• Reactor Systems

Catalytic Reactor Systems for laboratory & Bench-Scale Research

Configurable laboratory and bench-scale reactor systems for catalyst screening, reaction kinetics, fixed-bed testing, process development, and specialized biofuel research.

AMI
AMI
lab

Controlled gas and liquid feeds

Configurable temperature and pressure

Benchtop and custom bench-scale platforms

Overview

What Are Catalytic Reactor Systems?

Catalytic reactor systems are laboratory platforms used to evaluate catalysts and study chemical reactions under controlled operating conditions. A complete system can combine reactant feed control, a heated reactor, pressure regulation, product handling, automation, and integration with analytical equipment, depending on the selected configuration.

For catalyst researchers, the right reactor platform makes it possible to control variables such as gas composition, liquid feed rate, temperature, pressure, catalyst loading, and reaction time while monitoring catalyst activity, selectivity, stability, and process behavior.

AMI Instruments offers reactor platforms ranging from the fully integrated µBenchCAT benchtop reactor system to larger, custom BenchCAT reactor systems and specialized BenchCAT systems for biofuel research.

For technical guidance on choosing a reactor for screening, kinetics, or scale-up, see our lab-scale catalytic reactor selection guide.

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Why It Matters

Why Reactor System Selection Matters

Choosing the right lab-scale reactor system affects the quality, repeatability, and relevance of catalyst testing data. Reactor configuration should match the reaction phase, catalyst quantity, operating range, feed requirements, analytical workflow, and research objective.

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Controlled Reaction Conditions

Precise control of gas and liquid feeds, temperature, and pressure helps researchers compare catalysts under defined operating conditions and reproduce experiments across multiple runs.
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Reliable Catalyst Evaluation

A reactor system designed around the intended experiment supports systematic catalyst screening, reaction kinetics, stability testing, and performance evaluation across different research programs.
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Application-Specific Configuration

Different research programs may require fixed-bed operation, specialized feed systems, product separation, analytical integration, or custom reactor architecture to match specific process requirements.
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Consistent Quality
Control

AMI reactor platforms support compact benchtop studies and larger custom systems, allowing researchers to select suitable platforms based on catalyst quantity, throughput, and requirements.

Industries Served

Applications of Lab-Scale Reactor Systems

AMI catalytic reactor systems support research programs where controlled reaction conditions and reliable catalyst testing are essential.

Catalyst Screening & Evaluation

Compare catalyst formulations under controlled gas or liquid feeds, temperature, pressure, and reaction conditions. The µBenchCAT is designed for catalyst screening, reaction kinetics, stability testing, and performance evaluation.

Reaction Kinetics & Stability Testing

Study catalyst behavior over defined operating conditions and time-on-stream using automated control of key reaction parameters.

Fixed-Bed Catalytic Research

Configure reactor systems for continuous-flow fixed-bed studies used in gas-phase and other heterogeneous catalytic research. For the mathematical framework behind fixed-bed and other ideal reactor models, see our reactor design equations guide.

Hydrogenation & Hydroprocessing Research

BenchCAT custom systems can be engineered for advanced catalytic applications, including hydrogenation and hydroprocessing-related catalyst evaluation.

Reforming & Process Development

AMI reactor systems can be configured for research involving reforming and other process-development studies where feed composition, temperature, pressure, and product handling must be controlled.

Biofuels & Sustainable Fuel R&D

BenchCAT systems have been designed for biofuel research including Fischer-Tropsch-related studies, catalytic conversion of alcohols, and transesterification applications.
Our Instruments

Catalytic Reactor Systems from AMI Instruments

AMI offers configurable reactor platforms for benchtop catalyst testing, larger custom catalytic research, and specialized biofuel process development.

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µBenchCAT

Versatile Benchtop Reactor Systems

● Semi-standardized, configurable reactor system.
● Supports up to six gas feeds and two liquid feeds.
● Operating temperatures up to 1,200 °C and pressures up to 100 bar, depending on the reactor configuration and material.
● Optional dual-reactor configuration for parallel or series operation.

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BenchCAT Reactor Systems

Large Scale and Custom Reactor Systems for Catalysis and Process Development.

● Fully customized configurations for gas feeds, liquid feeds, temperature, and pressure.
● Multichannel systems with up to 16 reactor stations.
● Custom configurations available for temperatures above 1,200 °C and pressures above 100 bar.
● High-temperature, high-pressure, and corrosion-resistant construction options.
● Application-specific engineering for complex catalytic reactions.

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BenchCAT Custom Reactor Systems

Product Catalog of Reactor System

● Designed for larger catalyst volumes and complex experimental applications.
● Customizable for fixed-bed, fluidized-bed, trickle-bed, and other reactor configurations.
● Available with multiple gas and liquid feeds, automated pressure control, separation, and analytical integration.
● Typically configured as a floor-standing system for advanced research and process-development applications.

