Composition and advantages of high-temperature anaerobic pyrolysis equipment for medical waste

With the increasing demand for medical waste disposal, traditional incineration methods no longer fully meet environmental requirements. More and more hospitals and waste disposal companies are turning to more advanced and environmentally friendly technologies. Medical waste high-temperature anaerobic pyrolysis equipment, as an emerging treatment method, has gradually become an effective solution to solve this problem.

This device decomposes medical waste into harmless substances by pyrolysis in a high-temperature anaerobic environment, avoiding the toxic gases and secondary pollution that may be generated during direct combustion. The core components of the equipment include the feeding system, pyrolysis furnace, gas treatment system, heat recovery system, exhaust gas emission system, and control system, each of which is carefully designed to ensure the efficiency and safety of the treatment process.

Firstly, the feeding system is responsible for safely introducing medical waste into the pyrolysis furnace. After entering the high-temperature furnace, the waste will be decomposed through a pyrolysis process in an anaerobic environment at a temperature of 700 to 900 degrees Celsius. This process not only eliminates harmful substances from garbage, but also effectively reduces the volume of waste. By using high-temperature anaerobic treatment methods, harmful substances such as bacteria, viruses, and toxic chemicals in medical waste that were originally difficult to degrade can be effectively eliminated, ensuring the complete harmlessness of the waste treatment process.

At the same time, the generated hot gas is not wasted. The gas treatment system adopts efficient purification technology to ensure that any residual harmful gases can be removed, thereby ensuring that the gas emitted by the equipment meets strict environmental standards. The heat generated during this process can also be converted into steam or electricity through a heat recovery system, providing energy for the operation of equipment and even further supplying to other demanders, improving energy utilization efficiency.

The solid residue after pyrolysis usually does not contain harmful substances, and the volume of the treated waste residue is relatively small. After appropriate treatment, it can be used for landfill or reuse, reducing the dependence on landfills in traditional waste treatment methods.

In addition, the automation control system of the medical waste high-temperature anaerobic pyrolysis equipment makes the entire processing process safer and more efficient. The equipment monitors key parameters such as temperature and pressure in real-time through modern PLC (Programmable Logic Controller) or DCS (Distributed Control System), ensuring precise control of each link, avoiding human errors, and greatly reducing the need for manual operation.

This high-temperature anaerobic pyrolysis technology not only achieves efficient and harmless treatment of medical waste, but also has strong adaptability to handle various types of medical waste, including infectious, chemical, pharmaceutical and other hazardous waste, truly meeting the diversified treatment needs of medical waste.

Overall, the advantages of high-temperature anaerobic pyrolysis equipment for medical waste lie in its environmental friendliness, high energy utilization efficiency, and high degree of automation, making this technology gradually become the preferred solution for harmless treatment of medical waste. With the popularization of this device, the environmental standards for medical waste treatment are expected to be further improved in the future, making positive contributions to public health and environmental protection.


Yongle Environmental Protection is mainly engaged in the research and development, production and sales of complete sets of technical equipment for organic solid waste disposal and comprehensive utilization. Production and manufacturing, domestic waste treatment equipment, tire pyrolysis equipment, medical waste disposal equipment, hazardous waste disposal equipment, and achieve efficient and comprehensive utilization of resources through independently developed low-temperature anaerobic pyrolysis equipment technology solutions.

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