OI Analytical - S-PRO 3200
OI Analytical’s S-PRO 3200 is a complete turn-key system for sulfur analysis in gas-phase samples. Designed to ...
OI Analytical’s S-PRO 3200 is a complete turn-key system for sulfur analysis in gas-phase samples. Designed to work with our new, patented 5383 Pulsed Flame Photometric Detector (PFPD), the S-PRO 3200 is a powerful analytical tool capable of obtaining simultaneous sulfur and hydrocarbon chromatograms from a single detector.
The S-PRO 3200 is a custom-configured gas chromatograph for selective, high-sensitivity measurement of sulfur compounds in gas-phase samples and Liquified Petroleum Gas (LPG) streams (such as propylene and ethylene).
The key technology within the S-PRO is the 5383 PFPD, which has a linear equimolar response to sulfur allowing selective measurement of individual sulfur species from low ppb to ppm levels, and total sulfur as the sum of individual peaks.
We have integrated a number of special design features into the System’s GC platform, the Agilent 7890 GC System, to provide unique analytical and performance capabilities.
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Features of S-PRO 3200
- Provides automated sample injection, calibration, and QA/QC
- Integrated permeation oven provides single or multiple calibration or QC standards
- Automated injection of calibration or check samples provided by the built-in valving and permeation system eliminates using unstable, expensive sulfur gas standards
- OI Volatiles Interface, optimized for valve injection, provides low dead volume split or splitless injection for a wide dynamic range
- Sulfinert™-treated sample pathway minimizes absorptive surfaces for optimal performance, particularly for low sulfur concentrations
- Proven PFPD detector provides stability, sensitivity, selectivity, equimolar sulfur response, calibrations in linear or quadratic modes, and multi-element detection capability
- Single-digit ppb sensitivity for sulfur analysis
- Full EPC control of all injector, permeation oven, and detector gases
- Using additional or alternative detectors (PID, ELCD, XSD, or tandem configurations) allows the analysis of other compounds of interest
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