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Benzene GC

Benzene GC grade CAS: 71-43-2 | MF: C6H6 | MW: 78.11, Buy now for reliable and Reproducible results from Bluster GC Solvent at Chemical World.

Benzene GC is a clear colorless and odorless liquid hydrocarbon with an aromatic scent. It cannot mix with water but can dissolve in organic solvents. Its chemical formula is C6H6. It is an aromatic hydrocarbon with a basic molecular structure, consisting of a ring of six carbon atoms. Benzene GC grade refers to benzene that has undergone purification to meet strict standards suitable for Gas Chromatography (GC) analysis.

Bluster product line was created to satisfy the demanding requirements of Gas Chromatography (GC) and GC-Headspace analysis. The ECD, FID, and MS detection are exhaustively checked. Bluster products are developed for the highest analytical accuracy – meticulously tested in ECD, FID, and MS detection while optimizing the signal-to-noise ratio for vital retention times. Bluster's solvents comply with the Ph. Eur., USP, and EPA regulations and are specifically intended for headspace gas chromatography applications such as residual solvent analysis in pharmaceuticals, excipients, and pesticide residue analysis. Bluster’s remarkable production process allows the company to provide exceptionally pure solvents in smaller, more convenient packaging, enabling for timely and economical shipping without compromising quality. These solvents deliver Bluster’s customers precise, reliable, and reproducible analytical results.

Application :

  • Benzene GC grade is primarily used as a reference standard or analytical solvent in Gas Chromatography applications.
  • It is used in the analysis of volatile organic compounds (VOCs).
  • It is used to prepare reference standards for GC analysis.
  • Benzene GC grade finds applications in research laboratories for method development, validation, and quality control purposes.

Key features :

  • High purity and minimal impurities
  • Gives consistent results
  • Versatile and stable product
  • Improve peak resolution and sensitivity in GC