Background Introduction
Milk cartons are typically made of composite materials such as paper, plastic, and aluminum foil, all of which have high recycling value.
By recycling used milk cartons, these materials can be reused, thereby saving raw material resources and reducing the demand for new resources.
Recovery Value
Waste milk cartons have significant value in resource reuse. The paper part can be converted into pulp for papermaking. The plastic part can be made into plastic pellets for manufacturing new plastic products. The aluminum foil part can be used to manufacture aluminum foil products or other metal products.
This recycling process not only saves raw materials, reduces energy consumption and pollutant emissions, but also promotes the circular use of resources.
Technological Process
Crushing
Crush the collected waste milk cartons into smaller pieces for subsequent processing.
Cleaning
Clean the broken milk carton fragments to remove surface dirt, residue, etc., ensuring a smooth separation process.
Separation
Paper-plastic separation: Use paper-plastic separation mechanical equipment to separate the paper and plastic parts in the milk carton.
Aluminum-plastic separation: For milk cartons containing aluminum foil, it is necessary to further separate the aluminum foil from the plastic.
Reprocessing
Pulp processing: Process the separated paper parts into pulp, which can be used to produce new paper or paper products.
Plastic granulation: Melt and granulate the separated plastic parts to produce plastic pellets, which can be used to produce new plastic products.
Aluminum foil recycling: Recycle the separated aluminum foil, which can be used to produce aluminum foil products or other metal products.
Advantages of Recycling Machinery
Recycling machinery integrates intelligent technology to achieve efficient recycling of waste materials. Its automated control system supports remote monitoring and dynamic adjustment to ensure stable operation.
The core electrostatic sorting technology accurately separates different materials and produces industrial-grade raw materials that can be directly sold.
The equipment adopts a fully enclosed design and is equipped with a multi-level environmental protection treatment system, achieving zero pollution emissions throughout the process while significantly reducing energy consumption and noise.
Innovative separation technology can efficiently dissociate composite materials, making it suitable for various materials such as aluminum-plastic packaging and electronic waste, with daily processing capacity covering multiple scale requirements.
This system not only significantly improves recycling efficiency and reduces natural resource consumption, but also lowers maintenance costs through modular design. It provides standardized solutions for the circular economy and helps achieve green manufacturing and carbon neutrality goals.
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