Agilent 5800 and 5900 ICP-OES - Site Preparation Checklist
Manuály | 2021 | Agilent TechnologiesInstrumentace
Proper site preparation for highperformance analytical systems such as the Agilent 5800 and 5900 ICPOES is essential to guarantee reliable operation, accurate measurements and long instrument lifetime. Establishing the correct laboratory footprint, environmental conditions, utility connections and supply logistics prior to installation minimizes downtime, reduces project delays and ensures user safety.
This document defines the customer responsibilities and technical requirements for installing an Agilent ICPOES system. Key objectives include:
A structured checklist approach guides site readiness through sequential verification steps:
The primary components covered by this checklist include:
Summarizing the technical specifications assures compatibility with laboratory infrastructure:
Completing the site preparation checklist achieves several practical advantages:
Emerging developments in laboratory planning and instrument deployment may include:
A thorough site preparation process is the foundation of a successful ICPOES installation. By confirming all spatial, environmental, electrical, cooling, exhaust and supply requirements in advance, laboratories can ensure timely instrument deployment, consistent analytical results and extended equipment life.
ICP-OES
ZaměřeníVýrobceAgilent Technologies
Souhrn
Significance of the topic
Proper site preparation for highperformance analytical systems such as the Agilent 5800 and 5900 ICPOES is essential to guarantee reliable operation, accurate measurements and long instrument lifetime. Establishing the correct laboratory footprint, environmental conditions, utility connections and supply logistics prior to installation minimizes downtime, reduces project delays and ensures user safety.
Objectives and Overview
This document defines the customer responsibilities and technical requirements for installing an Agilent ICPOES system. Key objectives include:
- Verifying available bench or laboratory space for instrument and shipping containers
- Ensuring environmental controls (temperature, humidity, exhaust extraction)
- Confirming electrical, cooling water and gas utilities
- Gathering the necessary operating supplies and accessories
- Scheduling qualified personnel for installation and training services
Methodology
A structured checklist approach guides site readiness through sequential verification steps:
- Space planning: Evaluate bench dimensions, total height clearance and weight capacity. Arrange forklift access for heavy shipping containers.
- Environmental assessment: Confirm laboratory temperature of 15–30 °C (max 2 °C per hour drift), 20–80 % humidity, noncorrosive atmosphere, elevation below 3 000 m.
- Exhaust requirements: Provide continuous external venting with a 150 mm diameter duct at >2.5 m3/min flow for the ICPOES and 50 mm at >0.35 m3/min for the autosampler cover.
- Electrical provisioning: Install dedicated grounded outlets matching regional receptacles; support 200–240 V, 50/60 Hz singlephase at up to 2 900 VA.
- Cooling water setup: Use the recommended Agilent recirculating chiller or a distilledwater system, supplying 2.0 L/min at 15–28 °C and 230–400 kPa pressure.
- Gas connections: Secure highpurity (≥99.99 %) argon at 500–600 kPa for plasma, with optional nitrogen purge or specialty mixtures.
- Supply inventory: Prepare deionized water, calibration standards, waste containers and other consumables before arrival of service engineers.
Instrumentation used
The primary components covered by this checklist include:
- Agilent 5800 or 5900 ICPOES analyzer
- Agilent recirculating chiller
- SPS 4 autosampler and trolley
- Personal computer and monitor
- Laboratory printer
Key Results and Discussion
Summarizing the technical specifications assures compatibility with laboratory infrastructure:
- Shipping container dimensions up to 117 cm × 89 cm × 84 cm and weights up to 250 kg
- Instrument heat dissipation near 870 W and chiller heat load of 3 200 W
- Power cable variants for global receptacle standards, all 2–4.5 m long
- Detailed utility pressures, flow rates and purity levels to maintain plasma stability and prevent corrosion
Benefits and Practical Applications
Completing the site preparation checklist achieves several practical advantages:
- Streamlined installation with minimal rescheduling due to missing infrastructure
- Optimized analytical performance by maintaining environmental and utility parameters
- Improved user safety through proper exhaust and grounding practices
- Enhanced lifetime of optical and flowthrough components by using correct cooling and gas supplies
Future Trends and Applications
Emerging developments in laboratory planning and instrument deployment may include:
- Remote site validation using augmented reality or digital twins to preapprove installations
- Modular bench designs with integrated utility modules to reduce installation complexity
- Automation of supply replenishment through IoTenabled sensors on waste and consumable containers
- Green laboratory initiatives focusing on solvent recycling and energyefficient chillers
Conclusion
A thorough site preparation process is the foundation of a successful ICPOES installation. By confirming all spatial, environmental, electrical, cooling, exhaust and supply requirements in advance, laboratories can ensure timely instrument deployment, consistent analytical results and extended equipment life.
References
- No external literature references were provided in the original specification document.
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