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Agilent 5100 and 5110 ICP-OES - Site Preparation Checklist

Manuály | 2019 | Agilent TechnologiesInstrumentace
ICP-OES
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Výrobce
Agilent Technologies

Souhrn

Significance of Site Preparation


Accurate and detailed site preparation is crucial to ensure reliable performance and longevity of high-end ICP-OES systems such as the Agilent 5100 and 5110. By meeting spatial, environmental, utility and operational prerequisites, laboratories can minimize installation delays, equipment damage and potential health or safety hazards.

Objectives and Overview


This checklist aims to guide end users through all necessary steps to ready their facilities for the installation of the Agilent 5100/5110 ICP-OES. It covers:
  • Bench space and weight support requirements
  • Environmental controls and exhaust venting
  • Laboratory gases and plumbing
  • Electrical and power specifications
  • Cooling water and consumable supply needs
  • Shipping, handling and safety considerations

Methodology and Used Instrumentation


Site preparation is structured in sections addressing each major requirement. Users are responsible for planning and verifying the following elements prior to installation.
  • Space allocation based on equipment dimensions and shipping container size
  • Ambient temperature, humidity and stable exhaust flow parameters
  • Power outlets, voltage, grounding and region-specific power cords
  • Water recirculation, flow rates, temperature and conductivity requirements
  • Gas supply purity, pressure and proximity of regulators

Used Instrumentation


  • Agilent 5100/5110 ICP-OES mainframe
  • PC workstation and monitor
  • G8481A and G8489A recirculating chillers
  • SPS 4 autosampler
  • Laboratory extraction venting system

Main Findings and Discussion


The checklist identifies exact specifications to avoid installation issues:
  • Bench space dimensions: mainframe requires 940×740×800 mm, shipping container up to 1225×910×945 mm
  • Operating temperature 15–30 °C with ±2 °C stability, humidity 25–80 % non-condensing
  • Exhaust flow 2.5–6.0 m3/min through 150 mm ID ducting with ±5 % flow fluctuation
  • Power: single-phase 200–240 VAC, 50/60 Hz, 15 A (mainframe); detailed cord part numbers for various regions
  • Cooling water: 2 L/min flow, 15–28 °C inlet temperature, 50–150 µS conductivity
  • Argon gas ≥99.995 % at 500–600 kPa; optional nitrogen purge and application-specific gas mixtures

Benefits and Practical Applications


Meeting the specified requirements allows for:
  • Seamless and timely instrument installation
  • Optimal analytical performance and reduced downtime
  • Improved safety by ensuring proper ventilation and grounding
  • Compliance with operational and maintenance guidelines

Future Trends and Opportunities


Advancements that may impact site preparation for ICP-OES include:
  • Integration of digital twin and IoT-based monitoring for real-time environmental validation
  • Automated site readiness audits using augmented reality (AR)
  • Development of greener solvent and gas consumption strategies
  • Modular instrument design to reduce bench footprint and utility demands

Conclusion


A comprehensive site preparation process is essential to fully leverage the capabilities of Agilent 5100 and 5110 ICP-OES instruments. Adherence to the checklist ensures reliable operation, user safety and high-quality analytical results.

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