Microwave Pyrolysis Rotary Furnace Oven

Microwave Pyrolysis Rotary Furnace Oven represents a sophisticated thermal processing system designed for efficient and environmentally sustainable treatment of various organic materials. At its core, the oven integrates microwave technology with a rotary furnace mechanism to enable precise control over the pyrolysis process.

Microwave Pyrolysis Rotary Furnace Oven are specialized devices that use microwave radiation to thermally break down organic molecules. In order to break down organic materials into simpler molecules, high temperatures are applied to them in an oxygen-free environment.

At Kerone, our experience spans 48 years. We design and manufacture microwave pyrolysis rotary ovens for both commercial and research applications, including waste management, energy production, and the manufacturing of biochar. The end product’s dimensions, shape, and moisture content must be taken into account, in addition to the manufacturing environment, stainless steel, the most common building material, and the energy consumption pattern. We help the customer make decisions by understanding the importance of quality. the type and amount of nourishment.

The cylindrical chamber of the rotary oven revolves around a central axis. Heat is produced as a result of the microwave radiation being absorbed by the material lining the chamber. Through a hole in the side of the chamber, the organic material to be pyrolyzed is delivered into the oven. The chamber’s rotation guarantees that the material is heated consistently and is exposed to microwaves uniformly.

By varying the microwave power and the chamber’s rotational speed, the temperature within the oven may be accurately regulated. This makes it possible to set up ideal circumstances for the pyrolysis of particular kinds of organic materials.

Compared to traditional pyrolysis techniques, microwave pyrolysis rotary furnace oven offer a number of benefits. First off, they use less energy since the material may be heated instantly and directly by the microwave radiation, negating the requirement for heat transmission through a liquid or air medium. Second, the process proceeds more swiftly because the microwaves can reach high temperatures more quickly and the chamber rotates to guarantee that the material is heated uniformly all the way through. Lastly, because the process doesn’t require combustion, which can produce hazardous emissions, it is more environmentally friendly.

Kerone is presently working in business cooperation and partnership with Fricke and Mallah GMBH on application development, research, and sales of microwave pyrolysis rotary ovens. Additionally, we produce a variety of alternative microwave heating systems, including vacuum technology, microwave air jet plasma, microwave solid state generators, and other varieties.

Features of Microwave Pyrolysis Rotary Furnace Oven

  • 100°C is the operating temperature.
  • Slider used to force material into tube.
  • A fixed, outer jacket housing that is gas-tight and reflects microwave radiation to contain it.
  • A microwave-transparent inner rotational tube that is gas-tight and used to transfer the items.
  • A motor with an adjustable speed drives the rotating tube with a 3° slant.
  • Connections for adding and taking away process gases, such as inert gases

Application of Microwave Pyrolysis Rotary Furnace Oven

  • Aluminum electrical scrap tainted with organic material.
  • Plastics reinforced with fiberglass
  • Plastics
  • Chemical Production
  • A motor with an adjustable speed drives the rotating tube with a 3° slant.
  • Connections for adding and taking away process gases, such as inert gases
  • Environmental Remediation
  • Energy Production

Advantages of Microwave Pyrolysis Rotary Furnace Oven

  • Increased Efficiency
  • Energy Savings
  • Precise Temperature Control
  • Uniform Heating
  • Reduced Emissions
  • Controlled Atmosphere Operation
  • Automation and Control Systems
  • Compact Design
  • Reduced Maintenance Requirements

Product Catalogue

2023-2024

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