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SYSTEM EQUIPMENT
Garbage classification system (SRF, RDF)

In promoting the "circular economy," waste is no longer just a disposal burden. Through advanced sorting and processing systems, we can convert high-calorific-value waste such as waste plastics, paper scraps, and fibers into solid recyclable fuel (SRF) or rejected derivative fuel (RDF). These fuels can replace coal and become green energy sources for industrial boilers and cement kilns.
Bottom ash separation system

In the past, bottom ash was mostly regarded as garbage and sent to landfills. However, through advanced bottom ash sorting systems, not only can precious metals be recovered from it, but the residue can also be transformed into "recycled granules" to replace sand and gravel, achieving 100% recycling of resources.
Waste PCB Recycling System

Printed circuit boards (PCBs) are the core of all electronic products, but they also contain harmful substances such as lead and cadmium, as well as precious minerals like gold, silver, and copper. A complete PCB recycling system aims to transform "pollution risks" into "high profits" through sophisticated automated processes, realizing the full value utilization of electronic waste.
Waste Appliance Treatment System

Refrigerators are among the most complex types of household appliance waste. A modern waste refrigerator processing system must complete the removal of harmful gases, separation of insulation materials, and metal recycling in a very short time. This is not only for the sake of profiting from the metals, but also to prevent the leakage of chemicals that could damage the ozone layer.
Waste wire recycling system

In the era of resource recycling, discarded electrical wires are no longer garbage, but rather highly valuable "urban minerals." A waste electrical wire recycling system is an advanced production line specifically designed to process various types of cables and wires. It aims to precisely separate high-value metals (such as copper and aluminum) from the outer plastic layer, achieving highly efficient resource regeneration.
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