InnovOx Laboratory TOC Analyzer
Measures TOC Samples - All Day, Every Day
Versatile Measurement Modes
With the InnovOx, analysts can routinely test for Total Carbon (TC), Total Inorganic Carbon (TIC), Total Organic Carbon (TOC), and Non-Purgeable Organic Carbon (NPOC). The InnovOx software provides versatile analysis options such as multiple runs on the same sample, auto calibration range selection, and integration with the Sievers 900 Autosampler.
Specifications for the Sievers InnovOx Laboratory TOC Analyzer:
| Operating Specifications* | |
| Analysis Modes | TC, TIC, NPOC, TOC |
| Dynamic TOC Range | 0.5 to 50,000 ppm |
| TOC LOD | 0.05 ppm |
| TOC Accuracy | ± 3% of reading at 50 ppm NPOC |
| TOC Precision | RSD < 5% of reading at 50 ppm NPOC |
| TOC Linearity | R2 > 0.995, measured as NPOC (see Operation & Maintenance Manual for calibration recommendation) |
| Analysis Time | 2.2 to 7.3 min, depending on mode |
| TOC Calibration Stability | Up to 6 months |
| Particle Diameters in Sample | < 800 µm diameter |
| Ambient Operating Temperature Range | 10-40 °C (50–104°F) |
| Maximum Relative Humidity | Up to 95%, non-condensing |
| Sample Temperature Range | 10-60 °C (50–140 °F) |
|
Sample Inlet Pressue |
Ambient |
| Drain | Gravity drain |
| Analyzer Specifications | |
| Outputs | Ethernet and 3 USB ports |
| Display | Color, touch-sensitive LCD |
| Power | 100–240 ± 10% VAC, 400 W, 50/60 Hz |
| Dimensions | H: 52.05 cm (20.49 in); W: 32.26 cm (12.7 in); D: 58.42 cm (23.0 in) |
| Weight | 22.4 kg (49.4 lb) |
| Safety Certifications | CE, ETL listed. Conforms to UL Std. 61010-1. Certified to CSA C22.2 No. 61010-1. |
To learn more about the InnovOx's innovative Supercritical Water Oxidation (SCWO) technique and its key measurement modes through an animated tour, click on button below.....
Supercritical Water Oxidation (SCWO) Technique
GE Analytical Instruments' patent-pending Supercritical Water Oxidation (SCWO) technique enables the InnovOx to achieve its superior analytical performance and unsurpassed calibration stability. Using an oxidation process in a super critical state has shown superior TOC recoveries across a broad range of organic compounds and particulate impurities. This new process removes sample and precipitated impurities between each analytical run, eliminating sample matrices contamination and providing reliable, long-term system performance.
* Stated analytical performance is achievable under controlled laboratory conditions that minimize operator and standards errors