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5L Polymerization Reactor System
5L Polymerization Reactor System
Compatible with PET, PBT, PLA and other systems, it supports the entire process of esterification, polycondensation, and vacuum degassing, with a modular design that allows flexible expansion from 2 L to 50 L. Featuring high‑precision temperature control (±0.5℃), multi‑stage vacuum control, and real‑time viscosity and pressure monitoring, it ensures accurate and reliable reaction data. Compatible with both laboratory and pilot‑scale applications, it accelerates bio‑based and biodegradable polyester R&D, offering customizable experimental setups for high‑viscosity PLA, corrosion‑resistant LCP, and other specialty polymers, thereby speeding up material innovation and process optimization.
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Product Description
Product Overview:
This experimental setup is specially designed for critical process stages such as esterification (transesterification), polycondensation, and vacuum degassing, and it is perfectly suited to a variety of polyester systems including PET, PBT, and PLA. It not only meets the full-chain requirements from basic research to pilot-scale scaling-up, but its modular design also enables flexible configuration.
Core Features:
Flexible volume configuration: The reactor volume can be freely selected between 2 L and 50 L, meeting the needs of different experimental scenarios.
Complete vacuum system: Equipped with an advanced vacuum system that enables multi-stage vacuum control, ensuring the precision of experiments.
Online Monitoring Module: Integrates real‑time viscosity and pressure monitoring, making data collection more convenient and accurate.
High‑precision temperature control: The system features high‑precision temperature control with an accuracy of ±0.5℃, ensuring highly controllable reaction conditions.
Application areas:
The polyester polymerization reactor experimental setup covers the entire research process, from monomer screening to process validation, supporting the innovative development of polyester materials, performance enhancement, and green transformation. Below are some specific application examples:
Development of New Polyester Materials: Such as bio-based polyester and biodegradable polyester.
Improvement of Material Properties: By introducing comonomers, additives, and other components, material performance is enhanced.
Design of Experimental Apparatus for Specific Materials: Such as experimental setups for high‑viscosity polymers like PLA, and experimental setups for corrosion‑resistant polymers like LCP, etc.
- Product Description
- Technical parameters
- Product Details Chart
-
Details
Product Overview:
This experimental setup is specially designed for critical process stages such as esterification (transesterification), polycondensation, and vacuum degassing, and it is perfectly suited to a variety of polyester systems including PET, PBT, and PLA. It not only meets the full-chain requirements from basic research to pilot-scale scaling-up, but its modular design also enables flexible configuration.Core Features:
Flexible volume configuration: The reactor volume can be freely selected between 2 L and 50 L, meeting the needs of different experimental scenarios.
Complete vacuum system: Equipped with an advanced vacuum system that enables multi-stage vacuum control, ensuring the precision of experiments.
Online Monitoring Module: Integrates real‑time viscosity and pressure monitoring, making data collection more convenient and accurate.
High‑precision temperature control: The system features high‑precision temperature control with an accuracy of ±0.5℃, ensuring highly controllable reaction conditions.
Application areas:
The polyester polymerization reactor experimental setup covers the entire research process, from monomer screening to process validation, supporting the innovative development of polyester materials, performance enhancement, and green transformation. Below are some specific application examples:Development of New Polyester Materials: Such as bio-based polyester and biodegradable polyester.
Improvement of Material Properties: By introducing comonomers, additives, and other components, material performance is enhanced.
Design of Experimental Apparatus for Specific Materials: Such as experimental setups for high‑viscosity polymers like PLA, and experimental setups for corrosion‑resistant polymers like LCP, etc.
- Product Description
- Technical parameters
- Product Details Chart
-
Product Overview:
This experimental setup is specially designed for critical process stages such as esterification (transesterification), polycondensation, and vacuum degassing, and it is perfectly suited to a variety of polyester systems including PET, PBT, and PLA. It not only meets the full-chain requirements from basic research to pilot-scale scaling-up, but its modular design also enables flexible configuration.Core Features:
Flexible volume configuration: The reactor volume can be freely selected between 2 L and 50 L, meeting the needs of different experimental scenarios.
Complete vacuum system: Equipped with an advanced vacuum system that enables multi-stage vacuum control, ensuring the precision of experiments.
Online Monitoring Module: Integrates real‑time viscosity and pressure monitoring, making data collection more convenient and accurate.
High‑precision temperature control: The system features high‑precision temperature control with an accuracy of ±0.5℃, ensuring highly controllable reaction conditions.
Application areas:
The polyester polymerization reactor experimental setup covers the entire research process, from monomer screening to process validation, supporting the innovative development of polyester materials, performance enhancement, and green transformation. Below are some specific application examples:Development of New Polyester Materials: Such as bio-based polyester and biodegradable polyester.
Improvement of Material Properties: By introducing comonomers, additives, and other components, material performance is enhanced.
Design of Experimental Apparatus for Specific Materials: Such as experimental setups for high‑viscosity polymers like PLA, and experimental setups for corrosion‑resistant polymers like LCP, etc.
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