We provide advanced systems for chemical and physical conversion processes, enabling precise reactions and consistent product properties. Our solutions are designed for high efficiency, safety, and integration into continuous or batch operations.
Starch Modification and Conversion
Systems for cooking, chemical modification, and enzymatic conversion of starches. Designed for controlled reaction conditions to achieve targeted viscosity, molecular weight distribution, and functional properties. Available for dry and liquid processes, from pilot scale to high-capacity industrial plants.
Adhesive and Binder Preparation
Fully automated systems for preparing adhesives and cobinders through controlled mixing and reaction processes. Includes temperature management, shear mixing, and dosing technology to ensure optimal bonding performance and product stability.
Chemical Reaction Systems
Continuous and batch systems for chemical reactions such as saponification and preparation of specialty chemicals. Integrated heating, cooling, and mixing functions guarantee precise reaction control and reproducibility.
Thermal and Thermo-Mechanical Conversion
Equipment for thermal and thermo-mechanical conversion processes such as gelatinization, digestion, and modification of raw materials. Through the targeted combination of heat, steam, and mechanical energy, material properties are altered, solubility and reactivity are increased, and subsequent process steps are optimized.
Fermentation and Bioprocesses
Systems for biological conversion processes in fermenters and bioreactors. Designed for precise process conditions regarding temperature, pH, aeration, and mixing to ensure reproducible reaction profiles and high product yields. Available for pilot, technical, and production plants.
Polymerization and Reaction Processes
Systems for controlled reaction processes featuring heating, cooling, mixing, and dosing technology. Suitable for the production and modification of polymers, binders, coatings, and specialty chemicals under reproducible process conditions.