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Gas Chromatography LMCG-103

Gas Chromatography LMCG-103 supports temperature range of 4°C to 450°C for reliable separations. It features advanced column technology and high-sensitivity detector. Equipped with user-friendly interface for seamless operation. Integrated with programmable temperature control system. Our Chromatography is ideal for analyzing complex mixtures in research and industrial laboratories.

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Specifications

Temperature Control Range 4℃ to 450℃
Temperature Increment 1℃
Temperature Accuracy ±0.1℃
Stabilization Time < 30min
Parsing Time < 15min
Program Heating Order 27th order
Pressure Range 0 to 0.25Mpa
Flow Range 0 to 1000 mL/min
Lift Rate 0.1 to 80℃ / min
TCD Detector Sensitivity S≥10,000 mV ml/mg (benzene/toluene)
TCD Baseline Drift 0.1 mV / 30min
TCD Baseline Noise 0.05 mV
FID Detector Detection Limit 310-12 A g/s (n-hexadecane)
FID Baseline Drift 110-13 A / 30min
FID Baseline Noise 310-14 A
Chromatographic Workstation Yes
Ambient Temperature 0℃ to 35℃
Display English version LCD touch screen
Power Consumption 2500W
Power Supply 220V, 50Hz

Pricing

Product Price Unit Action
Gas Chromatography LMCG-103 $ 30612.5 Each of 1

Features

Color LCD display

Standard English version

Multiprocessor parallel mode

Touch screen operation

Fault diagnosis function

Power-off data protection

Low noise resolution

Compatible with Windows

Standard Accessories

Accessory

Quantity

Unit

Detector FID

2

Pieces

Detector TCD 

2

Pieces

Conversion Device 

1

Set

Chromatography Workstation

1

Set

Automatic Oscillator 

1

Set

Applications

Gas Chromatography LMCG-103 is employed to measure dissolved gas content in insulating oil. It can analyze seven components including H₂, CO, CO₂, CH₄, C₂H₄, C₂H₆, and C₂H₂, making it ideal for monitoring and diagnosing transformer oil health and identifying potential faults in electrical systems.

Selection Guide

Gas Chromatography LMCG-103 is designed for high-resolution separation and analysis of volatile and semi-volatile compounds. It is commonly used in research studies and industrial applications such as petrochemical analysis, environmental monitoring, food safety testing, and pharmaceutical quality control. It supports various detectors like FID, TCD, and ECD, making it adaptable for complex sample types and multi-component analysis. It has a temperature control range up to 450°C, and a precision sample injection system provides accurate and reproducible results. The system complies with international standards such as ISO and CE certifications, which provide reliability, performance, and user safety. Customers involved in analytical research, quality assurance, or regulatory testing can select this system based on their need for sensitivity, stability, and method flexibility.

Similar Products

Gas Chromatography LMCG-102

  • Sample Introduction System: Sample Injector and Evaporator Chamber
  • Column Oven: Ambient temperature +7℃ to 400℃ (in 1℃ increment), ± 0.02℃, 400℃ to 50℃ in 8 – 10 min at 25℃ ambient, 0.1℃ - 40℃ / min (in 1℃ increment), 7 Ramps in total (10 ramps available with control workstation), 284 × 280 × 241 mm (inside); 340 × 345 × 281 mm (outside)
  • Flame Ionization Detector (FID): ≤ 3 × 10-12 g/s (C16), ≤ 6 × 10-13 A/ 30 min, ≤ 5 × 10-14A, ≥ 10⌃6
  • SPL Injector: Capillary Column injector
  • Software: M6 software

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Gas Chromatography LMCG-101

  • Temperature Range: 7ºC to 420ºC
  • Temperature Accuracy: ±0.02ºC
  • Cooling Time: 350°C to 100°C ≤ 3 min 400°C to 50°C in 8-10 min at 25°C ambient
  • Programmed Temperature Range: 0.1℃ to 80℃/min
  • Program Ramps: 20 Ramps

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Gas Chromatograph LMCG-A100

  • Column Oven Volume: Greater than or equal to 15 L
  • Operating Temperature Range: +4 ℃ to 450 ℃ (ambient); LN₂: -80 ℃ to 450 ℃; CO₂: -40 ℃ to 450 ℃
  • Temperature Setting Accuracy: Greater than or equal to 0.01 ℃
  • Temperature Programs: 32-step gradient; 33 fixed platforms; gradient cooling
  • Maximum Heating Rate: Greater than or equal to 120 ℃/min

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Frequently Asked Questions

1 What is a Gas Chromatography?

A Gas Chromatography is an apparatus designed to separate, identify, and quantify compounds that can be vaporized without decomposition.

2 How does Gas Chromatography work?

It works by vaporizing a sample and separating its components as they travel through a column with a carrier gas.

3 How is Gas Chromatography used in environmental testing?

It is used to detect and quantify pollutants such as volatile organic compounds, pesticides, and industrial chemicals in air, water, and soil samples.

4 What role does Gas Chromatography play in forensic science?

It identifies substances like drugs, accelerants in arson cases, or toxins in biological samples for legal investigations.

5 How is Gas Chromatography used in pharmaceutical industry?

It is used for purity testing, identifying residual solvents, and analyzing the composition of drugs during manufacturing and quality control.

6 Can Gas Chromatography be used in food safety testing?

It is used to detect food additives, flavor compounds, contaminants, and pesticide residues to ensure compliance with food safety standards.

7 Is Gas Chromatography useful in oil and lubricant analysis?

It is used to characterize additives, base oil composition, and degradation by-products in engine oils and lubricants.

8 Can Gas Chromatography be used in renewable energy research?

It is used to analyze biofuels, such as biodiesel and bioethanol, by assessing composition, purity, and potential contaminants.

9 Can Gas Chromatography be used in waste management and recycling?

It is used to monitor emissions from waste treatment and analyze the composition of gases produced during recycling process.

10 Can Gas Chromatography be used in toxicology and poison detection?

It is used to identify and quantify toxic substances like solvents, drugs or volatile poisons in biological and environmental samples.