University certificate
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Introduction to the Program
Esta Postgraduate diploma te llevará a ser capaz de modelar el comportamiento de las pilas de combustible de forma técnica y económica”
La industria petrolífera y de la acería representaban el mercado tradicional de Hidrógeno. No obstante, el desarrollo técnico y tecnológico, así como los avances de la comunidad científica, han llevado a impulsar el uso de este elemento químico en otros sectores como el vidrio o el transporte. Asimismo, los planes y políticas de descarbonización llevados a cabo por gran parte de los países del mundo han convertido al Hidrógeno en un vector energético que facilitará la descarbonización.
Así, para la puesta en marcha de cualquier proyecto en esta línea, el profesional de la Ingeniería debe dominar conceptos qUe se adentran en la normativa reguladora existente, así como las diferentes técnicas de estudio y viabilidad, esenciales para la obtención de financiación y la obtención de resultados óptimos en cualquier compañía. Un conocimiento que TECH ha decidido compilar en este Experto Universitario en Hydrogen Projects, al queel profesional podrá acceder cómodamente, las 24 horas del día, desde cualquier dispositivo electrónico con conexión a internet.
Un programa elaborado por un equipo docente especializado y con una dilatada trayectoria profesional en el sector, tanto en la dirección y gestión de proyectos como en la investigación de los diferentes usos del Hidrógeno. Ello le permitirá al estudiante acceder a la información más destacada y actual sobre las leyes que afectan al Hidrógeno en sus diferentes aplicaciones o el estudio de los riegos y consecuencias para salvaguardar la integridad de las personas, los equipos y el medioambiente.
Además, a través de píldoras multimedia y los casos de estudio práctico podrá ahondar en el estudio de viabilidad de un proyecto, los métodos de obtención de financiación y los indicadores de rentabilidad. Asimismo, gracias al sistema Relearning, basado en la reiteración de contenido, adquirirá un aprendizaje avanzado sin largas horas de memorización y estudio.
Cabe destacar que un prestigioso Director Invitado Internacional impartirá unas intensivas Masterclasses.
Un reconocido Director Invitado Internacional brindará unas exclusivas Masterclasses que te aportarán las claves para liderar Proyectos de Hidrógeno de forma eficiente”
Esta Postgraduate diploma en Hydrogen Projects contiene el programa educativo más completo y actualizado del mercado. Sus características más destacadas son:
- El desarrollo de casos prácticos presentados por expertos en Ingeniería
- Los contenidos gráficos, esquemáticos y eminentemente prácticos con los que está concebido recogen una información técnica y práctica sobre aquellas disciplinas indispensables para el ejercicio profesional
- Los ejercicios prácticos donde realizar el proceso de autoevaluación para mejorar el aprendizaje
- Su especial hincapié en metodologías innovadoras
- Las lecciones teóricas, preguntas al experto, foros de discusión de temas controvertidos y trabajos de reflexión individual
- La disponibilidad de acceso a los contenidos desde cualquier dispositivo fijo o portátil con conexión a internet
Estás a un paso de inscribirte en una titulación que te llevará cómodamente a acceder, las 24 horas del día, al temario más avanzado sobre la creación de negocios basados en el empleo del Hidrógeno”
El programa incluye en su cuadro docente a profesionales del sector que vierten en esta capacitación la experiencia de su trabajo, además de reconocidos especialistas de sociedades de referencia y universidades de prestigio.
Su contenido multimedia, elaborado con la última tecnología educativa, permitirá al profesional un aprendizaje situado y contextual, es decir, un entorno simulado que proporcionará una capacitación inmersiva programada para entrenarse ante situaciones reales.
El diseño de este programa se centra en el Aprendizaje Basado en Problemas, mediante el cual el profesional deberá tratar de resolver las distintas situaciones de práctica profesional que se le planteen a lo largo del curso académico. Para ello, contará con la ayuda de un novedoso sistema de vídeo interactivo realizado por reconocidos expertos.
Tendrás el conocimiento esencial para definir los objetivos y el impacto de cualquier iniciativa enfocada al uso del Hidrógeno como materia prima"
Ahonda a través de este programa online en las estructuras más adecuadas para la financiación de estos proyectos"
Syllabus
TECH provides students taking this degree with the most innovative pedagogical tools (video summaries of each topic, detailed videos, diagrams, specialized readings and case studies), which will lead them in a much more dynamic way to delve into the current energy market, as well as all the elements and factors that are essential in the process of planning, management and development of any Hydrogen Projects. Likewise, thanks to the Relearning system, the graduate will be able to reduce the hours of study and memorization so characteristic of other teaching methods.
