Description
Detailed parameter table
Product introduction
The ABB Advance Optima AO2040 URAS26 is a state-of-the-art industrial process gas analyzer system built on a foundation of precision and reliability. As a core component of the acclaimed ABB Advance Optima family, the ABB Advance Optima AO2040 URAS26 utilizes the highly advanced URAS26 photometer module. This module employs Non-Dispersive Infrared (NDIR) technology, which is ideal for selectively measuring gases that absorb infrared radiation. The integration of this module within the robust 19-inch chassis of the ABB Advance Optima AO2040 ensures a compact, yet powerful, analytical solution.
The URAS26 photometer, the heart of the ABB Advance Optima AO2040 URAS26, features a unique microflow sensor and high-efficiency optical components, which enable it to provide highly selective and stable measurements with minimal drift. This technology is crucial for applications that require the differentiation of specific gases from complex mixtures. The modular design allows for future upgrades and the addition of other analyzer types, such as oxygen or thermal conductivity analyzers, within the same ABB Advance Optima AO2040 platform. This makes the ABB Advance Optima AO2040 URAS26 a future-proof investment, capable of adapting to changing analytical needs while providing the high-quality data necessary for process optimization, emissions compliance, and operational safety.
Typical application scenarios
The ABB Advance Optima AO2040 URAS26 is a cornerstone of process and environmental monitoring in numerous industries. In the power generation sector, it is a critical component of Continuous Emissions Monitoring Systems (CEMS), measuring flue gases to ensure compliance with environmental regulations for pollutants like SO₂ and NOx. The high selectivity of the URAS26 makes it ideal for these applications where multiple gases are present. In the cement industry, the ABB Advance Optima AO2040 URAS26 is used to monitor CO and NOx in kiln operations, providing data for combustion control and efficiency optimization.
For the chemical and petrochemical industries, the ABB Advance Optima AO2040 URAS26 is deployed to monitor gas purity and manage process safety. It can be used to analyze the concentration of CO or CO₂ in synthesis gas or other reactor inputs to ensure the correct stoichiometry for efficient chemical reactions. The system’s reliable performance and ability to operate in challenging conditions make it suitable for installation in remote or hazardous areas. In all these applications, the data provided by the ABB Advance Optima AO2040 URAS26 is invaluable for improving plant efficiency, ensuring product quality, and maintaining compliance with environmental and safety standards.
Related model recommendations
The ABB Advance Optima AO2040 URAS26 is part of a family of modular analyzers. Other related models and components include:
Advance Optima AO2040 CALDOS25: This system integrates a thermal conductivity analyzer, used for measuring gases like H₂ or He, which can be a complementary measurement to the URAS26 in some processes.
Advance Optima AO2040 Magnos206: A paramagnetic oxygen analyzer module that often works in tandem with the URAS26 for combustion control and safety applications.
Advance Optima AO2040 LIMAS21: A UV-Vis photometer module that can be integrated into the ABB Advance Optima AO2040 for measuring gases like SO₂ and NOx.
Advance Optima AO2020: A smaller, single-module analyzer from the same series, ideal for applications that only require one measurement technology.
Uras 27: A standalone version of the URAS analyzer, often used in simpler systems where the modularity of the AO2040 platform is not a primary requirement.
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