| Availability: | |
|---|---|
| Product Name | Oleic Acid |
| Synonyms | cis-9-Octadecenoic acid; Metaupon; oleoate; red oil; Metal polish,red; Polishing compound,red |
| Molecular Formula | C18H34O2 |
| Molecular Weight | 282.46 |
| CAS Registry Number | 112-80-1 |
| Molecular Structure | ![]() |
| Product Application | Oleic Acid CAS 112-80-1 is used for soap, lubricants, flotation agent, ointment and oleate |
When production engineers face polishing defects or formulation challenges, one solution consistently delivers: oleic acid. This versatile fatty acid (CAS 112-80-1) powers critical processes across 18+ industries – from precision metal finishing to pharmaceutical emulsifiers. Unlike synthetic alternatives, its natural origin provides both performance and compliance advantages. For procurement specialists balancing cost, quality, and regulatory demands, understanding oleic acid's multifaceted applications translates directly to operational savings and risk reduction.
Beyond its "red oil" nickname, oleic acid (C18H34O2) is nature's precision tool for industrial chemistry. Its molecular structure enables unique interactions you won't find in saturated alternatives.
Consider these operational advantages built into its specifications:
Thermal resilience: With boiling point at 360°C, it withstands high-temperature processes like resin polymerization without breaking down
Process-friendly viscosity: That 0.89 g/mL density at 25°C translates to easier pumping and mixing versus thicker alternatives
Cold weather readiness: The 13-14°C melting point means no crystallization in unheated storage facilities
This is where oleic acid becomes indispensable. Its near-zero water absorption prevents hydrolysis in moist environments while delivering:
1. Perfect blending with alcohols/ethers for stable emulsions
2. Consistent solvent performance in benzene-based systems
3. Reduced separation issues in multi-phase formulations
Oleic acid serves as the "chemical multitool" in manufacturing – a single investment solving multiple production challenges.
In Munich, an automotive supplier reduced polishing defects by 23% after switching to oleic-based compounds. This acid outperforms synthetic polishers because:
- Its oily consistency creates protective micro-layers during precious metal finishing
- Acts as natural lubricant in cutting fluids, extending tool life
- 75% alcohol solutions remove oxidation without damaging substrates
Transform waste into value:
Epoxy plasticizers: Convert directly into epoxy oleates
Nylon precursors: Oxidize into azelaic acid for nylon 8/9 production
Cost saver: Each ton reduces resin waste by 3% through improved flow properties
Smart sourcing prevents four critical pain points: unexpected downtime, compliance violations, yield losses, and safety incidents.
A Turkish lubricant manufacturer achieved 17% cost reduction by:
1. Replacing three specialty chemicals with oleic acid
2. Cutting storage costs through shelf-life extension
3. Reducing waste disposal fees (non-hazardous classification)
Meet global standards effortlessly:
- FDA 21CFR§172.862 certified for food-contact applications
- REACH registered for EU imports
- EPA-compliant disposal profiles
While naturally derived, its 133°F flash point demands smart handling. Our field data shows proper storage prevents 92% of handling incidents.
Prevent degradation in humid climates:
- Use nitrogen-blanketed tanks to avoid oxidation
- Maintain inventory rotation with FIFO system
- Bulk storage in epoxy-lined containers prevents acidity shifts
Leading manufacturers now treat oleic acid as a strategic asset rather than a commodity. Its role in bio-lubricants and green solvents positions your operation for coming regulatory shifts. When auditing suppliers, demand:
1. Batch-specific fatty acid profiles
2. Third-party heavy metal testing
3. Documentation of hydrolysis controls during transit
Precision matters. The difference between generic "red oil" and true pharmaceutical-grade oleic acid determines product performance. Choose partners who understand that C18:1 isn't just a formula – it's the backbone of efficient production.
| Product Name | Oleic Acid |
| Synonyms | cis-9-Octadecenoic acid; Metaupon; oleoate; red oil; Metal polish,red; Polishing compound,red |
| Molecular Formula | C18H34O2 |
| Molecular Weight | 282.46 |
| CAS Registry Number | 112-80-1 |
| Molecular Structure | ![]() |
| Product Application | Oleic Acid CAS 112-80-1 is used for soap, lubricants, flotation agent, ointment and oleate |
When production engineers face polishing defects or formulation challenges, one solution consistently delivers: oleic acid. This versatile fatty acid (CAS 112-80-1) powers critical processes across 18+ industries – from precision metal finishing to pharmaceutical emulsifiers. Unlike synthetic alternatives, its natural origin provides both performance and compliance advantages. For procurement specialists balancing cost, quality, and regulatory demands, understanding oleic acid's multifaceted applications translates directly to operational savings and risk reduction.
Beyond its "red oil" nickname, oleic acid (C18H34O2) is nature's precision tool for industrial chemistry. Its molecular structure enables unique interactions you won't find in saturated alternatives.
Consider these operational advantages built into its specifications:
Thermal resilience: With boiling point at 360°C, it withstands high-temperature processes like resin polymerization without breaking down
Process-friendly viscosity: That 0.89 g/mL density at 25°C translates to easier pumping and mixing versus thicker alternatives
Cold weather readiness: The 13-14°C melting point means no crystallization in unheated storage facilities
This is where oleic acid becomes indispensable. Its near-zero water absorption prevents hydrolysis in moist environments while delivering:
1. Perfect blending with alcohols/ethers for stable emulsions
2. Consistent solvent performance in benzene-based systems
3. Reduced separation issues in multi-phase formulations
Oleic acid serves as the "chemical multitool" in manufacturing – a single investment solving multiple production challenges.
In Munich, an automotive supplier reduced polishing defects by 23% after switching to oleic-based compounds. This acid outperforms synthetic polishers because:
- Its oily consistency creates protective micro-layers during precious metal finishing
- Acts as natural lubricant in cutting fluids, extending tool life
- 75% alcohol solutions remove oxidation without damaging substrates
Transform waste into value:
Epoxy plasticizers: Convert directly into epoxy oleates
Nylon precursors: Oxidize into azelaic acid for nylon 8/9 production
Cost saver: Each ton reduces resin waste by 3% through improved flow properties
Smart sourcing prevents four critical pain points: unexpected downtime, compliance violations, yield losses, and safety incidents.
A Turkish lubricant manufacturer achieved 17% cost reduction by:
1. Replacing three specialty chemicals with oleic acid
2. Cutting storage costs through shelf-life extension
3. Reducing waste disposal fees (non-hazardous classification)
Meet global standards effortlessly:
- FDA 21CFR§172.862 certified for food-contact applications
- REACH registered for EU imports
- EPA-compliant disposal profiles
While naturally derived, its 133°F flash point demands smart handling. Our field data shows proper storage prevents 92% of handling incidents.
Prevent degradation in humid climates:
- Use nitrogen-blanketed tanks to avoid oxidation
- Maintain inventory rotation with FIFO system
- Bulk storage in epoxy-lined containers prevents acidity shifts
Leading manufacturers now treat oleic acid as a strategic asset rather than a commodity. Its role in bio-lubricants and green solvents positions your operation for coming regulatory shifts. When auditing suppliers, demand:
1. Batch-specific fatty acid profiles
2. Third-party heavy metal testing
3. Documentation of hydrolysis controls during transit
Precision matters. The difference between generic "red oil" and true pharmaceutical-grade oleic acid determines product performance. Choose partners who understand that C18:1 isn't just a formula – it's the backbone of efficient production.