Bryan Research & Engineering
SolutionProMax® 7.0

Solution

Sustainable Energy

ProMax stands as the premier simulator for pre- or post- combustion capture processes, facilitating the efficient removal of CO 2 from gas streams.

Sustainable Energy

Carbon Capture and Sequestration (CCS)

ProMax stands as the premier simulator for pre- or post- combustion capture processes, facilitating the efficient removal of CO 2 from gas streams.

We can help you with modelling the following technologies used in CCS:

Amine Sweetening using generic amines, physical solvents, and proprietary solvents

  • CO 2 Compression, dehydration, and injection

  • CO 2 Liquefaction

  • Membrane separation

  • Low temperature distillation

  • SOx removal

  • Hot Potassium Carbonate process

  • And MORE!

Renewable Natural Gas

Model a variety of processes to upgrade biogas to a variety of qualities, including pipeline quality:

  • Pressurized Water Scrubbing

  • Membrane Separation

Fiber Film

  • Acid Gas Removal

Sulfur Removal

  • Amine Treating

  • DEPG

  • Cryogenic Processing

CO 2 Freeze Out

  • Low Temperature Distillation

Renewable Diesel

Enhances to our AutoKinetic Reactors and thermodynamic predictions allows modeling of the complete Renewable Diesel Process!

  • A range of triglycerides and fatty acids

  • HDO reactor with multiple pathways

  • Isomerization Reactor

  • Recycle Gas Treating

  • Product Separation

Blue Hydrogen

ProMax 6.0 is a great choice for simulating the various Blue Hydrogen production options which often include Carbon Capture, Utilization, and Storage (CCUS).

Relevant reacting systems below can be modeled using ProMax:

  • Steam Methane Reforming with Flue Gas CO 2 Capture

  • Autothermal Reforming

  • Pre-reforming

  • Tri-reforming

Green Hydrogen

With ProMax 6.0, BR&E introduces new process blocks for simulating water electrolysis to produce Green Hydrogen:

  • Polymer Electrolyte Membrane (PEM)

  • Alkaline Water Electrolysis (AWE)

  • Solid Oxide Electrolysis (SOE)

Many alternate combinations of properties available for solving the electrolyzer including:

  • Total Power Input

  • Hydrogen Production Target

  • Fraction Inlet H2O Conversion

  • Current Density

  • Area per Cell

  • Cells per Stack

  • Stacks per Facility

  • Upstream Production Facilities

  • Hydrocarbon Accounting

  • Gathering and Compression

  • Flare and Vent Lines

  • GIS Tool

  • Dehydration and Hydrates

  • Acid Gas Removal

  • Environmental Solutions

  • Midstream Hydrocarbon Recovery and Fractionation

  • Pipelines and Transportation

  • Gathering and Compression

  • GIS Tool

  • Environmental Solutions

  • Refining Distillation

  • Crude Preheat Networks

  • Hydroprocessing

  • Delayed Coking

  • Alkylation

  • Crude Characterization

  • Acid Gas Removal

  • Sour Water Stripping

  • Sulfur Recovery

  • Caustic Systems

  • Treating Dehydration / Hydrate Inhibition

  • Sulfur Recovery TGCU

  • Acid Gas Removal

  • Sour Water Stripping

  • Detailed Design Columns

  • Heat Exchangers

  • Separators

  • Piping

  • Control Valves

  • Flow Meters

  • Relief Systems

  • Environmental Solutions Glycol Dehydration Emissions

  • Event-Based Emissions

  • OOOOa Vent Assessment Tool

  • VOC Emissions Permitting and Inventories

  • Methane Emissions

  • Sustainable Energy Carbon Capture and Sequestration

  • Renewable Natural Gas

  • Renewable Diesel

  • Blue Hydrogen

  • Green Hydrogen

  • Data Exchange and Optimization Data Exchange

  • Optimization Tool

Related capabilities

Related training

Related papers