Agilent 5800 and 5900 ICP-OES - Site Preparation Checklist
Manuals | 2021 | Agilent TechnologiesInstrumentation
Proper preparation of a laboratory site is essential to ensure reliable performance and longevity of an ICP-OES system. Meeting spatial, environmental, utility and supply requirements reduces downtime and supports accurate elemental analysis over years of operation.
This document outlines the critical specifications and resources needed for installation of Agilent 5800 and 5900 ICP-OES systems. It serves as a guide to verify bench space, power, gas, cooling and exhaust provisions, as well as necessary supplies and user involvement during installation.
The installation planning involves coordination of physical layout, utility connections and equipment readiness. The main components include
Key site preparation elements cover
Adherence to these guidelines ensures a swift installation and commissioning process, minimizes the risk of instrument malfunctions, enhances safety and supports high quality data in trace elemental analysis workflows across environmental, industrial and research laboratories.
Ongoing developments aim to streamline site preparation through modular instrument designs, remote diagnostics, automated utility checks and greener laboratory infrastructures. Integration with digital monitoring systems will further reduce setup time and improve preventive maintenance.
A thorough site preparation based on the specified dimensions, utilities and consumables is vital for reliable operation of Agilent ICP-OES systems. Early coordination between users, facility managers and service providers will yield timely installations and long-term analytical performance.
ICP-OES
IndustriesManufacturerAgilent Technologies
Summary
Importance of the Topic
Proper preparation of a laboratory site is essential to ensure reliable performance and longevity of an ICP-OES system. Meeting spatial, environmental, utility and supply requirements reduces downtime and supports accurate elemental analysis over years of operation.
Objectives and Document Overview
This document outlines the critical specifications and resources needed for installation of Agilent 5800 and 5900 ICP-OES systems. It serves as a guide to verify bench space, power, gas, cooling and exhaust provisions, as well as necessary supplies and user involvement during installation.
Methodology and Instrumentation
The installation planning involves coordination of physical layout, utility connections and equipment readiness. The main components include
- Agilent 5800 and 5900 ICP-OES analyzers
- Agilent recirculating chiller
- SPS 4 autosampler and dedicated trolley
- Personal computer with monitor and a standard laboratory printer
Main Requirements and Discussion
Key site preparation elements cover
- Laboratory bench space and handling: the ICP-OES unit weighs approximately 90 kg with dimensions near 30×75×25 cm; shipping containers and auxiliary modules require forklift access and clear transport paths.
- Environmental conditions: operating temperature range 15–30 °C with humidity 20–80% non-condensing; elevation up to 3000 meters.
- Heat load and ventilation: the plasma source dissipates up to 870 W and the chiller up to 3200 W; exhaust ducting of 150 mm diameter must provide continuous flow above 2.5 m3/min.
- Electrical supply: single phase 200–240 V at 50/60 Hz, roughly 2900 VA for the spectrometer and similar for the chiller; dedicated grounded outlets without extension cords.
- Cooling water: 2 L/min flow, inlet temperature 15–28 °C, pressure 230–400 kPa, conductivity 50–150 μS; preferred use of Agilent chiller fluid.
- Gas supplies: high purity argon (≥99.99%) at 500–600 kPa; optional high purity nitrogen for polychromator purge and specialty mixtures as needed.
- Operating consumables: type 1 water, acidified blank, wavelength calibration standard and waste collection containers.
Benefits and Practical Applications
Adherence to these guidelines ensures a swift installation and commissioning process, minimizes the risk of instrument malfunctions, enhances safety and supports high quality data in trace elemental analysis workflows across environmental, industrial and research laboratories.
Future Trends and Applications
Ongoing developments aim to streamline site preparation through modular instrument designs, remote diagnostics, automated utility checks and greener laboratory infrastructures. Integration with digital monitoring systems will further reduce setup time and improve preventive maintenance.
Conclusion
A thorough site preparation based on the specified dimensions, utilities and consumables is vital for reliable operation of Agilent ICP-OES systems. Early coordination between users, facility managers and service providers will yield timely installations and long-term analytical performance.
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