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Overview
Thin Film Evaporator LMTFE-A105 is designed to offer feeding rate of 3 to 15 L/h. It features continuous feeding and discharging modules to maintain steady flow of materials. Equipped with fully jacketed structure, it enhances substance adaptability across different thermal conditions. Integrates magnetic coupling seal, ensuring higher vacuum level for optimal evaporation. Our Evaporator is ideal for refining and separating high-purity substances, drugs, and flavors.
Features :
Superior heat transfer
Sight glass integration
Quick-connect assembly
Simplified disassembly
Material loss minimization
Specifications :
| Feeding Rate | 3 to 15 L/h |
| Feeding Flask Volume | 15 L |
| Operating Temperature | Less than or equal to 300°C |
| Material | Stainless steel 316L |
| Evaporation Area | 0.1 m² |
| Internal Condenser Area | 1 m² |
| Power Supply | 220V/50Hz,1P |
| Dimensions | 1900×900×2200 mm |
Applications :
Thin Film Evaporator LMTFE-A105 is applied for refining high-purity substances, separating drugs, extracting flavors, treating wastewater in the chemical sector, pharmaceuticals, food processing, and environmental monitoring.
Selection Guide :
Thin Film Evaporator LMTFE-A105 is perfect for high-throughput applications in pharmaceutical, chemical, and food industries, particularly where heat-sensitive, viscous, or thermally unstable materials require efficient separation or concentration. Based on research studies and industrial experiments, this model is widely used for processes like distillation, purification, stripping, and solvent recovery of active pharmaceutical ingredients, essential oils, natural extracts, and polymers. With a feeding rate capacity of 5 to 30 L/h, it supports semi-industrial and pilot-scale operations. The unit is built using corrosion-resistant materials and features a hygienic, easy-to-clean design. Certified under GMP and CE standards, it ensures safety, regulatory compliance, and reliability. Customers should consider this model when selecting a system that provides gentle yet effective evaporation with high thermal efficiency and scalability for continuous production.