AspenTech University Sustainability Curriculum
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Last Updated:
10-Sep-2024
Last Updated:
10-Sep-2024
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Article ID:
000099123
Article ID:
000099123
Primary Subject:
Today's dual challenge of meeting the rising demand for resources while delivering on the expectations of a healthier planet requires new levels of efficiency and innovation. Learn how to use AspenTech's solutions to achieve your sustainability goals.
Sustainability Topic
Course Title
Overview
Roles and Pre-requisites
Recommended Certification
Carbon Capture & Storage
SUS-S111: Carbon Capture and Storage using Aspen SKUA
Apply Aspen SKUA advanced capabilities to create a 3D geologic model that you will use to predict the behavior of CO2 storage sites and assess the reservoir storage capacity.
- Geoscientists, Subsurface Engineers
- An understanding of subsurface modeling and Carbon Capture and Storage (CCS)
N/A
SUS-S114: Simulating CO2 Injection using Aspen Tempest MORE
Learn how to build, run and analyze the simulation of carbon dioxide injection into porous rock using Aspen Tempest MORE and Aspen Tempest VIEW.
- Reservoir Engineers, Geoscientists,Subsurface Engineers
- An understanding of Carbon Capture and Storage (CCS) or petroleum production
N/A
SUS-P203: Carbon Capture Process Modeling
Learn how to create rigorous simulation of carbon capture processes with Amine solvent.
- Process Engineers, Sustainability Specialists, Environmental Engineers
- Bachelor Degree in Chemical Engineering
- SUS-P101/EAP101 or prior experience using Aspen Plus
Natural Gas Carbon Capture Process Modeling Certification Exam
SUS-P2031: Direct Air Capture Process Modeling with an Aqueous Absorbent
Direct Air Capture technology is among the most prominent approaches to capture CO2. Users will learn how to build and simulate a Direct Air Capture process with aqueous potassium hydroxide solution.
- Process Engineers, Sustainability Specialists, Environmental Engineers
- Bachelor Degree in Chemical Engineering
Direct Air Capture Process Modeling Certification Exam
SUS-P204: Optimize Acid Gas Scrubber Design in Carbon Capture Processes
Learn how to recapture CO2 using a scrubber. Set up a model using a rigorous, more realistic modeling approach than conventional models to make better predictions for Sustainability calculations.
- Process Engineers, Sustainability Specialists, Environmental Engineers
- Bachelor Degree in Chemical Engineering
- SUS-P101/EAP101 or prior experience using Aspen Plus
Natural Gas Carbon Capture Process Modeling Optimization Certification Exam*
SUS-P300: Fundamental Digital Twin Modeling for Carbon Capture Processes using Aspen Plus
Learn how to use AspenOnline in combination with Aspen Plus to create a digital twin model for Carbon Capture processes.
- Process Engineers, Sustainability Specialists, Environmental Engineers
- Bachelor Degree in Chemical Engineering
- SUS-P101/EAP101 or prior experience using Aspen Plus
N/A
SUS-H300: Fundamental Digital Twin Modeling for Carbon Capture Processes using Aspen HYSYS
Learn how to use AspenOnline in combination with Aspen Plus to create a digital twin model for Carbon Capture processes.
- Process Engineers, Sustainability Specialists, Environmental Engineers
- Bachelor Degree in Chemical Engineering
- SUS-H101/EHY101 or prior experience using Aspen HYSIS
N/A
Carbon Capture & Hydrogen Economy
SUS-P201: Accurately Estimate Chemical Interactions Necessary for Carbon Capture and Hydrogen Processes
End-to-end Carbon Capture processes and hydrogen production processes both involve complex chemical interactions. Learn how to model these chemical interactions through various estimation techniques to achieve more accurate results.
- Process Engineers, Sustainability Specialists, Environmental Engineers
- Bachelor Degree in Chemical Engineering
- SUS-P101/EAP101 or prior experience using Aspen Plus
Natural Gas Carbon Capture Process Modeling Optimization Certification Exam*
SUS-P202 Model Electrolytes for Carbon Capture and Hydrogen Production Processes
Accurate electrolyte chemistry is crucial to model Carbon Capture processes with amine solvent and hydrogen production processes. Learn how to address common challenges when modeling electrolyte chemistry for carbon capture and hydrogen production.
- Process Engineers, Sustainability Specialists, Environmental Engineers
- Bachelor Degree in Chemical Engineering
- SUS-P101/EAP101 or prior experience using Aspen Plus
Natural Gas Carbon Capture Process Modeling Optimization Certification Exam*
Carbon Capture, Emissions Management, & Energy Efficiency
SUS-P101: Analyze Energy Consumption and GHG Emissions for Chemical Processes
Learn how to create process simulations to predict Green House Gas (GHG) emissions and minimize energy usage.
- Process Engineers, Sustainability Specialists, Environmental Engineers
- Bachelor Degree in Chemical Engineering
Learn how to model an electrolysis unit that converts water into hydrogen using potassium hydroxide solution.
SUS-H101: Optimize Energy Usage and Minimize Emissions in Carbon Capture Processes
Learn how to build a carbon capture process model and apply optimization techniques to minimize emissions and energy usage.
