BRAND / VENDOR: Agilent

Agilent, 115-34H2, J&W GS-Q GC Column, 10 m, 0.53 mm, 7 inch cage

CATALOG NUMBER: 115-34H2

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Product Description

J&W GS-Q GC Column, 10 m, 0.53 mm, 7 inch cage. This is the most common GC column format compatible with Agilent 5890, 6890, 7820, 7890, 8860, and 8890 series GC systems and all non-Agilent GC systems with a similarly sized oven.

Specifications:
Capillary Tubing: Fused Silica
Format: 7 inch
GC Column Type: PLOT
Inner Diameter (ID): 0.53 mm
Length: 10 m
Phase: GS-Q
Temperature Range: -60 °C-250 °C
UNSPSC Code: 41115710
With Smart Key: No

**********The following product description is generated by AI and is for reference only. If you have any questions, please contact customer service.**********
The Agilent J&W GS-Q GC column offers exceptional performance for the analysis of light hydrocarbons, including permanent gases and volatile organic compounds. With a length of 10 meters and an internal diameter of 0.53 mm, this capillary column ensures high-resolution separation, making it an excellent choice for environmental, petrochemical, and industrial quality control laboratories. Its application-specific stationary phase delivers outstanding selectivity and peak shape for challenging analytes such as C1–C2 hydrocarbons, methane, carbon monoxide, carbon dioxide, and ethylene. Housed on a 7 inch cage, this column easily fits standard gas chromatographs and is optimized for both packed column replacement and method development.

Suitable for use with both thermal conductivity and flame ionization detectors, it integrates seamlessly with Agilent GC systems, including 7890 and 8890 series, as well as other compatible models from major manufacturers. Researchers benefit from reliable performance in routine testing of gas mixtures and trace-level impurities, ensuring accurate and reproducible results. Complementary products include gas sampling valves, gas-specific detectors, and headspace samplers, enhancing workflow efficiency. This column is an essential tool for scientists demanding dependable performance in the separation and quantification of light gases across a range of applications.

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