A theoretical and practical syllabus that will bring you closer to the reality of the current Hydrogen market and its impact on the global energy system"
Module 1. Hydrogen Markets
1.1. Energy Markets
1.1.1. Integration of Hydrogen in the Gas Market
1.1.2. Interaction of Hydrogen Price with Fossil Fuels Prices
1.1.3. Interaction of the Hydrogen Price with the Electricity Market Price
1.2. Calculation of LCOHs and Sales Price Bands
1.2.1. Presentation of the Case Study
1.2.2. Development of the Case Study
1.2.3. Resolution
1.3. Global Demand Analysis
1.3.1. Current Hydrogen Demand
1.3.2. Hydrogen Demand Derived from New Uses
1.3.3. Objectives to 2050
1.4. Analysis of Hydrogen Production and Types of Hydrogen
1.4.1. Current Hydrogen Production
1.4.2. Green Hydrogen Production Plans
1.4.3. Impact of Hydrogen Production on the Global Energy System
1.5. International Roadmaps and Plans
1.5.1. Submission of International Plans
1.5.2. Analysis of International Plans
1.5.3. Comparison between Different International Plans
1.6. Green Hydrogen Market Potential
1.6.1. Green Hydrogen into the Natural Gas Grid
1.6.2. Green Hydrogen in Mobility
1.6.3. Green Hydrogen in Industries
1.7. Analysis of Large-Scale Projects in the Deployment Phase: USA, Japan, Europe, China
1.7.1. Project Selection
1.7.2. Analysis of Selected Projects
1.7.3. Conclusions
1.8. Centralization of Production: Countries with Export and Import Potential
1.8.1. Renewable Hydrogen Production Potential
1.8.2. Renewable Hydrogen Import Potential
1.8.3. Transportation of Large Volumes of Hydrogen
1.9. Guarantees of Origin
1.9.1. Need for a System of Guarantees of Origin
1.9.2. CertifHy
1.9.3. Approved Systems of Guarantees of Origin
1:10. Hydrogen Supply Contracts: Offtake Contracts
1.10.1. Importance of Offtake Contracts for Hydrogen Projects
1.10.2. Offtake Contract keys: price, volume and duration
1.10.3. Review of a Standard Contract Structure
Module 2. Explain the System of Guarantees of Origin and the Need For It
2.1. EU Policies
2.1.1. European Hydrogen Strategy
2.1.2. REPowerEU Plan
2.1.3. Hydrogen Roadmaps in Europe
2.2. Incentive Mechanisms for the Deployment of the Hydrogen Economy
2.2.1. Need for Incentive Mechanisms for the Deployment of the Hydrogen Economy
2.2.2. Incentives at European Level
2.2.3. Examples of Incentives in European Countries
2.3. Regulation Applicable to Production and Storage, Use of Hydrogen in Mobility and in the Gas Grid
2.3.1. Applicable Regulation for Production and Storage
2.3.2. Applicable Regulation for the Use of Hydrogen in Mobility
2.3.3. Regulation Applicable for the Use of Hydrogen in the Gas Grid
2.4. Standards and Best Practices in Security Plan La Implementation
2.4.1. Applicable Standards: CEN/CELEC
2.4.2. Good Practices in the Implementation of the Security Plan
2.4.3. Hydrogen Valleys
2.5. Required Project Documentation
2.5.1. Technical Projects
2.5.2. Environmental Documentation
2.5.3. Certification
2.6. European Directives Application Key: PED, ATEX, LVD, MD and EMC
2.6.1. Pressure Equipment Regulations
2.6.2. Explosive Atmosphere Regulations
2.6.3. Chemical Storage Regulations
2.7. International Hazard Identification Standards: HAZID/HAZOP Analysis
2.7.1. Hazard Analysis Methodology
2.7.2. Risk Analysis Requirements
2.7.3. Execution of Risk Analysis
2.8. Plant Safety Level Analysis: SIL Analysis
2.8.1. SIL Analysis Methodology
2.8.2. SIL Analysis Requirements
2.8.3. SIL Analysis Execution
2.9. Certification of Installations and CE Marking
2.9.1. Necessity of Certification and CE Marking
2.9.2. Authorized Certification Agencies
2.9.3. Documentation
2:10. Permits and Approval: Case Study
2.10.1. Technical Projects
2.10.2. Environmental Documentation
2.10.3. Certification
Module 3. Hydrogen Project Planning and Management
3.1. Scope Definition: Project Type
3.1.1. Importance of Good Scope Definition
3.1.2. EDP OR WBS
3.1.3. Scope Management in Project Development
3.2. Characterization of Actors and Entities Interested in Hydrogen Project Management
3.2.1. Necessity of Stakeholder Characterization
3.2.2. Stakeholder Classification
3.2.3. Stakeholder Management
3.3. Most Relevant Project Contracts in the Hydrogen Field
3.3.1. Classification of the Most Relevant Contracts
3.3.2. Contracting Process
3.3.3. Contract Content
3.4. Defining Objectives and Impacts for Projects in the Hydrogen Sector
3.4.1. Objectives
3.4.2. Impacts
3.4.3. Objectives vs. Impacts
3.5. Hydrogen Project Work Plan
3.5.1. Importance of the Work Plan
3.5.2. Elements that Constitute It
3.5.3. Development
3.6. Key Deliverables and Milestones in Hydrogen Sector Projects
3.6.1. Deliverables and Milestones. Definition of Customer Expectations
3.6.2. Deliverables
3.6.3. Milestones
3.7. Project Schedule in Hydrogen Sector Projects
