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5 Notes – Maintenance – Faults
792 Basic IC
150
5.2.7
Regeneration of the suppressor module
Regenerating a suppressor operating
at reduced capacity
If the suppressor units are exposed to certain heavy metals (e.g. iron) or
organic contaminants for long periods, these can no longer be com-
pletely removed by the regeneration solution normally used (20 mmol/L
H
2
SO
4
). This diminishes the capacity of the suppressor units, which, in
milder cases, results in a reduced sensitivity to phosphates and, in se-
vere cases, in a strong increase in the baseline. If such capacity prob-
lems occur at one or several positions, the suppressor units must be
treated as follows:
1 Disconnect suppressor from IC system
x
Disconnect suppressor from separating column and detector.
2 Regenerate suppressor
x
Rinse each suppressor unit for about 15 min with one of the
following solutions:
Contamination with heavy metals
1 mol/L H
2
SO
4
Contamination with organic cationic complexing agents
0.1 mol/L H
2
SO
4
/ 0.1 mol/L oxalic acid / acetone 5%
Severe contamination with organic substances
0.2 mol/L H
2
SO
4
/ acetone
t
20%
The 6.1826.060 pump tubing is made of PP and must not
be used for rinsing with solutions that contain organic
solvents. In such cases, rinse with different pump tubing
or a different pump.
3 Connect suppressor to IC system
x
Reconnect suppressor to the IC system. If capacity problems
persist, replace the suppressor rotor (see
section 5.2.9
).
Regenerating the suppressor in case
of high counter pressure
If excessive counter pressure is observed in one or several suppressor
units, treat the units as follows:
1 Disconnect suppressor from IC system
x
Disconnect suppressor from separating column and detector.
2 Regenerate suppressor
x
Connect the inlet capillary
78
78
78
78
marked "H
2
SO
4
" to the inlet
capillary
18
18
18
18
using coupling
26
26
26
26
(see
Fig. 9
and
Fig. 14
). This
connects the suppressor module directly to the high-pressure
pump.
Содержание 2.792.0020 Basic IC
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