High Efficiency and Energy Saving: The optimized cylinder structure design (such as a reasonable layout of lifting plates) can enhance heat and mass transfer, improve thermal efficiency, and reduce the energy consumption per unit of material drying; some equipment can be adapted to waste heat utilization to further save energy costs.
Strong Adaptability: It can handle beer lees materials with different initial moisture contents and different properties, has a certain adaptability to fluctuations in the moisture content of the incoming materials, and can operate stably to ensure uniform moisture content of the discharged materials.
Environmental Compliance: It is equipped with a complete set of exhaust gas treatment devices for dust removal, deodorization, etc. (it is possible to be equipped with relevant environmental protection equipment as shown in the picture), reducing dust and waste gas emissions during the drying process and meeting environmental protection requirements; it has good sealing performance, reducing secondary pollution in the workshop environment.
High Degree of Automation: It can realize automatic control of the feeding, drying, and discharging links, equipped with systems such as intelligent temperature control and fault alarm, with simple operation, reducing manual intervention, and ensuring the continuity and stability of production.
Good Durability: Key components such as the main machine cylinder are made of wear-resistant and corrosion-resistant materials (taking high-quality steel as the basis, and some material-contact surfaces are subjected to anti-corrosion treatment), adapting to the erosion of materials such as beer lees, extending the service life of the equipment, and reducing the frequency of equipment maintenance.