851 Results for: "chromatography solvents"
KIMBLE® ULTRA-WARE® Flat Bottom HPLC Reservoirs with Graduations, DWK Life Sciences
Supplier: DWK Life Sciences (KIMBLE)
Designed for preparation, storage and delivery of all liquid chromatography mobile phases. As part of our ULTRA-WARE® series, these reservoirs are recommended for use under vacuum for filtration and vacuum degassing of mobile phase solvents.
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KONTES® CHROMAFLEX™ Chromatography Columns, Kimble Chase
Supplier: DWK Life Sciences (KIMBLE)
Ideal for medium pressure chromatography with either aqueous or organic mobile phases.
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n-Hexane ≥95%, CHROMASOLV™ for pesticide residue analysis, Riedel-de Haën™
Supplier: Honeywell Research Chemicals
Hexane (C6H14) is a flammable colorless liquid; it has a faint odor and is highly volatile. It is a chief constituent of petroleum, petroleum ether and gasoline. It is used as a solvent for adhesives, vegetable oils and to extract oil and grease contaminants from water and soil for analysis. Hexanes are commonly used in chromatography as a non-polar solvent. Suitable for GC and Pesticide Residue Analysis.
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XK Columns, Cytiva
Supplier: Cytiva
XK empty columns are designed for liquid chromatography at low to medium pressure. The user friendly design ensures trouble-free operation with fittings for direct connection to high performance liquid chromatography systems. They are compatible with aqueous solutions and most organic solvents used in liquid chromatography of macromolecules. They are not resistant to acetone, ketones, chlorinated hydrocarbons, aliphatic esters and phenol. Should be avoided: >10% NaOH, >10% HCl, >5% acetic acid and strong mineral acids.
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Diethyl ether ≥99.9% stabilized, Purified Plus™ ACS for organic synthesis, for preparative liquid chromatography, Burdick & Jackson™
Supplier: Honeywell Research Chemicals
For specialty organic synthesis and preparative LC. The 54-Gallon drum is individually analyzed with certificate on label. Stabilized with 1ppm BHT.
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SPME Fibers and Arrows
Supplier: Thermo Scientific
Automate solvent-free solid phase micro extraction (SPME) sample preparation by performing sample extraction and enrichment in a single step using Thermo Scientific™ SPME Arrow and SPME Fiber products. These products are used with the Thermo Scientific™ TriPlus RSH™ autosampler prior to gas chromatography (GC) or gas chromatography mass spectrometry (GC/MS) analysis.
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Methanol, SupraSolv® for GC-MS, Supelco®
Supplier: MilliporeSigma
SupraSolv® MS is dedicated for use in gas chromatography coupled with mass spectrometric detection. SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results.
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n-Hexane, SupraSolv® for GC-ECD/FID, Supelco®
Supplier: MilliporeSigma
SupraSolv® ECD and FID is specially developed for gas chromatography in combination with ECD (Electron Capture Detetor) and FID (Flame Ionization detector). SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results.
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Toluene, SupraSolv® for GC-ECD/FID, Supelco®
Supplier: MilliporeSigma
SupraSolv® ECD and FID is specially developed for gas chromatography in combination with ECD (Electron Capture Detetor) and FID (Flame Ionization detector). SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results.
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Chloroform, SupraSolv® for GC-ECD/FID, Supelco®
Supplier: MilliporeSigma
SupraSolv® ECD and FID is specially developed for gas chromatography in combination with ECD (Electron Capture Detetor) and FID (Flame Ionization detector). SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results.
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Methanol, SupraSolv® for GC-ECD/FID, Supelco®
Supplier: MilliporeSigma
SupraSolv® ECD and FID is specially developed for gas chromatography in combination with ECD (Electron Capture Detetor) and FID (Flame Ionization detector). SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results.
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Acetonitrile, SupraSolv® for GC-ECD/FID, Supelco®
Supplier: MilliporeSigma
SupraSolv® ECD and FID is specially developed for gas chromatography in combination with ECD (Electron Capture Detetor) and FID (Flame Ionization detector). SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results.
