SupplyMatcha
SupplyMatcha

Study on the stability of organic compounds

In freeze-drying and industrial granulation processes. Bioengineering of plant extracts for the synthesis of high-purity materials.

Keywords: freeze-drying, bioengineering, thermal processes, organic extraction, synthesis of plant-based materials.

Macro photography of particles and plant structures in a laboratory

Macro analysis of freeze-dried particles. Industrial granulation process monitored in real time.

Ready for the next step in your research?

Discover how our advanced freeze-drying technology can optimize the stability of organic compounds in your plant materials.

Custom Process Analysis

Receive a detailed report on the compatibility of your extracts with our industrial granulation processes.

Request an Analysis

Submit your plant material specifications. Our bioengineering team will respond within 24 hours with a preliminary assessment.

Frequently Asked Questions

Clear answers regarding our bioengineering and freeze-drying processes.

What is freeze-drying and why is it superior for plant extracts?

Freeze-drying (lyophilization) is a dehydration process at low temperatures under reduced pressure. For plant extracts, it preserves the integrity of thermolabile organic compounds (vitamins, antioxidants, enzymes), preventing thermal degradation and maintaining maximum biological activity, compared to conventional drying.

How do you ensure compound stability during industrial granulation?

Our granulation process is controlled through parameters such as humidity, temperature, and rotation speed to minimize thermal and mechanical stress. We use compatible natural binding agents and monitor particle size in real-time to guarantee uniform dispersion and long-term stability of the finished product.

What types of plant materials are suitable for organic extraction?

We work with a wide range: leaves (mate, mint), roots (ginger, ginseng), flowers (sea buckthorn, calendula) and fruits (acai, aronia). The choice of organic solvent and extraction parameters (temperature, time, pressure) is optimized for each plant matrix to achieve maximum yield and purity.

What are the advantages of bioengineering extracts over traditional methods?

Bioengineering allows precise control of the entire chain, from raw material selection to the final process. This leads to extracts with standardized concentration of active principles, superior reproducibility, absence of harmful solvent residues, and an enhanced safety profile for nutraceutical and cosmeceutical applications.

Where can I find technical details or an analysis report for a product?

All detailed technical specifications, Certificates of Analysis (CoA), and Safety Data Sheets (SDS) are provided to our partners. To request documentation for a specific product or for technical discussions, please contact us directly at info@supplymatcha.com.

Why Choose Our Freeze-Drying Technology?

The essential differences that define us in plant extract bioengineering.

1

Superior Molecular Stability

Our freeze-drying processes maintain the integrity of sensitive organic compounds, with a degradation rate below 0.5%, compared to conventional thermal methods.

  • Preservation of enzymatic activity over 98%.
  • Precise control of sublimation parameters.
2

Controlled Granulation & Bioavailability

Our industrial granulation technology ensures uniform particle distribution (10-200µm), optimizing solubility and absorption.

  • Increased specific surface area for rapid release.
  • No synthetic binding agents.
3

Verified Expertise & Partnerships

We collaborate with research institutes and premium producers, applying validated protocols for each plant species.

  • Accelerated stability studies (ICH Q1A).
  • Complete documentation and lot traceability.

Why do our partners entrust us with their processes?

>99%
Certified purity
24/7
Process monitoring
0 defects
Rejected lots (2024)
ISO 22000
Management system
RO EN