Compare AMI Reactor Systems

Feature

µBenchCAT

BenchCAT Custom Systems

BenchCATs for Biofuels

Primary fit Benchtop catalyst testing, screening, kinetics, stability Larger catalyst volumes and specialized/custom catalytic research Specialized biofuel and sustainable-fuel research
Platform Fully integrated benchtop system Custom: often larger or specialized system architecture Custom BenchCAT configuration
Gas feeds Up to 6 Defined by system configuration Defined by system configuration
Liquid feeds 0, 1 or 2 Defined by system configuration Defined by system configuration
Temperature Up to 1,200 °C depending on reactor material Defined by custom design Defined by process-specific design
Pressure Up to 100 bar Defined by custom design Defined by process-specific design
Parallel operation Optional Dual configuration Custom / application dependent High-throughput designs up to 16 stations
Fixed-bed research Yes Available Application dependent
Specialized reactor types Primarily configured benchtop catalytic reactor Fixed-bed, fluidized-bed, trickle-bed, slurry and other custom systems Biofuel-process-specific custom systems
Best next step Configure µBenchCAT Discuss custom BenchCAT requirements Discuss biofuel process requirements

*Final operating limits and system capabilities depend on the selected reactor material, feed system, reactor geometry, safety requirements, and custom configuration.*

Methodology

Reactor Configurations & System Capabilities

AMI reactor systems can be configured around the requirements of the experiment. Available capabilities depend on the selected platform and custom design.

Fixed-Bed Reactor Testing

Fixed-bed configurations support continuous-flow catalytic studies in which reactants pass through a packed catalyst bed under controlled operating conditions. AMI offers benchtop and custom fixed-bed options for catalyst testing and process research.

Controlled Gas & Liquid Feeding

The µBenchCAT supports up to six independently controlled gas feeds and up to two liquid feeds. Custom BenchCAT systems can be engineered around process-specific feed requirements.

Temperature & Pressure Control

Reactor temperature and pressure are controlled according to the selected system configuration. The µBenchCAT supports temperatures up to 1,200 °C depending on reactor material and pressures up to 100 bar; custom BenchCAT limits are established for the specific engineered system.

Product Condensation & Phase Separation

Depending on configuration, reactor systems can include downstream condensation, gas/liquid separation, and pressure-control components to manage products after the reactor.

External Analytical Integration

The µBenchCAT can route reactor effluent to an external gas chromatograph or other detector through an optional sampling valve. This enables researchers to connect reaction control with downstream product analysis.

Automation, Parallel Operation & Custom Engineering

The µBenchCAT is automated through a dedicated LabVIEW-based control application, and the optional Dual configuration can operate two stations in parallel or series. BenchCAT systems can be designed for larger, multi-channel, or specialized research workflows.
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Key Benefits

Advantages of AMI Catalytic Reactor Systems

From compact benchtop testing to application-specific custom systems, AMI reactor platforms are designed to give catalyst researchers control over the variables that determine reaction performance.

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Flexible Configuration

Select gas and liquid feeds, reactor materials, operating ranges, separation options, analytical connections, and other system features based on the research application.
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Automated Experimental Control

Automated control of flow, temperature, pressure, valves, and sampling helps reduce manual intervention and supports repeatable experimental procedures.
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Multiple Research Scales

Choose a compact µBenchCAT for integrated benchtop catalytic studies or a BenchCAT platform when the project requires larger catalyst quantities or specialized custom reactor architecture.
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Application-Focused Engineering

AMI reactor systems can be configured for catalyst screening, kinetics, fixed-bed testing, hydrogenation, hydroprocessing, reforming, biofuel research, and other catalytic applications supported by the design.

Why AMI

Why Choose AMI Instruments for Reactor Systems?

AMI combines catalyst-characterization experience with configurable reactor engineering for laboratory and bench-scale research. The reactor portfolio is designed to support different experimental objectives, from compact catalyst screening to custom process-development systems.

Benchtop and custom reactor platforms

Configurable gas and liquid feed systems

Automated temperature, pressure, flow, and valve control

Fixed-bed and specialized custom reactor configurations

External analytical integration options

Dedicated system builders for µBenchCAT and BenchCAT configurations

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Get Started

Configure the Right Reactor System for Your Research

Reactor requirements vary with catalyst type, reaction phase, feed composition, temperature, pressure, catalyst quantity, product handling, and analytical requirements. AMI can help identify the reactor platform and configuration that best fits the experimental objective.

FAQs

Frequently Asked Questions

A catalytic reactor system is a laboratory or process-development platform used to study reactions in the presence of a catalyst under controlled conditions. Depending on the configuration, the system can control gas and liquid feeds, temperature, pressure, reactor conditions, product handling, and analytical sampling.

Lab-scale reactor systems are used for applications such as catalyst screening, reaction kinetics, stability testing, catalyst performance evaluation, process-condition studies, and early-stage process development. The appropriate reactor configuration depends on the reaction phase, catalyst form, operating range, and research objective.

The µBenchCAT is a fully integrated benchtop reactor system intended for catalytic research including screening, kinetics, stability testing, and gas- or liquid-phase reactions. BenchCAT systems are used when the project requires larger catalyst quantities, specialized reactor types, or a custom engineered configuration beyond the standard benchtop platform.

Yes. The µBenchCAT can be configured with up to six independently controlled gas feeds and zero, one, or two liquid feeds. Feed capabilities for custom BenchCAT systems are defined according to the application and system design.

The µBenchCAT is designed for benchtop catalytic research and can be configured for fixed-bed studies. The BenchCAT portfolio also includes fixed-bed reactor systems for projects that require larger catalyst quantities or more specialized configurations.

The µBenchCAT supports a maximum operating temperature up to 1200°C depending on reactor material and a maximum operating pressure up to 100 bar. The appropriate operating range depends on the selected reactor material and system configuration.

The µBenchCAT offers an optional product sampling valve that can route reactor effluent to an external analytical device such as a gas chromatograph or mass spectrometer for downstream product analysis.

AMI offers BenchCAT systems specifically developed for biofuel research. Published AMI examples include systems for Fischer-Tropsch-related processing, catalytic conversion of alcohols, and transesterification of oils or lipids.

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