Analysis of Solvent Mixture
Applications | 2023 | ShimadzuInstrumentation
Gas chromatography is a cornerstone technique in analytical chemistry for separating and quantifying volatile organic compounds. Rapid and reliable analysis of common solvents in complex mixtures is vital for quality control in pharmaceuticals, petrochemicals and environmental testing.
This study aimed to demonstrate the capability of a polar-deactivated GC column to separate and detect a broad range of solvents. The focus was on achieving baseline resolution of 20 representative compounds varying in polarity and volatility under a single temperature program.
A standard mixture containing aliphatic hydrocarbons, halogenated solvents, esters, ketones and alcohols was prepared. A temperature gradient was applied to elute analytes in order of increasing boiling point and polarity. The injection was performed in split mode to handle a broad concentration range.
All twenty solvents—from light alkanes like pentane and hexane to polar alcohols and esters—were baseline separated. Early eluting nonpolar compounds showed sharp peaks, while more polar analytes such as alcohols and ethers exhibited expected retention in the polar wax phase. The temperature program provided a good balance between analysis time and resolution.
The method delivers a single-shot analysis of diverse solvents, reducing sample preparation and instrument downtime. It is well suited for routine quality assurance in manufacturing, solvent purity checks in laboratories and environmental screening of volatile organics.
Advances may include coupling the polar column with mass spectrometric detection for enhanced identification, implementing faster temperature ramps for high-throughput screening and developing miniaturized systems for field analysis. Integration with automated sampling and data processing will further streamline solvent monitoring.
The SH-PolarWax column demonstrated robust performance in resolving a complex solvent mixture under a single temperature program. Its use supports efficient quality control workflows and reliable solvent profiling in various industrial and research settings.
GC, Consumables, GC columns
IndustriesEnergy & Chemicals
ManufacturerShimadzu
Summary
Significance of the Topic
Gas chromatography is a cornerstone technique in analytical chemistry for separating and quantifying volatile organic compounds. Rapid and reliable analysis of common solvents in complex mixtures is vital for quality control in pharmaceuticals, petrochemicals and environmental testing.
Objectives and Study Overview
This study aimed to demonstrate the capability of a polar-deactivated GC column to separate and detect a broad range of solvents. The focus was on achieving baseline resolution of 20 representative compounds varying in polarity and volatility under a single temperature program.
Methodology
A standard mixture containing aliphatic hydrocarbons, halogenated solvents, esters, ketones and alcohols was prepared. A temperature gradient was applied to elute analytes in order of increasing boiling point and polarity. The injection was performed in split mode to handle a broad concentration range.
Instrument Used
- Gas chromatograph equipped with flame ionization detector (FID)
- Column: SH-PolarWax, 30 m × 0.25 mm I.D., 0.25 µm film thickness
- Temperature program: 40 °C hold 4 min, ramp 5 °C/min to 250 °C, hold 5 min
- Injection volume: 0.5 µL, split ratio 1:40
- Injector/detector temperatures: 250 °C
- Carrier gas: Hydrogen at 40 cm/s (approx. 3.2 mL/min)
Main Results and Discussion
All twenty solvents—from light alkanes like pentane and hexane to polar alcohols and esters—were baseline separated. Early eluting nonpolar compounds showed sharp peaks, while more polar analytes such as alcohols and ethers exhibited expected retention in the polar wax phase. The temperature program provided a good balance between analysis time and resolution.
Benefits and Practical Applications
The method delivers a single-shot analysis of diverse solvents, reducing sample preparation and instrument downtime. It is well suited for routine quality assurance in manufacturing, solvent purity checks in laboratories and environmental screening of volatile organics.
Future Trends and Potential Applications
Advances may include coupling the polar column with mass spectrometric detection for enhanced identification, implementing faster temperature ramps for high-throughput screening and developing miniaturized systems for field analysis. Integration with automated sampling and data processing will further streamline solvent monitoring.
Conclusion
The SH-PolarWax column demonstrated robust performance in resolving a complex solvent mixture under a single temperature program. Its use supports efficient quality control workflows and reliable solvent profiling in various industrial and research settings.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
Similar PDF
Analysis of Flavor volatiles - No. 518
2023|Shimadzu|Applications
ERAS-1000-0518 GC FID SH Series SH-PolarWax Analysis of Flavor volatiles 518 Keywords: Aroma ingredients, Fragrances 1. hexane 2. acetaldehyde 3. acetone 4. methanol 5. ethyl acetate 6. isopropyl alcohol 7. ethanol 8. methylene chloride 9. ethyl propionate 10. α-pinene 11.…
Key words
polarwax, polarwaxvolatiles, volatilesflavor, flavorfid, fidsplit, splitseries, seriesratio, ratiocarrier, carrierdetector, detectorinstrument, instrumentgas, gascolumn, columnanalysis
Analysis of Organic Solvents
2023|Shimadzu|Applications
ERAS-1000-0411 GC FID SH Series SH-200 411 Analysis of Organic Solvents Keywords: environment, simultaneous analysis 1. Methanol 2. Ethanol 3. Acetaldehyde + Ethyl Ether 4. 1,1-Dichloroethylene 5. Isopropanol 6. Dichloromethane + Hexane 7. trans-1,2-Dichloroethylene 8. tert.-Butanol 9. tert.-Butyl Methyl Ether…
Key words
acetate, acetatemonomethyl, monomethylisopropyl, isopropylether, etherfid, fidsplit, splitsolvents, solventsseries, seriesratio, ratiocarrier, carrierorganic, organicdetector, detectorinstrument, instrumentgas, gascolumn
Analysis of Amines/Alcohols/Chlorides
2023|Shimadzu|Applications
ERAS-1000-0461 GC FID SH Series SH-PolarWax Analysis of Amines/Alcohols/Chlorides 461 Keywords: Polar-deactivated column, Amines, Alcohols, Chlorides 1. n-Octyl,N,N-dimethylamine 2. n-Octyl chloride 3. n-Decyl-N,N-dimethylamine 4. n-Decyl chloride 5. n-Octyl alcohol 6. n-Dodecyl-N,N-dimethylamine 7. n-Dodecyl chloride 8. Nedexyl alcohol 9. n-Tetradecyl-N,N-dimethylamine 10.…
Key words
polarwax, polarwaxchlorides, chloridesalcohols, alcoholsamines, aminesfid, fidsplit, splitseries, seriesratio, ratiocarrier, carrierdetector, detectorinstrument, instrumentgas, gascolumn, columnanalysis
Analyzing Organic Compound Species with Hydrogen Carrier Gas
2022|Shimadzu|Applications
ERAS-1000-0316 GC FID AOC SH Series SH-PolarWax Analyzing Organic Compound Species with Hydrogen Carrier Gas 316 Keywords: Hydrogen carrier gas, Organic compounds, Narrow bore capillary column 1. 2. 3. 4. 5. 6. 7. 8. 9. Acetone Ethyl acetate Isopropyl alcohol…
Key words
gas, gascarrier, carrierpolarwax, polarwaxacetate, acetatemonomethyl, monomethylaoc, aocmibk, mibkisobutyl, isobutylbutanol, butanolipa, ipapropylene, propyleneisopropyl, isopropylmakeup, makeupketone, ketoneglycol