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The GC-2010 Plus enables reliable, high-precision trace analysis with high repeatability, utilizing detectors such as FID and FPD that feature best-in-class sensitivity.
In addition, rapid oven cooling and backflush technology shorten analysis time greatly for significant improvements in productivity.
In addition, rapid oven cooling and backflush technology shorten analysis time greatly for significant improvements in productivity.
Features
Trace Amount Analysis
2010 Plus Series of High-Sensitivity Detectors
Demands for higher sensitivity and trace amount analysis are rising as researchers continue to seek the means for developing value-added products and securing high quality assurance. Completely redesigned, Shimadzu FID and FPD detectors achieve the world’s best sensitivity, allowing more trace amount analysis.
Analysis Example: FID-2010 Plus
Best-in-class FID sensitivity has been achieved through thorough cleaning of the detector gas line and by incorporating the latest noise-reduction technology. Following is an analysis example of n-C12, 14, and 16 in n-heptan solution.
Analysis example of n-C12, 14, 16 in n-heptane solution
Minimum detection quantity: 1.5 pgC/s
Analytical conditions Column: ZB-1 Column Temp.: 170 °C Inj. Temp: 250 °C Det. Temp.: 280 °C Detector: FID Injection Method: Split Split ratio: 1:300 Injection Volume: 0.2 µL
Analysis Example: FPD-2010 Plus
With improvements in the inner structure and optics, the new FPD-2010 Plus, which is used for analysis of organic phosphorus compounds and sulfur compounds has been greatly improved. This detector supports analyses that require higher sensitivity, such as trace amount analysis of pesticides and analysis of odor substances. Seen here are two analysis examples: one of phosphorus pesticides and the other of thiophene in benzene.
Analysis example of phosphorus pesticides: 5 ppb
Minimum detection quantity of phosphorus compounds: 55 fgP/s
FPD-2010 Plus
FPD-2010 (Previous model)
1. Ethoprophos | 2. Phorate | 3. Thiometon | 4. Terbufos |
5. Etrimfos | 6. Dichlofenthion | 7. Dimethoate | 8. Tolclophos-methyl |
9. Chlorpyrifos | 10. Formothion | 11. Fenthion (MPP) | 12. Fenitrothion (MEP) |
13. Isofenphos | 14. Phenthoate (PAP) | 15. Prothiofos | 16. Methidathion (DMTP) |
17. Butamifos | 18. Sulprofos | 19. Fensulfothion | 20. EPN |
21. Phosmet | 22. Pyraclofos |
Analysis example: 20 ppb thiophene in benzene
Minimum detection quantity of sulfur compounds: 3 pgS/s
Minimum detection quantity of sulfur compounds: 3 pgS/s
FPD-2010 Plus The dual-focus system has a lens on the interference filter. This lens efficiently condenses the light to a receiver of the photomultiplier.
Functions to improve analytical efficiency and productivity
Rapid oven cooling
With the addition of a new cooling fan and superior air flow optimization, the oven cooling speed has been dramatically improved (450 °C -> 50 °C cooling time: 3.4 minutes). Rotation noise is minimal, and when using backflush, analysis time is even faster. Please see the Backflush page for more information.
Self-diagnostic function prevents failure
Useful for confirming proper operation, periodic diagnostics prevent unexpected downtime due to failure of the temperature sensor, control conditions, pressure of supplied gas, etc.
Gas-saver function saves carrier gas consumption
Lowering the split ratio during analysis using split/split-less sample injection decreases the carrier gas consumption by reducing the amount of carrier gas discharged outside from the split circuit.
Example of gas-saver function operation
With this function, the split flow volume decreases from 50 mL/minute to 5 mL/minute one minute after sample introduction. When using an auto-injector with this function, the split flow rate remains constant between the end of analysis and when analysis starts the following day.
Hydrogen joints employ reverse thread to prevent incorrect piping (Safety design)
The reverse thread prevents hydrogen gas from entering detectors via incorrect piping.
The tag indicates the direction of rotation.
The tag indicates the direction of rotation.
The joint for the hydrogen gas has a cut on the nut to distinguish it from a normal joint.
Dual Injection System
A dual-injector system can be configured using a combination of two AOC-20i autoinjectors and one AOC-20s autosampler. Two-line simultaneous injection doubles the number of samples, improving productivity.
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