Measurement and Testing Solutions for CCUS

Supporting the Carbon Capture, Utilization, and Storage (CCUS) Value Chain

CCUS development requires accurate measurement at every stage—from material characterization and carbon capture evaluation to process monitoring and system integration.

HORIBA brings together analytical technologies, gas measurement systems, testing equipment, and engineering expertise to support CCUS research, scale-up, and industrial implementation.


UPCOMING WEBINAR

CCUS Chemical Absorption: Advanced Analytics for Process Monitoring and Optimization

Discover how emissions monitoring, trace-gas analysis, real-time amine monitoring, and automation can support more efficient, data-driven control of chemical absorption processes.

October 29, 2026 | 4:00–5:00 p.m. CET

Register for the Webinar


Materials Analysis and R&D

Characterize the composition, structure, and physical properties of sorbents, catalysts, membranes, and other materials used in carbon capture and CO2 conversion.

LabRAM Soleil

LabRAM Soleil Raman Microscope full view

Raman Microscope

Analyze chemical composition, molecular structure, and material uniformity to support the development and evaluation of sorbents, catalysts, membranes, and other functional materials.

View LabRAM Soleil

Partica LA-960V2

LA-960V2

Laser Scattering Particle Size Distribution Analyzer

Measure particle size distribution to support the development, comparison, and quality control of particulate sorbents, catalysts, and other materials used in CCUS applications.

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XGT-9000

X-ray Analytical Microscope

Perform non-destructive elemental analysis and mapping to investigate material composition, elemental distribution, contamination, and changes associated with material performance or degradation.

View XGT-9000

Process Control

Monitor gas composition and critical process parameters to evaluate capture efficiency, identify impurities, optimize CO2 conversion, and maintain stable operating conditions.

PLGA-1000

Process Laser Gas Analyzer

Continuously measure low concentrations of CO2 and other impurities in hydrocarbon-rich process gases with high speed and sensitivity, supporting process monitoring and optimization.

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VA-5000 Series

Multi-Component Gas Analyzer

Configure simultaneous gas measurement for CCUS research, industrial process control, environmental monitoring, and continuous emissions measurement.

View the VA-5000 Series

ENDA-7000 Series

Stack Gas Analyzer

Continuously monitors NOx, SO2, CO, CO2, O2, and NH3 in industrial stack emissions, supporting process control and emissions measurement. Available only in the US.

View the ENDA-7000 Series

Upscaling and Industrialization

Evaluate performance and maintain process consistency as CCUS technologies progress from materials research and laboratory testing toward larger-scale implementation.

CCEVA

Carbon Capture Evaluation System

Evaluate solid CO2 adsorbents, separation membrane materials, and CO₂ separation and recovery modules under controlled operating conditions.

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XV-100

CCM/MEA Catalyst Coating Monitor

Continuously monitor catalyst coating during roll-to-roll production to support coating uniformity and process optimization.

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CO₂ Conversion and Utilization

Evaluate and optimize processes that convert captured CO2 into fuels, chemicals, and other valuable products. HORIBA supports applications including CO2 electrolysis, synthesis-gas development, and e-fuel production.

Evaluator C50-HT

SOEC Test Station

Evaluate the performance, efficiency, and durability of solid oxide electrolysis cells under controlled operating conditions to support CO2 electrolysis and Power-to-X development.

View Evaluator C50-HT

PI-200-I

Process Raman Analyzer

Monitor chemical composition across multiple process streams to support real-time process control and optimization in carbon capture and related industrial applications.

View the PI-200-I


Explore CCUS Trends and Technologies

Learn more about carbon capture technologies, industrial applications, and the expanding role of CCUS in reducing emissions across hard-to-abate sectors.

View and download The Expanding Role of CCUS infographic

Discuss Your CCUS Application

HORIBA specialists can help identify the appropriate combination of analytical instruments, process measurement technologies, testing systems, and engineering support for your CCUS application.

Contact Our Experts

Frequently Asked Questions

Evaluation typically combines material characterization with performance testing under controlled process conditions. Important parameters include CO2 capture capacity, selectivity, adsorption and desorption rates, regeneration behavior, stability over repeated cycles, and tolerance to moisture and process-gas impurities.

HORIBA technologies support different stages of this evaluation. The LabRAM Soleil analyzes chemical and molecular structure, the Partica LA-960V2 measures particle size distribution, and the XGT-9000 provides non-destructive elemental analysis and mapping.

The CCEVA Carbon Capture Evaluation System extends this analysis by evaluating solid adsorbents, separation membranes, and CO2 separation and recovery modules under controlled operating conditions, including variations in humidity and gas composition.

Gas composition should be measured at locations such as the untreated gas stream, capture-unit inlet and outlet, treated exhaust, purified CO2 stream, and relevant conversion processes. The required components depend on the application and may include CO2, O2, CO, NOx, SO2, NH3, CH4, water vapor, and other impurities.

HORIBA offers several technologies for these requirements. The PLGA-1000 provides continuous, high-sensitivity measurement of low-concentration impurities in hydrocarbon-rich process streams. The VA-5000 Series enables configurable multi-component gas measurement, while the ENDA-7000 Series continuously monitors stack gas components.

For distributed process environments, the PI-200-I Process Raman Analyzer can monitor multiple sampling points and process streams using a single analyzer. In amine-based carbon capture systems, it can also monitor amine degradation and the formation of heat-stable salts. This information helps operators assess solvent condition, reduce risks to pumps and heat exchangers, and make better-informed decisions about amine replacement.

CO2 conversion processes require technologies that can evaluate electrochemical performance and monitor changes in chemical composition throughout the process. The appropriate measurements depend on whether captured CO2 is being converted into synthesis gas, fuels, chemicals, or other products.

HORIBA FuelCon rovides configurable test systems for electrochemical technologies, including solid oxide electrolysis cells (SOECs) used for CO2 electrolysis and co-electrolysis. These systems support performance, efficiency, durability, and degradation testing under controlled and application-relevant operating conditions.

The PI-200-I Process Raman Analyzer complements this testing by providing real-time chemical information from multiple sampling points. This supports process development and optimization across CO2 conversion pathways, including synthesis reactions and Power-to-X applications.

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