- Process Engineers, Sustainability Specialists, Environmental Engineers
- Bachelor Degree in Chemical Engineering
Natural Gas Carbon Capture Process Modeling Optimization Certification Exam
Hydrogen Economy
SUS-P205: Model a Green Hydrogen Production Unit
Learn how to model an electrolysis unit that converts water into hydrogen using potassium hydroxide solution.
- Process Engineers, Sustainability Specialists, Environmental Engineers
- Bachelor Degree in Chemical Engineering
- SUS-P101/EAP101 or prior experience using Aspen Plus
Green Hydrogen Production Modeling Certification Exam
SUS-P2051 Model Solar Cells as a Renewable Energy Source to Produce Green Hydrogen
Learn how to develop solar cell models to power an electrolysis process used in green hydrogen production.
- Process Engineers, Sustainability Specialists, Environmental Engineers
- Bachelor Degree in Chemical Engineering
- SUS-P101/EAP101 or prior experience using Aspen Plus
Green Hydrogen Production Modeling Certification Exam*
SUS-S231 Salt Modeling for Hydrogen Storage using Aspen SeisEarth and Aspen SKUA
Generating an accurate interpretation and model of the subsurface is a crucial step in optimizing hydrogen storage in salt formations. Learn how to interpret and model salt surfaces, create 3D structural models and model properties within a salt intrusion.
- Geophysiscists, Geologists, Geoscientists
- Bachelor Degree in Chemical Engineering
- SEI101 and SKG101 or familiarity with Aspen SeisEarth and Aspen SKUA
N/A
Energy Efficiency
SUS-E102 Optimize Refinery Heat Exchangers Design for Sustainable Operations
In refineries, heat exchangers are among the highest energy consumers. Learn how to accurately design fired heaters, shell and tube, and air-cooled heat exchangers to minimize energy consumption.
- Process Engineers, Sustainability Specialists, Environmental Engineers
- Bachelor Degree in Chemical Engineering
Heat Exchanger Energy Efficiency Certification Exam*
SUS-E201: Improve Energy Efficiency using Heat Recovery
Learn how to optimize distribution of energy and mass flow considering energy savings and capital cost trade off.
- Process Engineers, Sustainability Specialists, Environmental Engineers
- Bachelor Degree in Chemical Engineering
Heat Exchanger Energy Efficiency Certification Exam*
SUS-E101: Accurately Design Rigorous Shell and Tube Heat Exchangers to Maximize Energy Efficiency
Learn how to rigorously size and rate shell and tube heat exchangers which can help optimize heat exchanger designs to improve energy efficiency.
- Process Engineers, Sustainability Specialists, Environmental Engineers
- Bachelor Degree in Chemical Engineering
Heat Exchanger Energy Efficiency Certification Exam
SUS-U101: Optimize Plant Utilities to Reduce Energy Consumption
Learn how to setup plant utilities, such as steam, hot oil, and cooling water to optimize costs and minimize environmental impact of industrial processes, by reducing energy consumption.
- Process Engineers, Sustainability Specialists, Environmental Engineers
- Bachelor Degree in Chemical Engineering
Plant Utilities Optimization Certification Exam
Emissions Management
SUS-R101: Refinery Planning Fundamentals with CO2 Emission Modeling and Analysis
Learn how to build a refinery planning model that covers two main sources of CO2: the FCC unit and the Fuel Gas system. With ongoing focus of refiners to include sustainability objectives into their planning and scheduling models, this can be used as a basis to model CO2 emissions in refinery planning.
- Refinery Planning and Optimization Engineers
- Bachelor Degree in Chemical Engineering, Industrial Engineering, or study of Operations Research/Mathematical Optimization
- Understanding of Refinery Planning
N/A
SUS-H202: Design Safe and Effective Flare Networks for Sustainable and Cost-Effective Operations
Effectively design a flare system while meeting both safety standards in flare operation and sustainability targets in emission monitoring.
- Process Engineers, Process Safety Engineers, Sustainability Specialists, Environmental Engineers
- Bachelor Degree in Chemical Engineering
N/A
Bio-based Feedstocks
SUS-P207: Model Bio-Based Feedstock Processes
Accurately simulate sustainable bio-based feedstock processes using solids modeling techniques.
- Process Engineers, Sustainability Specialists, Environmental Engineers
- Bachelor Degree in Chemical Engineering
N/A
Materials Circularity
SUS-H208: Model Production of Renewable Fuel from Waste Oil
Learn how to model the oxygen removal process to convert waste cooking oil into renewable diesel.
- Process Engineers, Sustainability Specialists, Environmental Engineers
- Bachelor Degree in Chemical Engineering
Material Recycling using Molecular Based Reactor Modeling Certification Exam
Geothermal Energy
SUS-S121: Designing a Closed-Loop Well using Aspen METTE for Geothermal Applications
Learn how to use Aspen METTE to execute a forecasting study for a closed-loop well for geothermal application.
- Reservoir Engineers, Production Engineers, Geoscientists
- Some expertise in the field of geothermal energy
N/A
SUS-S122: Geothermal Simulation using Aspen Tempest MORE
Learn how to build, run, and analyze a geothermal simulation using Aspen Tempest MORE and Aspen Tempest VIEW.
- Reservoir Engineers, Production Engineers, Geoscientists
- Some familiarity modeling thermal energy flow
N/A
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