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LXG Series Multicoil Dryer - Efficient Indirect Heating & Cooling Solutions from China Suppliers and Factory

Introducing our Multicoil unit, a cutting-edge solution designed for efficient indirect contact heating and cooling. This innovative system features a rotor that serves as the heat exchange surface, paired with a sturdy stationary shell or vessel. The rotor is composed of multiple parallel coil sets arrayed along a central shaft, with each coil set including several concentric tubes. This design allows for optimal heat transfer using either steam or liquid as the heat transfer medium. As a leading manufacturer in China, we are committed to providing top-quality products and exceptional service to our clients. Partner with us as your trusted suppliers for advanced heating and cooling systems from our factory

    Principle

    The Multicoil unit consists of a rotor which forms the indirect contact heating/cooling surface, and a stationary shell or vessel. The rotor consists of a number of parallel coil sets arranged along a central shaft. Each coil set contains a number of concentric tubes. The heat transfer medium may be steam or liquid.

    The design of the customized system

    Each application of the Multicoil system requires careful investigation of the processing characteristics of the actual product. On this basis, operating conditions and system design are selected. The scope of supply includes complete processing systems or just the Multicoil.

    Application Industry

    Chemical Industry

    Aluminium Fluoride, Potassium Chloride, Sodium Sulphate, Calcium Carbonate.

    Petrochemical Industry

    Polyvinyl Chloride, HD-Polyethylene, Melamine, Polyester.

    Mining

    Metal Concentrates, Calcium Tungstate, Powdered Coal, Tungsten Oxide, Coal Metallic Silicon.

    Wood Processing

    Wood chips, Wall board fibres.

    Breweries and Distilleries

    Spent grain, Dark grain.

    Food Industry

    Meat meal, Fish meal, Soya flour, Starch.

    Pharmaceutical Industry

    Penicillin sludge, Enzyme sludge, Granular enzyme, Solvent recovery from waste.

    Miscellaneous

    Pigments, Carbon Black, Peat, Gypsum, CMC.

    Advantage

    Good Energy Economy

    The energy consumption of the Multicoil processing system is low compared to systems based on convective heat transfer.

    Small Exhaust Gas Quantities

    The Multicoil utilizes indirect energy transfer by means of steam, water, or thermal fluids. Therefore, the process requires a low flow of air or inert gas only.

    Low Total Process Investments

    Due to the compact design of the Multicoil and the exhaust system, installation costs are low.

    Low Cost of Exhaust Gas Cleaning

    Small exhaust gas quantities result in small exhaust gas cleaning systems. As a consequence of the low gas velocities inside the shell, only small fractions of solids are entrained.

    Efficient Energy and Solvent Recovery

    Due to the low air/inert gas flow through the Multicoil unit, a significant part of the vapour in the exhaust gases is condensable, thus providing efficient energy and solvent recovery.

    Frequently Asked Questions

    What is the working principle of the Multicoil unit?

    The Multicoil unit utilizes a rotor containing parallel concentric tube sets arranged along a central shaft to form an indirect contact heating or cooling surface inside a stationary shell.

    What heating mediums can be used in the Multicoil system?

    The heat transfer medium for the Multicoil system can be either steam or liquid, depending on the specific application requirements.

    How is a customized Multicoil system designed?

    Every system is customized based on a detailed analysis of the physical and processing characteristics of the specific product to optimize operating conditions.

    Why does the Multicoil system have low installation costs?

    The compact design of both the Multicoil unit and its integrated exhaust system minimizes overall space requirements and installation complexity.

    How does the system achieve efficient solvent recovery?

    By maintaining a low flow of air or inert gas, a significant portion of the vapor in the exhaust gas remains condensable, enabling highly efficient recovery processes.