Viral Eltra Copper Flakes – Part Number 91000-1005 - Don't Miss Out [C2T43Qiu]
For ONH, ON, OH, CHS, CS, CW, Surface Carbon, TIC, and TGA SystemsAchieve precise and consistent elemental analysis results with Copper Flakes – Part Number 91000-1005, a high-purity reagent used in a wide range of analytical instruments. These coppe
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Viral Eltra Copper Flakes – Part Number 91000-1005 - Don't Miss Out [C2T43Qiu]
For ONH, ON, OH, CHS, CS, CW, Surface Carbon, TIC, and TGA Systems
Achieve precise and consistent elemental analysis results with Copper Flakes – Part Number 91000-1005, a high-purity reagent used in a wide range of analytical instruments. These copper flakes play a vital role in the removal of residual oxygen during high-temperature combustion processes, helping to ensure accurate measurement of elements such as carbon, sulfur, oxygen, nitrogen, and hydrogen.
Copper flakes are commonly used in ONH analyzers and combustion-based analysis systems. During the analysis, they act as an oxygen getter by chemically binding with excess oxygen in the carrier gas or sample gas stream. This improves baseline stability and ensures the integrity of the analytical results.
Copper flakes are typically loaded into absorption or post-combustion furnaces, where they contribute to a clean reaction environment and reduce contamination-related errors.
- High-purity copper for reliable analytical performance
- Effectively removes oxygen from gas streams
- Supports consistent baseline and reproducible results
- Thermally stable and chemically reactive under analytical conditions
- Suitable for use in both manual and automated systems
Compatible with a broad range of elemental and thermal analyzers, including:
- ONH / ON / OH Analyzers
- Elementrac Series: H-500, CS-i, CS-800, CS-d, CS-2000
- CHS Series: CHS-r, CHS-580, CHS-580A
- CW Series: CW-800, CW-800M
- Surface C-800
- TIC Modul
- TGA Thermostep
Ideal for laboratories performing combustion analysis of metals, ceramics, alloys, and other inorganic materials. Suitable for academic, industrial, and research environments where high-precision elemental detection is required.
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