Hydrogen Technologies: A Practical Approach
280,00 € 199,00 €
20 Students |
Duration: 40 hours |
Lectures: Available! |
Video: English |
Certificate of Training |
In this course you will learn about....
+ The energy transition and the role of hydrogen in it.
+ The possible uses of hydrogen.
+ The Levelized Cost of Hydrogen.
+ A broad view of the state of development of the multiple hydrogen projects worldwide.
+ Understanding how hydrogen is produced, stored, and transported today, and in the future.
Course access: 4 months
This course has been developed to be completed in 2 months, however, the campus will be open 4 months to give you more time.
Consultation forum
Queries will be channeled via dedicated forums. Our instructors will answer as soon as possible!
Instructor available
A specialist Instructor will be available throughout the entire duration of the course.
Downloadable resources
Case studies, and extra material are downloadable for future reference.
Class videos
The concepts of each lesson are presented in video format.
Lessons included
All the lessons indicated in the CONTENTS tab are included.
Assessment questions
Multiple-choice assessment questions are presented in each lesson to help in the assimilation of fundamental concepts.
Case studies
This is a “hands-on” course. Real (solved) cases are presented to be developed along with the course material.
Certificate of approval
Upon successful completion of the course, a certificate of approval issued by ARVENG will be awarded.
FREQUENTLY ASKED QUESTIONS ABOUT THIS COURSE:
What is pre-registration?
You can pre-register for this course to take advantage of the discounted price. To pre-register, simply add it to the cart and complete the checkout process. Once the course is available you’ll receive an email with instructions on how to access it.
How can I enroll in this course?
To enroll in this course you have to follow the steps below:
- Click on “Add to cart”
- Complete the process using the payment options available.
- You will receive a confirmation email.
- Start training your skills!
Can I register and pay an online course for a 3rd party/more than one person?
To enroll a 3rd party/more than one person you have to follow the steps below:
- Change the number of products of your cart (1 by default):
a. Change the number of products before clicking on “Add to Cart”.
b. Directly on the cart screen, there is a button where you can increase or decrease the amount of products to buy. - State the Name and Surname of the participants in the observations field when completing the purchase.
Are there discounts for groups/companies?
Yes! Contact us indicating your needs and we will find the most convenient alternative for you.
Begin at your convenience, progress at your own time and own pace.
The course follows the “learn by doing” methodology. A series of videos are presented so that the participants can visualize the instructor’s explanations. With this modality, the participant will not only have the explanations as if they were attending class, but will also be able to view them at the time that best suits them. With the help of the study notes for future reference and with the assistance of the instructor, participants will progress gradually progress throughout the course.
Who should attend?
This course is designed for students, technicians, designers, freelancers, and engineers interested in the practical aspects of the value chain of hydrogen.
Previous knowledge of this subject is not required to attend the course.
Training objectives
The objective is to delve into the components of the hydrogen value chain, with a practical vision of the state of development of the different technologies involved.
What to expect?
Comprehend the peremptory energy transition we are in, and the role that hydrogen should play in it.
Understand how hydrogen is produced, stored, and transported today, and in the future. Get a grasp of the unresolved competition among different possible solutions.
Get a realistic view of the possible uses of hydrogen: as a feedstock, in the balance of renewable generation, in transportation (land, sea and air), and in heat generation.
Assimilate the challenge of the decarbonization of hydrogen itself.
Understand the concept of Levelized Cost of Hydrogen. Current and expected values. Impact of incentives.
Obtain a broad view of the state of development of the multiple hydrogen projects worldwide.
CONTENTS AND STRUCTURE OF THE COURSE: 10 HS
Roles of Hydrogen in the Energy Transition
Country Strategies
Exercises and Case Studies
- Assimilation Test
Atomic and molecular hydrogen
Molecules that contain hydrogen
Reactions
Unsaturated organic compounds. Hydrogenation
Gravimetric and volumetric energy density
Higher and Lower Heating Value (HHV, LHV)
Exercises and Case Studies
- Case study: Volumetric analysis
- Assimilation Test
Other hydrogen classifications
Production from hydrocarbons: SMR / Autothermal / Partial Oxidation
Carbon Capture, Usage and Storage (CCS – CCUS)
Electrolysis – introduction
Alternative technologies to produce hydrogen
Exercises and Case Studies
- Assimilation Test
Electrolyzer Technologies
High temperature electrolysis
Anion Exchange Membrane
Alkaline
PEM
Balance of Plant (BOP)
Efficiency
New developments
Exercises and Case Studies
- Case study: PEM Efficiency – water consumption
- Case study: AE Efficiency
- Assimilation Test
Compression
Pressure vessels
Underground storage
Liquid hydrogen (LH2)
Storage in carriers
Ammonia
Methanol
Liquid Organic Hydrogen Carriers (LOHC)
Solid storage
Metal hydrides
Carbon structures
Exercises and Case Studies
- Case study: Volumetric calculation – saline storage
- Assimilation Test
Liquid hydrogen
Ammonia
LOHC
Pipelines
Dedicated hydrogen pipelines (hydroducts)
Repurposing Natural Gas pipelines
Blending
Road transport
Exercises and Case Studies
- Case study: Energy transport capacity of a repurposed pipeline
- Assimilation Test
International codes
ASME B31.12
ASME B31
Code structure
Specificities for H2 – B31.12 vs. B31.3
Hydrogen Pipelines: Prescriptive and Performance-Based Design
Common materials for H2 piping and pipelines
General recommendations for H2 piping systems
Pressure vessels
ASME BPVC sec VIII div 3 KD-10
Exercises and Case Studies
- Assimilation Test
Structure
Types of fuel cells. Advantages and challenges
Efficiency
Applications
Heat + electrical energy
Turbines
Blending and pure hydrogen
Hydrogen combustion challenges
H2 turbines commercial models
Fuel cells vs Turbines
Exercises and Case Studies
- Case study: Efficiency of a fuel cell
- Assimilation Test
Hydrogen to electrical energy
Network balance
Electric energy storage and transportation
Heat production
Combustion
Cogeneration
Exercises and Case Studies
- Assimilation Test
Lightweight transportation
Heavy transportation
Refueling infrastructure
Sea transportation
Actual examples
Competitive fuels
Expected evolution
Air Transport
Current examples
Industry roadmap
SAF. Sustainable Aviation Fuel
Exercises and Case Studies
- Assimilation Test
Ammonia and Methanol |
Ammonia
Properties
Risks
Current uses
Potential uses
Synthesis
Decomposition into nitrogen and hydrogen
Methanol
Properties
Risks
Applications
Bio-methanol / e-Methanol
Exercises and Case Studies
- Assimilation Test
Risks from direct exposure
Leakage risks
Flammability and explosivity
Hydrogen embrittlement
Venting systems
Sensing technologies
Safety regulations related to hydrogen
Exercises and Case Studies
- Assimilation Test
Concept
Typical values
Examples
Levelized Cost of Storage
Levelized Cost of Transportation
Exercises and Case Studies
- Case study: LCOH of a project
- Assimilation Test
EXAMPLE OF A CERTIFICATE ISSUED BY ARVENG:

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280,00 € 199,00 €
20 Students |
Duration: 40 hours |
Lectures: Available! |
Video: English |
Certificate of Training |
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