NIRS XDS Process Analyzer – MicroBundle
Brochures and specifications | 2017 | MetrohmInstrumentation
Near-Infrared Spectroscopy (NIR) provides non-destructive, rapid analysis of process streams, enabling real-time monitoring and control.
Such capabilities support Process Analytical Technology (PAT) guidelines and drive efficiency in chemical, pharmaceutical, and industrial manufacturing.
The whitepaper introduces the NIRS XDS Process Analyzer – MicroBundle, designed to deliver inline, real-time NIR analysis across diverse sample types.
It outlines configurations from single-point to nine-point multiplexed sampling, emphasizing flexibility, robustness, and cost-effectiveness for harsh environments.
The analyzer achieves true inline spectral acquisition within seconds, providing continuous data to optimize process parameters.
Multiplexing reduces installation costs by linking multiple sample points to a single analyzer.
The digital encoder and internal reference ensure precise grating positioning and reliable calibration transfer.
Robust design and environmental options maintain performance in temperatures from 0 °C to 51 °C and in explosive atmospheres.
Advancements in machine learning and chemometric algorithms will improve predictive accuracy and calibration robustness.
Miniaturization and wireless data transmission can extend NIR monitoring to flexible and mobile platforms.
Integration with digital twins and Industry 4.0 ecosystems will foster autonomous process control and anomaly detection.
The NIRS XDS Process Analyzer – MicroBundle represents a significant evolution in inline NIR process analysis, combining speed, flexibility, and industrial resilience.
Its modular design and advanced software support diverse applications, driving enhanced process understanding and operational efficiency.
No references cited in the source document.
NIR Spectroscopy
IndustriesEnergy & Chemicals
ManufacturerMetrohm
Summary
Importance of the Topic
Near-Infrared Spectroscopy (NIR) provides non-destructive, rapid analysis of process streams, enabling real-time monitoring and control.
Such capabilities support Process Analytical Technology (PAT) guidelines and drive efficiency in chemical, pharmaceutical, and industrial manufacturing.
Objectives and Study Overview
The whitepaper introduces the NIRS XDS Process Analyzer – MicroBundle, designed to deliver inline, real-time NIR analysis across diverse sample types.
It outlines configurations from single-point to nine-point multiplexed sampling, emphasizing flexibility, robustness, and cost-effectiveness for harsh environments.
Methodology and Instrumentation Used
- NIRS XDS Process Analyzer – MicroBundle with integrated XDS monochromator (800–2200 nm) and extended InGaAs detector.
- Microbundle fiber optic interface (40 illumination/40 collection fibers) compatible with clear/opaque liquids, slurries, suspensions, and powders.
- Sampling interface options: reflectance, immersion, transmission probes, and optimized micro-reflectance probes.
- Multiplexer module enabling sequential measurement of up to nine sampling points for remote, economical process monitoring.
- Robust industrial housing (NEMA 4X/IP65) with options for heatsink, air-conditioning, vortex cooling, and ATEX certification for Zones 0–2.
- Vision software suite for spectral acquisition, method development, database management, and compliance with 21 CFR Part 11.
Main Results and Discussion
The analyzer achieves true inline spectral acquisition within seconds, providing continuous data to optimize process parameters.
Multiplexing reduces installation costs by linking multiple sample points to a single analyzer.
The digital encoder and internal reference ensure precise grating positioning and reliable calibration transfer.
Robust design and environmental options maintain performance in temperatures from 0 °C to 51 °C and in explosive atmospheres.
Benefits and Practical Applications
- Real-time quality control in chemical reactors, dryers, granulators, and production lines.
- Non-destructive analysis of a wide range of sample matrices without sampling delays.
- Reduced operational costs via multiplexing and remote installation.
- Enhanced regulatory compliance through validated software and data traceability.
Future Trends and Applications
Advancements in machine learning and chemometric algorithms will improve predictive accuracy and calibration robustness.
Miniaturization and wireless data transmission can extend NIR monitoring to flexible and mobile platforms.
Integration with digital twins and Industry 4.0 ecosystems will foster autonomous process control and anomaly detection.
Conclusion
The NIRS XDS Process Analyzer – MicroBundle represents a significant evolution in inline NIR process analysis, combining speed, flexibility, and industrial resilience.
Its modular design and advanced software support diverse applications, driving enhanced process understanding and operational efficiency.
References
No references cited in the source document.
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