Technical White Paper 95% RH Verified

Why Molecular Silica is the Last Line of Defense for Feed Mills.

Author
John Jiang
CEO, SILSEP | UCSD ALUM

In the high-humidity, high-ammonia environment of the Mekong Delta (Sóc Trăng, Bạc Liêu), traditional feed additives often fail due to structural instability. Silsep's AquaPure™, utilizing molecular engineering developed at UCSD (University of California, San Diego), provides a 88% enzyme recovery rate, ensuring feed quality during the critical rainy season.

The Science of Molecular Shielding

Unlike traditional silica carriers that suffer from pore collapse in 95% relative humidity, AquaPure™ features a mesoporous capillary condensation technology. This allows for precision molecular adsorption of H2O and NH3, creating an "Open-Network Molecular Architecture" that protects exogenous enzymes from steam conditioning (95°C) in tropical feed mills.

"Our technology doesn't just hold the nutrients; it shields them from the hydrolytic degradation common in tropical aquaculture zones."

Key Performance Metrics (Trial #22 & #31)

Data extracted from our internal trials over the last 18 months in Vietnam confirms the superior performance of molecular silica over standard precipitated silica.

Metric Standard Carrier Silsep AquaPure™
Enzyme Recovery (Post-Pelleting) 40% 88%
FCR (Feed Conversion Ratio) 1.62 1.45
Ammonia Level Reduction Negligible -1.5 ppm (4h)
Average Body Weight Gain Baseline +13.7%

Conclusion

For feed mills in the Mekong Delta, Silsep is not just a supplier but a technical partner, integrating UCSD molecular science with Sanming industrial precision. As the industry moves towards sustainable and high-efficiency aquaculture, molecular silica will become the non-negotiable standard.

Download the Full Technical Trial Report

Get access to all 38 internal trial documents and molecular structural analysis.