7 Results for: "GC2 Honeywell"
Chloroform ≥99.9% stabilized, GC2™ for gas chromatography, for pesticide residue analysis, Burdick & Jackson™
Supplier: Honeywell Research Chemicals
For trace analysis at or below the part per billion level. Ideal for EPA protocols.
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Dichloromethane ≥99.9% stabilised, GC2® for gas chromatography, for pesticide residue analysis, Burdick & Jackson™
Supplier: Honeywell Research Chemicals
For trace analysis at or below the part per billion level. Ideal for EPA protocols.
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Methanol ≥99.9%, GC2® for gas chromatography, for pesticide residue analysis, Burdick & Jackson™
Supplier: Honeywell Research Chemicals
For trace analysis at or below the part per billion level. Ideal for EPA protocols.
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n-Pentane ≥99.9% (by GC), GC2™ for gas chromatography, for pesticide residue analysis, Burdick & Jackson™
Supplier: Honeywell Research Chemicals
For trace analysis at or below the part per billion level (ppb). Ideal for EPA protocols.
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Ethyl acetate ≥99.9%, GC2™ for gas chromatography, for pesticide residue analysis, Burdick & Jackson™
Supplier: Honeywell Research Chemicals
For trace analysis at or below the part per billion level. Ideal for EPA protocols.
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Hexane (mixture of isomers) ≥99.9% (n-Hexane > 95%), GC2™ for gas chromatography, for pesticide residue analysis, Burdick & Jackson™
Supplier: Honeywell Research Chemicals
For trace analysis at or below the part per billion level. Ideal for EPA protocols.
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Acetone ≥99.9% (dried basis), GC2™ for gas chromatography, for pesticide residue analysis, Burdick & Jackson™
Supplier: Honeywell Research Chemicals
B&J GC2 Solvents are developed for trace analysis at or below the part-per-billion level, using capillary gas chromatography. Each lot is performance tested to meet demanding GC specifications.
Samples of every B&J GC2 solvent are concentrated 1000-fold and tested by temperature-programmed capillary GC-FID. This analysis detects both low-boiling and high-boiling molecules, anything eluting from toluene through diesel fuel and other semi-volatile compounds of environmental interest.
Features:
Less than 1 ppb trace contamination for semi-volatiles with a molecular weight greater than toluene (92).
Ideal for EPA protocols
Actual lot chromatograms available upon request
Electron capture GC: No residue peaks greater than two ng/L as lindane.
Flame ionization GC: No peaks greater than one ng/mL, having a retention time of greater than diacetone alcohol, on a crossbonded 5% diphenyl/95% dimethyl polysiloxane capillary column for a splitless injection of a 1000-fold sample concentrate after exchange into hexane.