EnzyPaG is a pioneering Biotech crossroad, connecting technology providers with end users to meet their needs. We help source the best biotech solutions and nurture innovation to ensure technological advancements reach their full potential.
Technical modification of Wool processing unit to produce Organic Fertilizers, Soil Improvers.
Operational and legal changes in Academic Biotech Lab to operate as Independent Biotech Unit.
Marketing and Sales support to Start-up company introducing novel Biotech technology in cosmetics.
Technical and Marketing preparation for introducing novel catalysts in the Food Industry in specific Markets.
Fragrance & Flavours producer assigned to Enzypag , screening and sourcing of enzymes for the R&D department.
Marketing preparation, to a specific market, for introducing Novel photosynthesis technology for CO2 capture.
Study and implementation of a new processing line for the De-Oiling of Lecithin Waste in Soy Oil Refining Plan.
Optimization of novel technology for the production of GOS and Rare Sugars.
Strategic Alliance to Revolutionize High-Tech Functional Nonwovens.
We are proud to announce a powerful new strategic partnership aimed at redefining the standards of the high-tech functional nonwoven market. Enzypag, an international consulting group; Euro-Tex, a leading specialist in textile applications; and Salvinno, a deep-tech spin-off, are officially joining forces.
This collaboration merges decades of industrial heritage with cutting-edge scientific innovation:
Enzypag: Bringing a vast international network and specialized consulting expertise, Enzypag serves as the bridge between advanced biotech/industrial solutions and global market needs.
Euro-Tex: With 25 years of excellence in the textile industry, Euro-Tex provides the deep application knowledge and technical infrastructure necessary to scale sophisticated textile solutions.
Salvinno: As a high-tech spin-off, Salvinno contributes its patented surface activation technology. Utilizing advanced Plasma technology, Salvinno enables the modification of materials at the molecular level without the need for harsh chemicals.