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Cubic Instruments Laser Raman Gas Analyzer Brochure

Cubic Instruments Laser Raman Gas Analyzer Brochure

Cubic Instruments Laser Raman Gas Analyzer Brochure

Product catalog summary
Introduction
The document provides a detailed overview of the Laser Raman Gas Analyzer technology developed by Cubic Sensor and Instrument Co., Ltd. It highlights the advantages of using Laser Raman spectroscopy for gas analysis, particularly in industrial applications.

Specifications and Features
The Laser Raman Gas Analyzers, including models LRGA-6000, LRGA-3100, and LRGA-3200EX, are designed for real-time measurement of multiple gas components such as H2, N2, O2, CO, CO2, CH4, and others. The analyzers offer a wide detection range from 0-100%, with a high accuracy of ±1% F.S. They operate within a temperature range of -35 to 50°C and support various external interfaces like RS-232/RS-485, TCP/IP, and USB.

Principle of Operation
Laser Raman spectroscopy is based on Raman scattering, where a laser beam interacts with gas molecules to produce characteristic peaks. The intensity of these peaks is proportional to the gas concentration, allowing for simultaneous multi-component gas measurement. This method offers faster response times compared to traditional chromatography and mass spectrometry.

Advantages Over Other Technologies
Laser Raman spectroscopy provides several benefits over other gas analysis technologies, including no need for carrier gas or chromatographic columns, low maintenance costs, and strong anti-interference capabilities. It offers rapid response times, as fast as 30 seconds, and is suitable for online real-time measurement.

Applications
The technology is applicable in various fields such as natural gas, shale gas, petrochemical, coal chemical industry, and biomass gasification. It is particularly advantageous in environments where traditional methods face challenges, such as high boiling point substances or complex gas mixtures.

Conclusion
Laser Raman Gas Analyzers provide a robust solution for industrial gas analysis, offering high accuracy, low operational costs, and the ability to measure multiple gases simultaneously. Their application across diverse industries underscores their versatility and effectiveness in modern gas analysis.
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Catalog excerpts

Cubic Instruments Laser Raman Gas Analyzer Brochure-1

National special project for significant scientific equipment development Fast measurement No carrier gas Fingerprint technology Strong anti-interference ability Real-time measurement of all components Direct data visualization Cubic Sensor and Instrument Co., Ltd Add: No. 6, Fenghuangyuan Middle Road, Fenghuang Industrial Park, Eastlake Hi-tech Development Zone, Wuhan 430205, China. Tel: +86-27-81628831 Fax: +86-27-87401159 Web: www.gas-analyzers.com E-mail: [email protected] All products are in continuous development and therefore specifications may be subject to change without prior notice.

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Cubic Instruments Laser Raman Gas Analyzer Brochure-2

Laser Raman Spectroscopy Technology Laser Raman gas analyzers are independently researched and developed by CUBIC INSTRUMENTS (a wholly-owned subsidiary of CUBIC Sensor and Instrument Co., Ltd), including in-situ Laser Raman gas analyzer and extractive Laser Raman gas analyzer. Based on the Laser Raman gas analyzer--a special product for the development of national significant scientific instruments and equipment, the optical path and structure were optimized to greatly reduce the size of the gas analyzer, so the new generation laser raman gas analyzer is much more compact and transportable. Based...

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Cubic Instruments Laser Raman Gas Analyzer Brochure-3

*Please refer to data sheet for detail specification, if you need further technical information, please email [email protected]

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Cubic Instruments Laser Raman Gas Analyzer Brochure-4

Natural Gas >• All the molecules in typical fuels have Raman activity, and Raman spectroscopy is more applicable as it can measure substances that cannot be measured by other technologies, such as H2, N2, etc.; > In the field of natural gas measurement, Raman analysis technology has great sensitivity with fast detection speed and accurate measurement results. > Raman spectroscopy does not require sample pretreatment, and can be collected in situ, which is beneficial to study the structural evolution of ferrite compounds under different conditions; > There are many magnons in ferrite compounds,...

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