Tips On Maintenance of Graphite Furnace Atomization Atomic Absorption Spectroscopy Systems
Graphite
Furnace Atomization assembly is optionally available along with the flame
version for analysis of trace metals on Atomic Absorption Spectroscopy
systems. GraphiteFurnace Atomic Absorption Spectroscopy highlights the features and benefits of this option. In order to get highest levels of reliability of results regular maintenance is an absolute must. An earlier article – Tipsto ensure high uptime of your Atomic Absorption Spectrometer proposes some guidelines on maintenance of flame AAS systems.
systems. GraphiteFurnace Atomic Absorption Spectroscopy highlights the features and benefits of this option. In order to get highest levels of reliability of results regular maintenance is an absolute must. An earlier article – Tipsto ensure high uptime of your Atomic Absorption Spectrometer proposes some guidelines on maintenance of flame AAS systems.
Low-level
trace metal determinations require use of graphite furnace atomization
assembly. The present article makes some suggestions for maintenance of
graphite furnace systems. The overall maintenance of graphite systems can be
carried out routinely by you but for some tasks expert handling by service
engineer of instrument supplier becomes necessary.
Routine
Maintenance
Routine
maintenance involves mostly visual observation which can be made easily before
making use of the assembly. It can take at the most about 10 – 15 minutes but
it is worth the time spent as you can rest assured on the reliability of
reported results.
Graphite
Tube
The graphite
tube is the most critical component in the furnace assembly. Visually inspect
daily for cracks, deformations, pitting or deposits around the injection hole.
In case such damage is observed tube replacement is the best option.
Gas
Supply
Ensure the
supply of argon gas is adequate before utilizing the facility. The output
supply pressure should be maintained between 50 – 60 psig.
Light Source
The
hollow cathode lamp or electrodeless discharge lamp should have
sufficient remaining life before it is put to use. After the lamp is switched
on it should be given sufficient time to stabilize. Hollow cathode lamps can
take half an hour to give a stable output and electrodeless discharge lamps can
take longer stabilization time. Lamp energy status should be reviewed for
stable output before the sample is introduced into the graphite tube.
Contact Rings
Like the
graphite tubes the contact rings should also be inspected for damage due to
pitting or cracks. It is time to replace the rings if any such damage is
noticed.
Autosampler Tubing and Probe
The tubing
should be inspected for any bends or kinks. The tube should be clean and if any
blockages are observed or kinks develop the best solution is to replace the
tubing. Similarly the probe should be cleaned or replaced if it gets blocked.
Expert
Maintenance
Expert
attention is required at least once or twice a year depending on usage and
nature of samples analyzed. Such recommendations include:
- Cleaning of the mechanical
assembly
- Cleaning of optical windows of
any solid deposits
- Checking of sensitivity by means
of calibration against traceable standards
- The cooling system should be
inspected for blockages, if any, and the filters if found choked should be
cleaned. If cleaning is not possible the filter should be replaced
Graphite
furnace assembly is required for low level determinations in the ppb range of
concentrations. At such levels reproducibility of results can be influenced by
several factors depending on contamination from reagents, sampling and errors
in analytical methods. However, preventive maintenance, as a bottom line, helps
you ensure reliability of results over the useful lifespan of the facility.
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