Evaluation of Oil Residues on Aluminum Foil Surfaces
Applications | 2023 | ShimadzuInstrumentation
The presence of oil residues on aluminum foil used in electronic components such as electrolytic capacitors can compromise performance and reliability. Rapid, direct measurement of these organic contaminants is crucial for maintaining product quality in high-volume manufacturing environments.
This study evaluates the Shimadzu TOC-L total organic carbon analyzer combined with the SSM-5000A solid sample combustion unit for quantifying oil residues on aluminum foil surfaces. By avoiding traditional solvent extraction, the method aims to deliver a fast, reliable tool for industrial quality control.
The Shimadzu TOC-L analyzer with the SSM-5000A unit offers a rapid, accurate, and reproducible approach for measuring oil residues on aluminum foil without solvent extraction. Its speed and reliability make it a valuable tool for industrial QA/QC, with potential extension to various metal and inorganic surfaces.
TOC
IndustriesEnergy & Chemicals
ManufacturerShimadzu
Summary
Importance of the Topic
The presence of oil residues on aluminum foil used in electronic components such as electrolytic capacitors can compromise performance and reliability. Rapid, direct measurement of these organic contaminants is crucial for maintaining product quality in high-volume manufacturing environments.
Objectives and Overview
This study evaluates the Shimadzu TOC-L total organic carbon analyzer combined with the SSM-5000A solid sample combustion unit for quantifying oil residues on aluminum foil surfaces. By avoiding traditional solvent extraction, the method aims to deliver a fast, reliable tool for industrial quality control.
Methodology and Instrumentation
- Sample Preparation
Three simulated oil residue levels (43, 86, and 258 µgC) were created by diluting a 20 cSt base oil (86% carbon) in ethanol and applying it to 3 cm × 10 cm aluminum foil, followed by ethanol evaporation. - Instrumental Setup
The Shimadzu TOC solid sample measurement system (TOC-L analyzer + SSM-5000A combustion unit) combusts samples at 900 °C in oxygen (400 mL/min), converting all carbon to CO₂ for detection. - Calibration and Sensitivity
A one-point calibration using 30 µL of a 1% glucose solution (300 µgC) was applied. The Cell Switching Valve Set–Specification A extended the quantitation range to 15–300 µgC to enhance sensitivity.
Main Results and Discussion
- Accuracy and Recovery
Measured carbon contents matched theoretical values with recoveries of 95.5–104%. - Repeatability
Coefficients of variation were under 2%, demonstrating strong reproducibility. - Peak Variability
Although peak shapes varied, quantitation based on integrated peak areas remained consistent.
Benefits and Practical Applications
- No Extraction Required: Direct combustion reduces sample preparation time to about five minutes per analysis.
- High Throughput: Suitable for large-scale QC workflows in foil production and metal processing.
- Versatility: Applicable to other metal and inorganic substrates (e.g., copper sheets, wires) for surface contaminant evaluation.
Future Trends and Opportunities
- Substrate Expansion: Adapting the technique to varied materials and complex parts could widen industrial use.
- Automation Integration: Coupling with robotic sample handling to improve throughput and consistency.
- Enhanced Sensitivity: Further valve and detector advancements may lower quantitation limits below 15 µgC for trace analyses.
Conclusion
The Shimadzu TOC-L analyzer with the SSM-5000A unit offers a rapid, accurate, and reproducible approach for measuring oil residues on aluminum foil without solvent extraction. Its speed and reliability make it a valuable tool for industrial QA/QC, with potential extension to various metal and inorganic surfaces.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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