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Waste tires are reusable resources. Tire recycling equipment and comprehensive utilization level are some of the important indicators of a country's economic development level. Used tires are piled up in the open as solid waste, affecting the appearance of the city and polluting the environment. How to recycle waste tires efficiently and environmentally is a worldwide problem.
At present, the recycling methods of waste tires mainly include direct utilization, such as tire retreading; processing, and utilization after crushing, such as the production of rubber powder and reclaimed rubber and the utilization of heat; or direct incineration for power generation, pyrolysis, etc. Among them, pyrolysis is a technology that completely cracks waste tires into various usable resources. Pyrolysis of waste tires can obtain high value-added pyrolysis gas, pyrolysis oil, pyrolysis carbon, and steel wire. This is currently a relatively effective method for recycling waste tires and is considered to be one of the most economical and best methods for processing waste tires.
What is tire cracking technology and tire cracking gas?
The pyrolysis reaction of waste tire rubber blocks occurs under the conditions of anaerobic or anaerobic, micro-negative pressure sealing. The cracked oil and gas are fractionated and cooled to obtain fuel oil and a small amount of non-condensable combustible gas-tire cracked gas. After the combustible gas is purified by the desulfurization purification system, the generator can generate electricity. Most of the transmitted power can be connected to the Internet or supplied to equipment, and part of the power is supplied to equipment of the cracking system, thus forming a closed-loop energy supply system. After water cooling and magnetic separation, the solid materials obtained by cracking (carbon black and stainless steel wire) are continuously transferred to the solid-state production, processing and storage workshops.
According to the composition and characteristics of tire pyrolysis gas, engineers select mature models and are equipped with efficient and safe gas working systems to develop a new generation of tire pyrolysis gas generator sets with high safety, reliability, and cost performance.
Adopting a highly integrated skid-mounted integrated design concept, the gas-fired power generation system is organically and centrally designed in one box, which greatly reduces the amount of installation and commissioning of on-site engineering. The machine equipment adopts the modular production and manufacturing design concept, which is a port number for the rapid expansion of the power plant in the future.
Choosing an excellent steam control strategy can maintain accurate air-fuel ratio and flow monitoring, and the power generation of machinery and equipment is more efficient, safer, and more stable!
A variety of active and passive explosion-proof pressure relief safety measures are adopted to greatly reduce the operating risks of the generator set. The pre-lubrication design before the engine starts greatly reduces the start-up wear of the generator set refrigerator, and extends the life and operation stability of the generator set!
The air intake and exhaust system of the cabinet are specially designed to prevent insects such as bees from being sucked into the cabinet and causing injury during operation.