3.7.1. Preliminary Steps
3.7.2. Definition of Activities. Time Window, PM Efforts and Relationship between Stages
3.7.3. Graphic Tools Available
3.8. Identification and Classification of Risks of Hydrogen Sector Projects
3.8.1. Creation of the Project Risk Plan
3.8.2. Risk Analysis
3.8.3. Importance of Project Risk Management
3.9. Analysis of the EPC Phase of a Hydrogen Type Project
3.9.1. Detailed Engineering
3.9.2. Purchasing and Supplies
3.9.3. Construction Phase
3:10. Analysis of the O&M Phase of a Hydrogen Type Project
3.10.1. Development of the Operation and Maintenance Plan
3.10.2. Maintenance Protocols. Importance of Preventive Maintenance
3.10.3. Management of the Operation and Maintenance Plan
Module 4. Technical-Economic and Feasibility Analysis of Hydrogen Projects
4.1. Green Hydrogen Power Supply
4.1.1. The Keys to PPAs (Power Purchase Agreement)
4.1.2. Self-Consumption with Green Hydrogen
4.1.3. Hydrogen production in off-grid configuration (Offgrid)
4.2. Technical and Economic Modeling of Electrolysis Plants
4.2.1. Definition of Production Plant Requirements
4.2.2. CAPEX (Capital Expenditure)
4.2.3. OPEX (Operational Expenditure)
4.3. Technical and Economic Modeling of Storage Facilities according to Formats (GH2, LH2, Green Ammonia, Methanol, LOHC)
4.3.1. Technical Assessment of Different Storage Facilities
4.3.2. Cost Analysis
4.3.3. Selection Criteria
4.4. Technical and Economic Modeling of Hydrogen Transportation, Distribution, and End-Use Assets
4.4.1. Transportation and Distribution Cost Assessment
4.4.2. Technical Limitations of Current Hydrogen Transportation and Distribution Methods
4.4.3. Selection Criteria
4.5. Structuring of Hydrogen Projects. Financing Alternatives
4.5.1. Keys to the Choice of Financing
4.5.2. Private Equity Financing
4.5.3. Public Funding
4.6. Identification and Characterization of Project Revenues and Costs
4.6.1. Revenues
4.6.2. Costs
4.6.3. Joint Assessment
4.7. Calculation of Cash Flows and Project Profitability Indicators (IRR, NPV, others)
4.7.1. Cash Flow
4.7.2. Profitability Indicators
4.7.3. Case Study
4.8. Feasibility Analysis and Scenarios
4.8.1. Scenario Design
4.8.2. Scenario Analysis
4.8.3. Scenario Analysis
4.9. Use Case based on Project Finance
4.9.1. Relevant Figures of the SPV (Special Purpose Vehicle)
4.9.2. Development Process
4.9.3. Conclusions
4:10. Assessment of Barriers to Project Feasibility and Future Prospects
4.10.1. Existing Barriers to Hydrogen Project Feasibility
4.10.2. Assessment of the Current Situation
4.10.3. Future Perspectives
You will be able to deepen in the application regulations and the safety of the installations to successfully contribute to the development of the hydrogen economy"
Postgraduate Diploma in Hydrogen Projects
Hydrogen has become one of the undisputed protagonists in the search for sustainable and energy solutions for the future. At TECH Global University, we present you our postgraduate online classes, the UPostgraduate Diploma in Hydrogen Projects, designed to train professionals capable of leading innovation in engineering and contribute to the development of a greener world. This program gives you the opportunity to acquire specialized knowledge in the production, storage, transportation and application of hydrogen as an energy source. At TECH Global University, we are aware of the importance of being at the forefront of technology and engineering, so we have designed a complete and updated curriculum, ranging from theoretical fundamentals to the practical application of hydrogen projects. Our online classes give you the flexibility to study from anywhere, anytime. Forget about geographical barriers and rigid schedules. Access the program content through our online platform and advance at your own pace, adapting to your personal and professional commitments.
Lead Innovation in Engineering with this postgraduate program
In the Postgraduate Diploma program, you will immerse yourself in the fascinating world of this energy source of the future. You will learn about the different methods of hydrogen production, such as water electrolysis and gas reforming. You will discover how to store and transport hydrogen safely and efficiently, and explore its applications in sectors such as mobility, power generation and the chemical industry. Our goal is to produce highly skilled professionals capable of leading hydrogen projects and contributing to the transition to a more sustainable future. Acquire the necessary skills to design, implement and manage hydrogen projects, and make a difference in the field of engineering and sustainability. Don't miss the opportunity to be part of the hydrogen revolution and boost your career in engineering - enroll now at TECH and be a leader in energy innovation!