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Cyclohexane, SupraSolv® for GC-ECD/FID, Supelco®
Supplier: MilliporeSigma
SupraSolv® ECD and FID is specially developed for gas chromatography in combination with ECD (Electron Capture Detetor) and FID (Flame Ionization detector). SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results.
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2,2,4-Trimethylpentane, SupraSolv® for GC-ECD/FID, Supelco®
Supplier: MilliporeSigma
SupraSolv® ECD and FID is specially developed for gas chromatography in combination with ECD (Electron Capture Detetor) and FID (Flame Ionization detector). SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results.
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Diethyl ether, SupraSolv® for GC-ECD/FID, Supelco®
Supplier: MilliporeSigma
SupraSolv® ECD and FID is specially developed for gas chromatography in combination with ECD (Electron Capture Detetor) and FID (Flame Ionization detector). SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results.
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2-Propanol, SupraSolv® for GC-ECD/FID, Supelco®
Supplier: MilliporeSigma
SupraSolv® ECD and FID is specially developed for gas chromatography in combination with ECD (Electron Capture Detetor) and FID (Flame Ionization detector). SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results.
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Ethyl acetate, SupraSolv® for GC-ECD/FID, Supelco®
Supplier: MilliporeSigma
SupraSolv® ECD and FID is specially developed for gas chromatography in combination with ECD (Electron Capture Detetor) and FID (Flame Ionization detector). SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results.
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Ethyl acetate ≥99.9%, CHROMASOLV™ for pesticide residue analysis, Riedel-de Haën™
Supplier: Honeywell Research Chemicals
Ethyl Acetate is an organic solvent with the structure CH3-COO-CH2-CH3 (C4H8O2). This colorless liquid has a characteristic sweet odor. In the laboratory, mixtures containing ethyl acetate are used in column chromatography and extractions. Ethyl acetate does not work well as a reaction solvent because it is prone to hydrolysis and transesterification. Ethyl acetate is volatile at room temperature and has a boiling point of 77 °C. Suitable for GC and Pesticide Residue Analysis.
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Methanol ≥99.9%, CHROMASOLV™ for HPLC, Riedel-de Haën™
Supplier: Honeywell Research Chemicals
Methanol (CH3OH) is also known as Methyl Alcohol or wood alcohol. It is a clear, colorless, volatile and flammable liquid. Methanol is a common laboratory solvent and is especially useful for chromatography due to its low UV cutoff. Methanol is toxic if ingested and can result in blindness, coma and death. Suitable for HPLC and spectrophotometry.
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C Columns, Empty Chromatography Columns, Cytiva
Supplier: Cytiva
C-series columns are designed for standard chromatography. The column hardware consists of borosilicate glass, PA, fuororubber, PP, superpolyoxymethylene and silicon rubber. The eluent inlet pieces incorporate a 'reverse funnel' design that distributes eluent evenly over the cross-sectional area of the gel bed surface. This causes minimal disturbance of the gel bed and results in improved flow properties. These columns are resistant to aqueous solutions and solvents used in liquid chromatography. They are not resistant to acetone, ketones, chlorinated hydrocarbons, aliphatic esters, phenol, NaOH, >10% HCl, >5% acetic acid, or strong mineral acid.
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n-Hexane ≥99.8%, SupraSolv® for GC-MS, distilled, Supelco®
Supplier: MilliporeSigma
SupraSolv® MS is dedicated for use in gas chromatography coupled with mass spectrometric detection. SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results. This method is used e. g. for the analysis of dioxins and furans (PCDD/PCDF) in food and water samples or for the determination of PAH (polycyclic aromatic hydrocarbons) in food.
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Acetone ≥99.8%, SupraSolv® for GC-MS, distilled, Supelco®
Supplier: MilliporeSigma
SupraSolv® MS is dedicated for use in gas chromatography coupled with mass spectrometric detection. SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results. This method is used e. g. for the analysis of dioxins and furans (PCDD/PCDF) in food and water samples or for the determination of PAH (polycyclic aromatic hydrocarbons) in food.
