Diploma in Applied LCA and Product Eco-KPIs
About us Diploma in Applied LCA and Product Eco-KPIs
The Diploma in Applied LCA and Product Eco-KPIs explores the life cycle of products and services, integrating Life Cycle Assessment (LCA) with the analysis of Environmental Key Performance Indicators (Eco-KPIs). It focuses on the quantitative evaluation of a product’s environmental impact, from raw material extraction to final disposal, considering aspects such as carbon footprint, water consumption, and energy efficiency. Participants will learn to use LCA software tools and apply methodologies to identify areas for improvement and optimize eco-efficient design. The program focuses on practical application, seeking sustainability in various sectors. The diploma program provides knowledge for the preparation of Environmental Product Declarations (EPDs) and the management of the circular economy. Case studies and real-world examples will be addressed for the development of more sustainable products and services. The training prepares students for professional roles in environmental consulting, sustainable design, and corporate sustainability management, and facilitates data-driven decision-making to reduce environmental impact and comply with current environmental regulations.
Target keywords (natural occurrences in the text): Life Cycle Assessment, Eco-KPIs, carbon footprint, eco-efficient design, sustainability, environmental product declaration, circular economy, environmental impact, sustainability diploma.
Diploma in Applied LCA and Product Eco-KPIs
- Format: Online
- Duration: 8 months
- Hours: 900 H
- Language: ES / EN
- Credits: 60 ECTS
- Registration date: 04-07-2026
- Strat date: 14-08-2026
- Available places: 7
1.390 $
Competencias y resultados
Qué aprenderás
1. Mastery of LCA, Eco-KPIs, and their Strategic Application in the Product Life Cycle
Para quien va dirigido nuestro:
Diploma in Applied LCA and Product Eco-KPIs
9.9 Fundamentals of Life Cycle Assessment (LCA)
9.9 Introduction to Eco-KPIs and their importance
9.3 Identifying key stages in the product life cycle
9.4 Applying LCA to identify environmental impacts
9.5 Defining relevant Eco-KPIs for the product
9.6 Establishing sustainability goals based on LCA and Eco-KPIs
9.7 Case study: Initial life cycle analysis of a specific product
9.8 Interpreting and applying results for decision-making
9.9 Tools and software for LCA and Eco-KPI monitoring
9.9 Reviewing LCA and Eco-KPIs in the context of optimization
9.9 Detailed analysis of the stages with the greatest environmental impact
9.3 Optimization strategies based on LCA: design, materials, processes
9.4 Selecting Eco-KPIs to measure optimization progress
9.5 Designing continuous improvement strategies for the product
9.6 Scenario analysis and simulation Environmental Impacts
9.7 Impact Assessment of Different Materials and Technologies
9.8 Case Study: Optimizing a Specific Product Using LCA and Eco-KPIs
9.9 Developing an Environmental Optimization Plan
3.9 Applying LCA and Eco-KPIs in the Conceptual Design Phase
3.9 Analyzing Design Alternatives and Selecting Materials
3.3 Design for Sustainability: Principles and Practices
3.4 Using LCA to Evaluate the Impact of Different Design Options
3.5 Defining Eco-KPIs for Product Design
3.6 Evaluating Resource Efficiency and Waste Reduction
3.7 Case Study: Evaluating and Optimizing a Product Design
3.8 Integrating LCA and Eco-KPIs into the Design Process
3.9 Tools and Software for Sustainable Design
4.9 Designing an LCA and Eco-KPI Implementation Plan
4.9 Selecting Tools and Methodologies for Implementation
4.3 Collecting and Analyzing Life Cycle Data
4.4 Establishing Eco-KPIs for Monitoring Environmental Performance
4.5 Implementing Strategies to Reduce Environmental Impact
4.6 Monitoring and Tracking Eco-KPI Performance
4.7 Case Study: Implementing LCA and Eco-KPIs in a Company
4.8 Reporting and Communicating Results to Stakeholders
4.9 Continuous Improvement of the Sustainability Process
5.9 Integrating LCA and Eco-KPIs into Life Cycle Assessment
5.9 Analyzing Environmental Impacts Throughout the Life Cycle
5.3 Evaluating Critical Life Cycle Stages
5.4 Using Eco-KPIs to Measure Product Environmental Performance
5.5 Identifying Life Cycle Improvement Opportunities
5.6 Scenario Analysis and Environmental Impact Simulation
5.7 Case Study: Comprehensive Life Cycle Assessment of a Product
5.8 Decision-Making Based on the Integration of LCA and Eco-KPIs
5.9 Tools and Software for Life Cycle Assessment
6.9 Further Exploration Product life cycle analysis
6.9 Identifying and quantifying environmental impacts
6.3 Using LCA to evaluate different scenarios
6.4 Applying Eco-KPIs to measure sustainability performance
6.5 Analyzing the carbon, water, and other impact footprints
6.6 Evaluating the social and economic impact of the life cycle
6.7 Case study: Comprehensive life cycle analysis of a product
6.8 Developing strategies to improve product sustainability
6.9 Communicating results to stakeholders
7.9 Designing an implementation plan for LCA and Eco-KPIs
7.9 Selecting tools and methodologies for implementation
7.3 Collecting and analyzing data for sustainable design
7.4 Establishing Eco-KPIs for product design
7.5 Implementing strategies to reduce environmental impact
7.6 Designing products with a focus on the circular economy
7.7 Case study: Implementing LCA and Eco-KPIs in the Design
7.8 Reporting and Communication of Design Results
7.9 Continuous Improvement of Sustainable Design
8.9 Defining Strategic Sustainability Objectives
8.9 Aligning LCA and Eco-KPIs with Business Objectives
8.3 Using LCA and Eco-KPIs for Strategic Decision-Making
8.4 Analyzing Risks and Opportunities in the Life Cycle
8.5 Developing Strategies for Comprehensive Product Sustainability
8.6 Integrating Sustainability into the Company Culture
8.7 Case Study: Strategic Application of LCA and Eco-KPIs
8.8 Measuring and Monitoring Progress Towards Sustainability Objectives
8.9 Communicating Results to Stakeholders
Proyectos tipo capstones
- Naval Eco-Design: LCA/Eco-KPIs in materials, propulsion, and waste management.
- Life Cycle Assessment: Environmental impact assessment, process optimization, and footprint reduction.
- Naval Sustainability: Implementation of eco-friendly strategies for design and operation.
Admisiones, tasas y becas
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