RS2600PAT Online Multi-Gas Analyzer For Petrochemical Fluorine Chemical And Metallurgical Industries With Raman Spectroscopy Technology
| Attribute | Value |
|---|---|
| Laser wavelength | 532nm |
| Spectral range | 200 ~ 4200 cm-1 |
| Resolution | ≤ 8 cm-1 at full spectral range |
| Power supply | 100 ~ 240 VAC,50 ~ 60 Hz |
| Analysis time | 2 seconds |
| Measurement uncertainty | ≤0.2% |
| Air circuit interface | 6 mm standard tube fitting (3 mm, 1/8'', and 1/4'' are optional) |
| Unit dimensions | 485 mm (Width) × 350 mm (Height) × 600 mm (Depth) |
JINSP® RS2600PAT multi-gas analyzer is based on Raman spectroscopy and can detect all gases except noble gases, enabling simultaneous online analysis of multiple gases.
- Petrochemical industry: alkane, alkene and alkyne gases such as CH4, C2H6, C3H8, C2H4, etc.
- Fluorine chemical industry: corrosive gases such as F2, BF3, PF5, Cl2, HCl, HF, etc.
- Metallurgical industry: N2, H2, O2, CO2, CO, etc.
- Multi-component: simultaneous online analysis of multiple gases
- Universal: >500 types of gases are detectable except noble gases
- No need for pressure control: Quantification is not affected by changes in sample gas pressure
- Rapid response: Complete a single detection within seconds
- Wide quantitative range: detection limit is as low as ppm level, and the measurement range can be as high as 100%
| Components | N2, H2, O2, CO, CO2, H2S, CmHn, etc. |
|---|---|
| Analysis time | 2 seconds |
| Measurement uncertainty | ≤0.2% |
| Laser excitation wavelength | 532 ± 0.5 nm |
| Spectral coverage | 200 ~ 4200 cm-1 |
| Spectral resolution | ≤8 cm-1 at full spectral range |
| Air circuit interface | 6 mm standard tube fitting (3 mm, 1/8'', and 1/4'' are optional) |
| Explosion-proof | ExdbebibmbpxbIICT4Gb / ExtbibmbIIICT135ºCDb |
| Input voltage | 100~240 VAC,50~60 Hz |
| Sample gas temperature | -50 ~ 40 ºC |
| Sample gas pressure | <1.0 MPa |
| Unit dimensions | 485 mm (Width) × 350 mm (Height) × 600 mm (Depth) |
| Weight | 40 kg |
- Petrochemical field: Quantitative analysis of different Elements in Petrochemical Natural Gas. As a mixture of hydrocarbon components, the accuracy of qualitative and quantitative analysis of natural gas components directly affects the quality index of natural gas - calorific value.
- Fluorine chemical industry: Detection of components in reaction and emitted gases of fluorine materials; Monitoring of F2, N2, HF and other components in the fluorination process.
- Metallurgical field
- Isotope gases
- Detection of Impurity Gases in Electronic Special Gases
Through valve control, it can achieve the following functions:
- Monitoring the content of each component in the raw gas
- Alarm notification for impurity gases in the raw gas
- Monitoring the content of each component in the synthesis reactor tail gas
- Alarm notification for the excessive emission of hazardous gases in the synthesis reactor tail gas
- Quantitative model of multiple standard curves, combined with the chemometric method, establishes the relationship between the spectral signal (peak intensity or peak area) and the content of multi-component substances
- Changes in sample gas pressure and test conditions do not affect the accuracy of quantitative results
- No need to establish a separate quantitative model for each component
JINSP Company Limited has won the National Science and Technology Commission's Scientific and Technological Achievement Appraisal Certificate and the China Patent Excellence Award, and related products have been obtained has won authoritative awards such as the Geneva International Invention Award, the Beijing New Technology and New Product Certificate, and the "Innovation Achievement Award" of the Zhu Liangyi Analytical Instrument Innovation Award.
In addition, JINSP participated in the drafting of several national and international standards, including participating in the drafting of an international standard as the only participating unit in China IEC 63085 International Standard: System of spectral identification of liquids in transparent or semitransparent containers; Drafting of two national standards: GB/T 41086-2021 "General Technical Requirements for Safety Inspection Equipment for Hazardous Chemicals Based on Raman Spectroscopy", GB/T 40219-2021 "General Specification for Raman Spectrometer".
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