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Toluene ≥99.8%, SupraSolv® for GC-MS, distilled, Supelco®
Supplier: MilliporeSigma
SupraSolv® MS is dedicated for use in gas chromatography coupled with mass spectrometric detection. SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results. This method is used e. g. for the analysis of dioxins and furans (PCDD/PCDF) in food and water samples or for the determination of PAH (polycyclic aromatic hydrocarbons) in food.
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Cyclohexane ≥99.8%, SupraSolv® for GC-MS, distilled, Supelco®
Supplier: MilliporeSigma
SupraSolv® MS is dedicated for use in gas chromatography coupled with mass spectrometric detection. SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results. This method is used e. g. for the analysis of dioxins and furans (PCDD/PCDF) in food and water samples or for the determination of PAH (polycyclic aromatic hydrocarbons) in food.
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HiScale Columns, Cytiva
Supplier: Cytiva
Empty columns with high pressure stability (able to withstand up to 20 bar of pressure) and high flow rates are compatible for packing with modern BioProcess™ chromatography media, such as MabSelect™ and Capto™ for process development and preparative chromatography. The columns are designed to be used in aqueous solutions and nearly all organic solvents commonly used in liquid chromatography of biomolecules, with the following few exceptions: chlorinated hydrocarbons, acetone and other ketones, aliphatic esters and phenol. Solutions containing more than 2 M NaOH, 1 M HCl, other strong mineral acids or 75% acetic acid should not be used. The column hardware consists of borosilicate glass, PC, PA (reinforced glass fibre), EPDM, POM, PEEK, ETFE, Fluoro-rubber, PP and PA (nylon).
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Ethyl acetate ≥99.8%, SupraSolv® for GC-MS, distilled, Supelco®
Supplier: MilliporeSigma
SupraSolv® MS is dedicated for use in gas chromatography coupled with mass spectrometric detection. SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results. This method is used e. g. for the analysis of dioxins and furans (PCDD/PCDF) in food and water samples or for the determination of PAH (polycyclic aromatic hydrocarbons) in food.
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Dichloromethane ≥99.8% stabilised, SupraSolv® for gas chromatography, for chromatography, distilled, Supelco®
Supplier: MilliporeSigma
SupraSolv® ECD and FID is specially developed for gas chromatography in combination with ECD (Electron Capture Detetor) and FID (Flame Ionization detector). SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results. Typical applications include the determination of polychlorinated biphenyls (PCB) in water and soil or pesticides in fruits and vegetables. Also ideal for many EPA protocols.
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Acetone ≥99.8%, SupraSolv® for GC-ECD/FID, distilled, Supelco®
Supplier: MilliporeSigma
SupraSolv® ECD and FID is specially developed for gas chromatography in combination with ECD (Electron Capture Detetor) and FID (Flame Ionization detector). SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio, leading to reliable and reproducible analysis results. Typical applications include the determination of polychlorinated biphenyls (PCB) in water and soil or pesticides in fruits and vegetables. Also ideal for many EPA protocols.
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Dichloromethane ≥99.8% stabilised, SupraSolv® for gas chromatography, for chromatography, distilled, Supelco®
Supplier: MilliporeSigma
SupraSolv® MS is dedicated for use in gas chromatography coupled with mass spectrometric detection. SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results. This method is used e. g. for the analysis of dioxins and furans (PCDD/PCDF) in food and water samples or for the determination of PAH (polycyclic aromatic hydrocarbons) in food. Also commonly used in QuEChERS pesticide residue analysis.
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Acetonitrile ≥99.8%, SupraSolv® for GC-MS, distilled, Supelco®
Supplier: MilliporeSigma
SupraSolv® MS is dedicated for use in gas chromatography coupled with mass spectrometric detection. SupraSolv® solvents offer the largest specified retention time range, a clear baseline and a minimal signal-to-noise ratio leading to reliable and reproducible analysis results. This method is used e. g. for the analysis of dioxins and furans (PCDD/PCDF) in food and water samples or for the determination of PAH (polycyclic aromatic hydrocarbons) in food. Also commonly used in QuEChERS pesticide residue analysis.