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GAS-CHROMATOGRAPH

PN:0202040802

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Description:

The gas chromatograph has the following characteristics:

* Microcomputer temperature control system. Temperature control (optimum: ±0.05 degree), anti-interference.

* Control and operating parameters (including for detectors) set up by the keyboard. Self-diagnosis system, power-fail protection, file storage and call, limited temperature setting. Accurate display of setting and actual value of temperature control of each path, bridge current of TCD, sensitivity of FID, retention and analysis time.

* Four paths of independent control sections: column oven, sample injector, detector and thermal conductive pond.

* 5-ramp programmed temperature rising control. Auto-drop of temperature of column oven (auto-opening the door behind the oven) to a fast cooling.

* Dual FID provided with options of A-TCD, ECD, FPD and NPD, gas sampling valve, transformation oven, absorber and pyrolysis absorber available for selection. Two detectors can be installed at the same time with high sensitivity. Short time to be stabilized and easy to clean and install nozzle.

* Packed column and capillary column (0.53 large diameter or small diameter) can be installed easily including a complete set of split sampling connector and tailing connector to be installed free of charge. Optional 0.53mm large diameter capillary direct sampler is available for choice.

* Analysis can be conducted in packed or capillary column with multiple sampling methods.

Packed column: on-column sampling, instantaneous vaporized sampling and gas sampling.

Capillary column: split sampling and 0.53mm large diameter capillary direct sampling.

* Construction of dual gas path, dual sample injector and dual packed column system can effectively avoid baseline undulation and drift in real time and facilitate programmed temperature rising analysis. Accurate and scaled type gas path control valves will provide a high repeatability and stability.

* Auto ON/OFF temperature control system, permanent data storage, file storage and call, over-temperature protection.

* Large volume column (300x280x270) can hold capillary column and dual packed column. Built-in heating filament structure is in favor of quartz capillary analysis.

Details:

Temperature control

Control range

7oC- 400oC above room

temperature. (increment of

1oC)

Control objects

column oven, detector, thermal

conductive pond and sample

injector

Programmed temperature rising

5 ramps

Rate of programmed temperature rising

0.1oC -40oC

(increment of 0.1oC)

Thermostatic time

0-655 min

(increment of 1 min)

FID

Sensitivity (minimum testability)

M< ="5'10-11g/s (sample: C16)

Optimum testing result

M< ="1'10-11g/s

Noise

< ="5'10-14A

Drift

< ="6'10-13A/h

Linear range

>=106

TCD

Sensitivity

>=2000mV.ml/mg

Noise

< ="20mV

Drift

< ="30mV

Linear range

>=104

·ECD

Temperature range

350oC Max

Measuring mode

63Ni

Sensitivity

< ="10-13g (Benzex)

Linear range

>=103

·FPD

Sensitivity (minimum testability)

< ="2'10-11g (P)/s (sample Pin the parathion methyl)

Optimum testing result:

< ="3.8'10-12g (P)/s.

Sensitivity (minimum testability)

< ="1'10-10g (S)/s (sample:Sin the parathion methyl)

Optimum testing result:

< ="2.7'10-11g (S)/s

Linear range

>=103(samplePparathion)

>=102(sampleSparathion)

Stability

< ="30mV/h

Noise

< ="10mV

Starting time

not greater than 2 hours

·NPD:

Sensitivity (minimum testability)

Dt(N)£5pg (N)/s (sample:

azobenzene)

Optimum testing result:

0.5ppm

Sensitivity (minimum testability)

Dt(P) £0.5pg (P)/s (sample:

malethion)

Optimum testing result:

0.2ppm

Drift

< ="8'10-13A/h

Noise

< ="5'10-13A

Linear range

>=103

Max application temperature

360oC




No.1, Bei Yi Xiang, Damucang Hutong, Xidan, Beijing P.R.C.100032

Copyright © 2009 China Educational Instrument & Equipment Corp. All rights reserved.

Damucang Hutong, Xidan, Beijing P.R.C.100032

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