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Reactor Sample Dilution and Mixing Performance of the Agilent 1260 Infinity II Online Sample Manager

Technical notes | 2021 | Agilent TechnologiesInstrumentation
HPLC
Industries
Manufacturer
Agilent Technologies

Summary

Significance of the topic


The integration of precise online dilution and mixing into process analytical technology (PAT) is crucial for modern pharmaceutical and biochemical production. Accurate sample preparation prevents column and detector overload in HPLC, ensures reliable quantification of reactants and products, and supports real-time process monitoring.

Objectives and overview of the study


This work evaluates the performance of the Agilent 1260 Infinity II Online Sample Manager for diluting and mixing reactor samples prior to HPLC analysis. Key goals are to assess dilution accuracy, precision, mixing efficiency, and linearity, and to compare automated results with manual vortex mixing.

Methodology and instrumentation


The experiments employed a modular Agilent LC setup including:
  • Agilent 1260 Infinity II Online Sample Manager with internal and external valves for direct injection and dilution/quenching
  • Agilent 1290 Infinity II High-Speed Pump and Multicolumn Thermostat
  • Agilent 1290 Infinity II Diode Array Detector
  • Agilent OpenLab CDS and Online LC Monitoring Software

Sample preparation involved caffeine stock solution dilutions at ratios of 1:10, 1:50, and 1:500 in 2% acetonitrile–water. Automated dilutions and mixing were performed by high-speed solvent flushing, then compared with manual vortex mixing.

Main results and discussion


Automated dilutions showed accuracy within ±3% relative to manual methods, with area RSDs generally below 1%. Mixing accuracy deviated by less than ±5% and precision (RSD) remained under 2.5%. Linearity tests over multiple dilution ranges yielded overlapping calibration curves and correlation coefficients near unity.

Benefits and practical applications


The Online Sample Manager delivers high-precision, repeatable dilutions and efficient mixing directly from reactors. Its ability to store diluted or neat samples enables near real-time reaction monitoring, faster response to process changes, and maximized product yield in pharmaceutical and fine-chemical workflows.

Future trends and possibilities


Emerging developments include integration with advanced PAT software, real-time data analytics powered by machine learning, microfluidic sampling interfaces, and expanded compatibility with bioprocess reactors. These trends promise tighter process control and accelerated production cycles.

Conclusion


The Agilent 1260 Infinity II Online Sample Manager provides robust, automated dilution and mixing with excellent accuracy, precision, and linearity. It enhances online HPLC analysis, supports rapid process decisions, and contributes to optimized yields in industrial applications.

References


  • Performance Characteristics of the Agilent 1260 Infinity II Online Sample Manager. Agilent Technologies Technical Overview, publication number 5994-3529, 2021.
  • Online Reaction Monitoring by the Agilent InfinityLab Online LC Solutions. Agilent Technologies Application Note, publication number 5994-3528EN, 2021.

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