The Oleakardia project exists to bring precision and trust to the field of lipid chemical analysis and oxidative stability studies. We understand that the degradation of organic polymers and the loss of chemical properties represent a major challenge for the food, pharmaceutical, and research industries.
Through advanced methods, such as the use of a nitrogen barrier, we are dedicated to preserving the integrity of compounds. Our core principle is that of absolute transparency: every spectral analysis, every data table is a clear map of the product's state.
The expected effect for the client is simple and powerful: predictability. We provide the certainty that your products maintain their essential properties, allowing you to make decisions based on solid data, optimize processes, and guarantee long-term quality.
The ultimate goal is transforming technical data into operational trust.
100%
Verified methodology
24/7
Data monitoring
0%
Procedural error
We are a research laboratory specialized in the chemical analysis of lipids and the study of organic polymer degradation. Our mission is to provide precise solutions for preserving chemical properties through advanced methods, such as the use of a nitrogen barrier.
We work for raw material producers, manufacturers in the food and pharmaceutical industry, as well as for research institutes.
Our key positioning: analytical accuracy and innovative approaches for extending the oxidative stability of products.
Communication tone: professional, clear, and focused on technical details, reflecting the seriousness of our laboratory work.
| Parameter | Value | Unit |
|---|---|---|
| Peroxide Index | < 5.0 | meq/kg |
| Oxidative stability (with N₂) | > 48 | hours |
| Free fatty acids | 0.8 | % |
Illustrative data obtained through standardized spectral methods. For complete details, consult our services.
A journey through the defining stages of our research in the analysis and preservation of chemical properties.
The beginnings focused on classical methods for analyzing the degradation of organic polymers. Establishing the first protocols for testing oxidative stability.
Intensive research demonstrates the superior efficiency of an inert nitrogen atmosphere in inhibiting lipid oxidation. This becomes the methodological core.
Our refined methodology is now a reference standard in the food and pharmaceutical industry for preserving essential chemical properties.