Product Manual for IonPac CS16
Page 42 of 65
5.17.
Linear Working Range at 40 °C
The higher cation exchange capacity of the CS16 5-mm stationary phase reduces overload with sample concentration. The
chromatogram shown in this slide was obtained under standard conditions for this stationary phase (30 mM Methanesulfonic
acid, 1 mL/min, 40 °C). The highest level standard injected with a 25 µL sample loop contained 50 ppm lithium, 200 ppm
sodium, 250 ppm ammonium, 500 ppm potassium, 250 ppm magnesium and 500 ppm calcium. At these concentration levels,
tailing of the late eluting peaks, potassium, magnesium and calcium is observed, indicating column overloading. Plots of
peak areas versus concentration give very good correlation coefficients (> 0.9999) as shown here for calcium and potassium
even when including the highest calibration point. The large resolution among all peaks permits quantitation even when
efficiency/symmetry are poor due to overloading. Quantification using peak areas is possible from low ppb to 500 ppm
concentration.
Column:
IonPac CG16 5-mm Guard CS16 5-mm Analytical Column
Sample Volume:
25 µL Loop
Eluent:
30 mM Methanesulfonic acid (MSA)
Eluent Flow Rate:
1.0 mL/min
Temperature: 40
°C
SRS Suppressor:
Cation Self-Regenerating Suppressor 300 (4-mm) in
AutoSuppression Recycle Mode
or MMS Suppressor:
Cation MicroMembrane Suppressor, CMMS 300 (4-mm)
MMS Regenerant:
TBAOH
MMS Mode:
Displacement Chemical Regeneration (DCR)
Expected Background Conductivity:
< 2 µS
Storage Solution:
Eluent
6
0
µS
250
10
0
15
Minutes
5
20
25
30
5
4
3
1
2
Analyte mg/L
1. Lithium
50
2. Sodium
200
3. Ammonium
250
4. Potassium
500
5. Magnesium
250
6. Calcium
500
where 1 mg/L = 1 ppm
Figure 26
Potassium and Calcium Peak Area Plots and Overload Chromatogram
Document No. 031747-05
© 2010 Dionex Corporation
December 2010
Содержание IonPac CG16
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