river and sea water
  • Wastewater
  • Atmospheric dust, precipitation
  • The soil

icpe scope of use

The introduction of ICPE (Inductively Coupled Plasma Atomic Emission Spectrometry) in these areas of research and measurement is a significant and confident step in the overall technological breakthrough and improvement in the quality of life of people and the conservation of wildlife.

icpe detection limits

The laboratory accepts applications for the analysis of samples and samples from representatives of the listed areas of application through the contacts indicated on our website.

Examination of metals and alloys

Service (for 1 sample) Deadlines Price without VAT*
X-ray fluorescence analysis
X-ray fluorescence spectrometry (XRF) up to 6 days 77 USD
X-ray fluorescence spectrometry (XRF, without issuing a protocol) up to 3 days 31 USD
Sample preparation for XRF mechanical up to 5 days 77 USD
Sample preparation for XRF with annealing (2 samples) up to 8 days 114 USD
Determination of alloy grade (carbon + alloying + grade) up to 7 days 123 USD
Determination of alloy grade (carbon + alloying + grade, without issuing a protocol) up to 4 days 96 USD
Determination of the carbon content (DSTU 7750, AN-7529, 0.03-99.99) up to 8 days 94 USD
Atomic emission analysis
Inductively Coupled Plasma Atomic Emission Spectrometry (ICPE, >5 ppm, per sample) up to 21 days 168 USD
Qualitative analysis of all elements (ICPE, screening, >5 ppm) up to 21 days 168 USD
Quantitative analysis of one element (ICPE, >1-10 ppb, for 1 element) up to 21 days 210 USD
Sample preparation for ICPE up to 11 days 72 USD
Analytical chemistry
Methods of analytical chemistry, simple method up to 11 days 241 USD
Methods of analytical chemistry, complex technique up to 21 days 481 USD
X-ray diffraction
Powder X-ray diffraction (XRD) up to 21 days 199 USD
Sample preparation of solid or liquid samples for XRD up to 5 days 77 USD
Thickness and dimension measurements
Thickness by ultrasonic method (5 points, 0.8-300 mm) up to 11 days 94 USD
Dimension by metric method (5 points) up to 11 days 68 USD
Thickness by metric method (5 points) up to 11 days 68 USD
Weight determination (10 mg-2100 g) up to 5 days 74 USD
Measurement of roughness
Surface roughness (2-300 µm) up to 11 days 85 USD
Surface roughness (Ra 0.005-16 µm, Rz 0.02-160 µm) up to 21 days 547 USD
Metal hardness measurement
Hardness on a stationary device (HB, HRC, HRB, HV) (per 1 sample) up to 21 days 142 USD
Hardness on a portable device (ASTM A956) up to 11 days 101 USD
Microhardness (5 injections) up to 21 days 142 USD
Preparation of standard samples for hardness determination up to 11 days 142 USD
Mechanical testing of metal and alloys
Mechanical test for abrasion (first hour) up to 11 days 66 USD
Mechanical test for abrasion (every subsequent hour) up to 2 days 7 USD
Mechanical tensile testing of samples (ISO 6892-1, 2-5 samples, до 200 kН) up to 21 days 217 USD
Mechanical testing of samples for bending (2-5 samples) up to 21 days 225 USD
Mechanical tests of samples for compression (2-5 samples) up to 21 days 225 USD
Impact test at room temperature (ISO 148-1, -5 samples) up to 21 days 204 USD
Impact testing at low temperatures (from 0 to -80 °С, 2-5 samples) up to 21 days 217 USD
Preparation of standard samples for mechanical testing up to 21 days 204 USD
Metallographic studies and SEM
Metallographic study of the structure (preparation, etching, grain, structure) up to 21 days 440 USD
Electron micrograph + quantitative analysis of the composition (SEM EP-XRF, up to 5 points) up to 21 days 232 USD
Sample preparation for microphotography (cutting, polishing, grinding, drying, vacuuming, deposition) up to 21 days 136 USD
Flaw detection of metals and alloys
Capillary control (first dm2) up to 11 days 129 USD
Capillary control (each subsequent dm2) up to 11 days 28 USD
Magnetic particle inspection (MPD, first dm2) up to 21 days 173 USD
Magnetic particle inspection (MPD, each subsequent dm2) up to 21 days 57 USD
Visual-optical control of joints (first line) up to 11 days 83 USD
Visual-optical control of joints (each subsequent l.m.) up to 11 days 31 USD
Visual-optical control of the base metal (first m2) up to 11 days 83 USD
Visual-optical control of the base metal (each subsequent m2) up to 11 days 31 USD
Ultrasonic flaw detection of joints (first line) up to 21 days 118 USD
Ultrasonic flaw detection of joints (each subsequent r.m.) up to 21 days 33 USD
Base metal ultrasonic testing (first m2) up to 21 days 118 USD
Ultrasonic flaw detection of the base metal (each subsequent m2) up to 21 days 33 USD
Determining the causes of damage and breakdowns
Fractographic analysis of fractures (for 1 fracture) up to 21 days 315 USD
Determining the causes of damage (for 1 question) up to 21 days 315 USD
Coating expertise
Coating thickness determination (ISO 2808):
magnetic induction method (EN ISO 2178, ISO 3882, 10 points, 3-5000 microns) up to 8 days 96 USD
eddy current method (EN ISO 2360, ISO 3882, 10 points, 5-2000 µm) up to 8 days 96 USD
metric method (ISO 3882, 5 points, 10-2500 microns) up to 5 days 68 USD
drip method (5 points, from 2.5 µm) up to 8 days 129 USD
XRF method (ISO 3497, ISO 3882, 1 point, from 0.01 µm) up to 6 days 77 USD
gravimetric method (ISO 10111, ISO 3882, arbitration, 3 points, no limit) up to 6 days 254 USD
Sample preparation (removal of coating, up to 10 points) up to 11 days 46 USD
Study of bank bullion
Inspection of the metal surface for compliance with the sample (XRF) up to 6 days 77 USD
Checking the homogeneity of the metal (ultrasound) up to 11 days 94 USD
Checking the density of metal (hydrostatics) up to 5 days 81 USD
other services
Compliance with certificates and other documents, confirmation or refutation of brand conformity (without the cost of brand identification) up to 21 days 61 USD
Radioactivity level (gamma and beta background) up to 5 days 61 USD

The prices are approved by the director of LLC "In Consulting" 08.09.2026. Deadlines are indicated in working days

For a free consultation, you can use On-line consultation, or call us or write to the messengers.For information about the cost of services go to Tariffs or place Application for Services.