Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production

Product Details
Customization: Available
After-sales Service: Lifetime Warranty
Warranty: 1Year
Diamond Member Since 2025

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  • Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
  • Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
  • Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
  • Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
  • Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
  • Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
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  • Overview
  • Recommend Products
  • Product Description
  • Our Advantages
  • Why Choose Us
  • Company Profile
  • FAQ
Overview

Basic Info.

Model NO.
SLSR-0021
Type
Reaction Kettle
Material
Stainless Steel
Capacity
Accept Customization
Structure
Single Tube
Pressure
Positive
Agitator Model
Anchor Agitator
Tower Reactor Type
Packed Tower Reactor
Heating
Electric Heating
Heat Transfer Structure
Jacketed
Automatic Grade
Automatic
Condition
New
Weight (Kg)
1000
Power(W)
400W
Voltage
220V/380V
Transport Package
Standard Packaging
Specification
1000L
Trademark
YI NUO
Origin
China
Production Capacity
5000

Product Description

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Product Description
Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
Our Advantages
Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
Why Choose Us
Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
Company Profile
 
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Parameter
Description
Reactor Type
Advanced tubular reactor specifically designed for Fischer-Tropsch synthesis (FTS) processes tailored to produce intermediates for polyester resin production. Features a multi-tubular configuration with integrated heat exchange systems to manage exothermic reactions efficiently.
Application
Production of linear alpha-olefins, fatty alcohols, and other hydrocarbon derivatives via FTS, which serve as key precursors for polyester resin synthesis (e.g., dimethyl terephthalate (DMT), ethylene glycol (EG)). Enables sustainable feedstock utilization by converting syngas (CO + H) from biomass, natural gas, or coal into high-purity chemical intermediates.
Key Technical Features
- Catalyst System: Incorporates advanced cobalt or iron-based catalysts with tailored support materials (e.g., SiO, AlO) to optimize selectivity toward light olefins and oxygenates.- Tubular Design: Thin-walled tubes (10-25 mm diameter) filled with catalyst pellets, allowing precise temperature control (200-280°C) and minimizing hot spots.- Heat Management: Countercurrent cooling with molten salts or high-boiling liquids to recover reaction heat for energy efficiency.- Modular Construction: Scalable design for easy integration into existing polyester production lines.
Operational Parameters
- Temperature: 220-260°C (cobalt-based catalysts) or 240-300°C (iron-based catalysts).- Pressure: 10-30 bar to enhance conversion and suppress methane formation.- Space Velocity: 1,000-3,000 h¹ (gas hourly space velocity, GHSV) for optimal reactant residence time.- Syngas Ratio (H/CO): 2:1 to 3:1, adjusted based on catalyst type and target product (e.g., higher H/CO for alcohol production).
Advantages over Conventional
- Higher Selectivity: Achieves 80-90% selectivity toward C-C hydrocarbons, with adjustable olefin-to-paraffin ratio for polyester precursor synthesis.- Energy Efficiency: Recovers 70-80% of reaction heat for steam generation or preheating, reducing overall plant energy consumption by 15-20%.- Sustainability: Enables carbon capture integration (e.g., using CO from industrial emissions as feedstock) and reduces reliance on petroleum-based raw materials.- Product Purity: Minimizes byproduct formation (e.g., waxes, methane), reducing downstream purification costs.
Industrial Implementation
Successfully deployed in pilot-scale facilities (5-10 kt/year) for polyester intermediate production. Commercial-scale applications (100-500 kt/year) under development by major chemical manufacturers, with projects targeting integration of biomass-derived syngas for "green" polyester production.
Technical Challenges
- Catalyst deactivation due to coking or sintering under long-term operation, requiring periodic regeneration or replacement.- Control of product distribution to match polyester feedstock specifications (e.g., precise carbon chain length distribution for diols/diacids).- High initial investment costs for tubular reactor systems compared to batch or fluidized bed configurations.
Future Developments
Research focuses on: - Novel core-shell catalysts to enhance active site utilization and selectivity.- Membrane-integrated tubular reactors for in-situ product separation.- Digital twin modeling for real-time process optimization and scale-up.
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Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
Advanced Fischer Tropsch Tubular Reactor for Polyester Resin Production
 
FAQ
Q1: Are you a factory or a trading company?
A1: we are the factorywe have the business capabilities of design,manufacturing, trade integration, and independent import and export.
 
Q2: Will there be any guarantee if I buy from you?
A2: We promise to provide a one-year warranty (from the date of delivery) for all products we currently sell.
 
Q3: Do you provide installation guidance or other after-sales service?
A3: Yes, of course. Installation drawings and installation manuals are provided. If you are still unable to assemble, we will arrange for our engineers to help you with voice or video contact.
 
Q4: What are the payment methods and terms you accept?
A4: The payment methods we accept include: T/T, L/C, D/P; after signing the contract, the customer needs to pay 30% of the deposit first, and the remaining 70% of the payment is completed in the delivery money.
 
Q5: What is your delivery time?
A5: We can arrange FOB, CIF shipping methods. Usually, the delivery time for one device is 45 to 50 days, depending on the shipping method.
 
Q6: How do you pack and ship the equipment?
A6: We offer sea, rail or combined transportation. At the same time, we also provide LCL (LCL), Full Container (FCL), Flat Rack (FR), Bulk and Express to ensure that the goods are safe and free from damage.

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