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Shimadzu GC-2010 Pro Gas Chromatography
Shimadzu GC-2010 Pro Gas Chromatography
Product details

GC-2010 Pro inherits the basic performance of high-performance capillary column gas chromatography GC-2010 Plus. Its good reproducibility ensures high reliability. Its high-performance detector enables high-precision and high-sensitivity analysis. Meanwhile, the high-speed column temperature box cooling technology can significantly shorten the analysis time, making it a gas chromatograph product that can meet various analysis needs and improve production efficiency.

Product Features

Design to improve analysis efficiency

1. Rapid heating/cooling of column temperature box
The GC-2010 Pro is equipped with a "dual jet cooling system", which shortens the time from 450 ℃ to 50 ℃ to 3.4 minutes, achieving more effective rapid cooling.

2. Support high-speed analysis
The use of narrow bore capillary columns for rapid analysis can effectively save analysis time and improve sample processing capabilities. GC-2010 Pro has excellent flow and pressure control systems, and conventional configurations can meet the requirements of rapid analysis, effectively improving analysis efficiency.

3. Fast determination of separation conditions using constant linear velocity control mode of carrier gas
It is recommended to use a carrier gas constant linear velocity control method that is correlated with separation performance for carrier gas control. Compared with the previous method of controlling by setting the column inlet pressure and flow rate, the optimal separation conditions can be obtained in a short period of time.

Advanced flow control technology

Advanced flow path technology is a capillary analysis system that adopts new flow path control technology. By improving the efficiency of analysis work and accurately separating target components from complex raw samples, high efficiency and separation can be achieved.

1. Backblowing technology
2. Central cutting technology
3. Detector diversion technology
4. Detector switching technology

High sensitivity detector with excellent performance

Up to 3 injection units and 4 detectors can be loaded simultaneously, allowing for the selection of the most suitable detector and injection port for the sample, and unit switching is very convenient. According to the analysis purpose, there are 3 types of injection units and 5 types of detectors to choose from.

detector Injection port
Hydrogen flame ionization detector FID Split/No Split Injection Port Unit SPL
Thermal conductivity detector TCD Direct injection unit WBI
Flame photometric detector FPD Cold column head/programmed temperature injection port OCI/PTV
Electron Capture Detector (ECD)
Flame ionization detector FTD

Flexible system scalability to meet the requirements of various fields

The GC-2010 Pro has flexible and diverse configurations, and various optional components such as injection units, detectors, and automatic samplers can be easily added to existing devices after purchase. It supports options such as headspace, blowdown capture, thermal analysis, thermal cracking, PFPD, etc.

Workstation that fully leverages GC performance

As an important member of the LabSolutions family, the LabSolutions LE workstation has undergone targeted functional optimization on the basis of the original workstation. Without changing the original operability, GC control, analysis, parsing and other functions have been fully strengthened and configured. It can simultaneously control up to two hosts including GC-2010 Pro, GC-2014C, and GC Smart (GC-2018), and can also control injection devices such as AOC-20i/s, HS-10/20, and AOC-5000/6000.

Specifications

  • Column temperature box

Temperature range: Room temperature+4 ℃~450 ℃ (when using liquid carbon dioxide:- 50℃~450℃)
Size: Width 280mm x Height 280mm x Length 175mm
Volume: 13.7L
Temperature accuracy: ± 1% of the set value (K) (can be calibrated up to 0.01 ℃)
Temperature deviation: within 2 ℃ (on a circumference 30mm away from the inner side and 200mm in diameter)
Temperature coefficient: 0.01 ℃/℃
Program order: 20 orders (supports cooling program)
Adjustable heating rate:- 250℃~250℃/min
Total time for all steps:- 9999.99min
Cooling rate: within 3.4 minutes (450 ℃~50 ℃) (room temperature 22 ℃)

  • Sample injection component

Up to three units can be carried
Injection unit: Split injection/Non split injection
Direct (all) injection
Column head/PTV injection

  • Carrier gas flow control component

Advanced Flow Controller (AFC)
{Split Mode/Non Split Mode}
Pressure setting range: 0-970kPa
Program order: 7th order (supports voltage reduction program)
Program speed: 0-9999.9
Full flow setting range: 0-1200ml/min
The bar average velocity during the heating process can be maintained

{Direct (All) Injection Mode}

  • Pressure mode
    Pressure setting range: 0-970kPa
    Program order: 7 orders
    Program speed setting range:- 400~400kPa/min

  • Traffic mode
    Flow setting range: 0-1200ml/min
    Program order: 7 orders
    Program speed setting range:- 400~400ml/min

  • The bar average velocity during the heating process can be maintained

  • detector

Up to 4 units can be carried (up to 3 detector units can be used simultaneously)
The detector gas is electronically controlled by APC

  • Hydrogen flame ionization detector (FID)
    Temperature range:~ 450℃
    Minimum detection limit: 1.5 pgC/s (dodecane)
    Dynamic range: 10 ^ 7

  • Thermal conductivity detector (TCD)
    Temperature range:~ 400℃
    Sensitivity: 20000mV · mL/mg (decane)
    Dynamic range: 10 ^ 5

  • Electron Capture Detector (ECD)
    Line source capacity: 370MBq
    Temperature range:~ 400℃
    Minimum detection limit: 4fg/s (γ - BHC)
    Dynamic range: 10 ^ 5

  • Flame photometric detector (FPD)
    Temperature range:~ 350℃
    Minimum detection limit: P: 0.055pg/s (55fgP/s) (tributyl phosphate)
    S: 2.5 pg/s (dodecanethiol)
    Dynamic range: P: 10 ^ 4 S: 10^3

  • Flame Thermal Ion Detector (FTD)
    Temperature range:~ 450℃
    Minimum detection limit: N: 0.1 pg/s (azobenzene)
    P: 0.01 pg/s (malathion)
    Dynamic range: N, P 10 ^ 3

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