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Waters ACQUITY UPLC and ACQUITY PREMIER HSS Columns

Manuals | 2020 | WatersInstrumentation
Consumables, LC columns
Industries
Manufacturer
Waters

Summary

Significance of the Topic


The Waters ACQUITY UPLC and ACQUITY PREMIER HSS columns represent a critical advance in high-throughput, high-resolution chromatographic separations. Their specialized high-strength silica (HSS) stationary phases, combined with innovative VanGuard protection and eCord intelligent tracking, address the growing needs of analytical laboratories for reproducible performance, extended column lifetime, and seamless data management. These developments are essential for industries ranging from pharmaceutical quality control to environmental and food safety analysis, where speed, sensitivity, and robustness are paramount.

Objectives and Overview


This manual aims to guide users through the proper care, installation, operation, and maintenance of ACQUITY UPLC and ACQUITY PREMIER HSS columns. Key objectives include:
  • Ensuring correct installation and initial performance verification.
  • Defining best practices for sample preparation, mobile-phase selection, and operating conditions.
  • Providing protocols for cleaning, regeneration, and storage to maximize column lifetime.
  • Describing the use of the eCord intelligent chip for tracking column history and quality data.

Methodology and Instrumentation


The procedures span several stages:
  • Column Installation and Equilibration: Detailed steps for connecting columns and VanGuard pre-columns or FIT cartridges, followed by equilibration with at least ten column volumes of mobile phase under controlled flow and temperature.
  • Initial Efficiency Assessment: Performance test chromatograms and certificates of analysis are provided for each column to determine theoretical plates and retention factors before first use.
  • Sample and Mobile-Phase Guidelines: Recommendations include filtering samples through 0.2 μm membranes, preparing samples in weaker or identical mobile phases, and selecting buffers compatible with mass spectrometry (volatile additives such as formic or acetic acid); pH operating range 1–8 depending on chemistry.
  • Cleaning and Regeneration: Solvent sequences provided for polar, non-polar, and proteinaceous contaminants, emphasizing neat organic solvents, buffer compatibility, and temperature control.
  • Storage Protocols: Use of 100% acetonitrile for reversed-phase columns and appropriate conditioning for normal-phase applications to prevent buffer precipitation and microbial growth.

Main Findings and Discussion


ACQUITY HSS columns exhibit robust performance across a wide range of pH and temperature conditions, with typical pressure tolerance up to 18,000 psi. The VanGuard FIT cartridge effectively protects the analytical column from particulates and matrix components, enabling simple cartridge replacement to restore performance. The eCord chip stores batch-specific quality data and operational history, facilitating traceability and reducing paperwork. Adherence to recommended mobile-phase quality, regular buffer replacement, and careful sample preparation are shown to be critical factors in preventing early column degradation and maintaining consistent chromatographic efficiency.

Benefits and Practical Applications


These methodologies deliver tangible benefits:
  • High reproducibility and peak efficiency for routine QC, method development, and complex sample analysis.
  • Extended column lifetime through in-line protection and systematic cleaning protocols.
  • Reduced administrative burden with digital column records, enabling rapid identification of performance trends.
  • Flexibility across reversed-phase and normal-phase modes for diverse analytical challenges.

Future Trends and Potential Applications


Emerging opportunities include integration of eCord data into laboratory information management systems (LIMS) for real-time performance analytics, development of new stationary phases with enhanced surface chemistries for improved recovery of polar and labile compounds, and further automation of column maintenance. The expansion of UPLC technologies into areas such as single-cell metabolomics and online reaction monitoring will also drive innovation in column design and tracking solutions.

Conclusion


The ACQUITY UPLC and ACQUITY PREMIER HSS columns, combined with VanGuard protection and eCord intelligent technology, establish a comprehensive solution for modern analytical laboratories. By following the described installation, operation, cleaning, and tracking protocols, users can achieve high throughput, reproducibility, and column longevity essential for demanding applications.

Used Instrumentation


  • Waters ACQUITY UPLC System and ACQUITY PREMIER UPLC System
  • ACQUITY HSS C18, HSS T3, HSS C18 SB, HSS PFP, and HSS Cyano columns
  • VanGuard Pre-columns and VanGuard FIT cartridges
  • eCord intelligent chip integrated with ACQUITY column heater module
  • High-pressure solvent delivery pumps, autosamplers, and UV or MS detectors compatible with UPLC

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