Polmak Plastik

Polymerization Reactor for PET Recycling

Polymerization Reactor for PET Recycling

GNEUSS Polyreactor JUMP | Polymerization Reactor for PET Recycling GNEUSS Polyreactor JUMP is an advanced liquid-phase polymerization feature that increases polymer viscosity in PET recycling caps and enables the production of rPET with high IV structures.
Polymerization Reactor for PET Recycling
Polymerization Reactor for PET Recycling
Product Descriptions

 

GNEUSS Polyreactor JUMP Technology

GNEUSS Polyreactor JUMP is an advanced polycondensation reactor system used particularly in the recycling of polyester-based polymers. This technology increases the viscosity of recycled PET (Polyethylene Terephthalate) materials, enabling the production of high-performance end products. The Polyreactor JUMP system restructures the molecular structure of the polymer melt, making it possible for recycled raw materials to be reused in high-quality applications.

This reactor technology developed by GNEUSS is optimized especially for PET recycling processes, polyester fiber production, PET film production, and bottle-to-bottle recycling applications. The system performs the polymerization reaction directly in the melt phase, offering a significantly faster and more energy-efficient solution compared to conventional Solid State Polymerization (SSP) systems.

The Polyreactor JUMP system works in integration with GNEUSS extrusion technologies, creating a highly efficient polymerization solution for plastic recycling lines.

 

Operating Principle of Polyreactor JUMP

The Polyreactor JUMP system operates based on the principle of liquid phase polycondensation. In this system, the polymer melt spreads as a thin film over rotating elements inside the reactor. This film is continuously renewed, creating a large surface area.

The process inside the reactor proceeds as follows:

The polymer melt coming from the extruder is transferred into the reactor.

Slowly rotating mixing elements inside the reactor spread the polymer into a thin film layer.

The film surface is continuously renewed, creating a large surface area.

The reactor vessel is maintained under vacuum.

Volatile substances and reaction by-products are removed through the vacuum system.

During this process, ethylene glycol and other volatile compounds are efficiently removed while polymer chains reconnect, increasing the molecular weight.

The following parameters inside the reactor can be adjusted to control polymer properties:

residence time in the reactor

vacuum level

reactor filling ratio

rotation speed of the mixing elements

By controlling these parameters, the desired polymer characteristics can be achieved.

 

Polycondensation Reaction and IV Increase

The main purpose of Polyreactor JUMP technology is to increase polymer viscosity. In PET polymers, viscosity is generally expressed as intrinsic viscosity (IV).

Through the polycondensation reaction occurring in the reactor, polymer chains grow longer and the viscosity value increases. This enables recycled PET materials to be reused in applications requiring high performance.

With the JUMP reactor, the IV value of PET melt can be significantly increased and may reach levels of up to 0.95 dl/g in certain applications.

The system also stabilizes polymer viscosity, ensuring more consistent product quality during production processes.

 

Technical Capacities and Performance Values

GNEUSS Polyreactor JUMP systems are available in different capacity configurations. The system is specifically designed for industrial PET recycling lines.

Typical technical specifications include:

reactor volume: 600 - 5600 liters

processing capacity: 200 - 2000 kg/hour

IV increase: ≤ 0.3 dl/g

These capacity ranges allow the Polyreactor system to be used in both medium-scale production facilities and large industrial recycling plants.

 

JUMP Reactor Design Features

The GNEUSS Polyreactor JUMP system has a special design optimized for modern plastic recycling lines.

Key design features include:

film reactor technology providing a large surface area

high-efficiency vacuum system

closed reactor design preventing oxygen ingress

low thermal stress during polymer processing

easy maintenance and cleaning

Preventing oxygen from entering the reactor minimizes polymer yellowing and improves the quality of the final product.

In addition, the reactor structure is designed to allow easy maintenance and cleaning operations.

 

Alternative to SSP Systems

Polyreactor JUMP technology was developed as an alternative to Solid State Polymerization (SSP) processes commonly used in conventional PET recycling systems.

In SSP systems, the polymer is first pelletized and then reheated to perform solid-state polymerization. This process is relatively long and energy-intensive.

Polyreactor JUMP, however, performs the polymerization reaction directly in the melt phase.

This provides several advantages:

elimination of cooling and reheating steps

significantly shorter process time

reduced energy consumption

lower investment cost

Additionally, the JUMP system offers a more compact plant design and reduces maintenance costs.

 

Integration with Extrusion Systems

The Polyreactor JUMP system is typically integrated into plastic recycling lines downstream of the extrusion system.

A typical system configuration includes:

MRS or MDS extruder

melt filtration system

vacuum degassing system

 

Polyreactor JUMP

pelletizing system or direct production line

After leaving the reactor, the polymer can either be sent directly to the production process or pelletized for storage.

 

Applications of Polyreactor JUMP

Polyreactor technology is primarily used for the recycling of polyester-based polymers.

Main application areas include:

PET bottle recycling

polyester fiber recycling

PET film recycling

thermoform PET recycling

textile polyester recycling

bottle-to-bottle PET production

This system is particularly preferred in applications requiring high IV rPET production.

 

Advantages of Polyreactor Technology

The GNEUSS Polyreactor JUMP system provides several important advantages in plastic recycling processes.

Key benefits include:

production of high IV rPET

rapid polymerization in melt phase

low energy consumption

compact plant design

shorter process time compared to SSP systems

lower operating costs

 

Importance of Polyreactor Technology in Plastic Recycling

Maintaining and increasing polymer viscosity is critical in PET recycling processes to achieve high product quality. Polyreactor JUMP technology strengthens the molecular structure of recycled polymers, enabling the production of high-performance products.

This allows:

recycled PET to be reused in packaging production

production of high-viscosity polyester products

increased economic value of plastic waste

more sustainable manufacturing processes

 

Today, GNEUSS Polyreactor JUMP technology is considered one of the most important process technologies used in modern plastic recycling plants.

 

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