ReactionFlux™ Platform

A Research Platform Designed to Accelerate Scientific Discovery

ReactionFlux™ is a flexible laboratory platform for investigating magnetic-field-assisted reactions, hydrolysis, extraction, synthesis, and material transformation. It provides precise control of magnetic fields and temperature to help researchers explore new processing mechanisms and accelerate innovation.

Typical Applications

· Chemical Reactions — Explore reaction behavior under controlled field-assisted environments.
· Hydrolysis — Investigate efficient hydrolysis pathways and process optimization.
· Biomass Conversion — Support sustainable biomass transformation research.
· Catalytic Reactions — Study reaction enhancement and catalytic performance.
· Functional Ingredient Extraction — Develop advanced extraction technologies for valuable compounds.
· Polymer Modification — Investigate material structure transformation and modification.
· Advanced Materials Research — Explore new materials preparation and processing mechanisms.
· Bioprocess Engineering — Support innovative biological processing research.

Key Features

· Adjustable Magnetic Fields — Precise control of field strength and frequency.
· Induction Heating — Efficient and uniform energy delivery.
· Laboratory Flexibility — Modular design for various experiments.
· Reliable & Repeatable — Stable performance for accurate results.
· Advanced Monitoring — Real-time data acquisition and process tracking.
· Scalable Pathway — Designed for future process scale-up.

How It Works

Controlled Field-Assisted Reaction Environment

ReactionFlux™ combines adjustable magnetic fields with induction heating to create a highly controllable reaction environment. The synergy of electromagnetic fields and thermal energy can influence reaction kinetics, mass transfer, and material behavior.

· Adjustable Magnetic Field: DC–500 mT
· Induction Heating: Up to 250 °C
· Real-time Monitoring: Temperature, Field, Pressure
· Modular Reaction Chamber: Various Volumes

Performance
Specifications

Parameter

Specification

Magnetic Field Strength

0–500 mT (Adjustable)

Frequency

1 Hz–100 kHz

Heating Method

Induction (Non-contact)

Temperature Range

Room Temp-250 °C

Reactor Volume

10–1000 mL (Customizable)

Pressure Range

Up to 10 MPa (Optional)

Control System

Touchscreen / PC Interface

Data Logging

Yes

Key Benefits

Explore New Reaction Mechanisms

Investigate innovative processing pathways enabled by controlled electromagnetic environments.

Improve Reaction Efficiency and Selectivity

Optimize reaction conditions through precise energy management.

Reduce Processing Time and Energy Consumption

Enhance process performance while improving energy utilization.

Highly Repeatable Experimental Conditions

Generate reliable and reproducible research data.

Flexible Configuration for Diverse Research Needs

Adapt the system to different experimental objectives.

Seamless Transition From Lab to Pilot Scale

Support technology development beyond laboratory research.

Related Resources

Explore how field-assisted technologies influence hydrolysis processes.

Application Note: Magnetic Field-Assisted Hydrolysis

Discover emerging opportunities in next-generation processing technologies.

White Paper: The Future of Field-Assisted Processing

Download the complete product guide.

Case Study: Enhancing Extraction Efficiency

Learn how advanced processing approaches improve extraction

Brochure: ReactionFlux™ Platform Overview

Ready to Explore New Processing Possibilities? Our engineering team is here to help you design the right solution for your research.