
Life Cycle Assessment Course
Master Life Cycle Assessment from foundational principles to advanced professional practice. This course covers every phase of a rigorous LCA study — goal and scope definition, inventory analysis, impact assessment, and interpretation. Whether you work in sustainability consulting, product development, or corporate environmental strategy, you'll gain the technical skills to conduct credible, ISO-conformant LCA studies.
What you will learn:
This course guides you through the full LCA methodology defined by ISO 14040/44, from life‑cycle thinking to stakeholder communication and organisational LCA programmes. You will learn how to set goals, define system boundaries, compile inventories, and apply impact assessment methods to real products. The curriculum also includes sensitivity and uncertainty analysis, comparative LCA design, and critical review requirements. Additional modules cover social LCA, life‑cycle costing, circular‑economy modelling, and emerging techniques such as dynamic and prospective LCA. By the end you will be able to deliver technically sound LCA studies that support product design, supply‑chain decarbonisation, environmental product declarations, and corporate sustainability reporting.
How you study in practice Life Cycle Assessment Course
How you practise Life Cycle Assessment Course
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your company and its specific needs.
Course content
8 Chapters • 35 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Life Cycle Thinking
Foundations of Life Cycle Thinking
Lesson 1 • International Standards and Governance
Covers the internationally recognised standards that govern LCA methodology and reporting. Ensures students understand compliance expectations before conducting studies.
Lesson 2 • Applications and Use Cases
Surveys real-world contexts where LCA informs decisions in industry, policy, and procurement. Motivates learners by linking methodology to tangible outcomes.
Lesson 3 • What Is Life Cycle Assessment
Defines LCA as a systematic tool for quantifying environmental impacts across a product's full life. Establishes the vocabulary and rationale used throughout the course.
Lesson 4 • The Life Cycle Thinking Framework
Introduces cradle-to-grave thinking and its contrast with single-stage analysis. Connects systems thinking to practical environmental decision-making.
Chapter 2HideHide detailsSee detailsDefining Goal and Scope
Defining Goal and Scope
Lesson 1 • Assumptions, Limitations, and Data Requirements
Identifies how to document assumptions and anticipate data gaps before fieldwork. Transparent documentation strengthens study credibility and peer review outcomes.
Lesson 2 • System Boundary Selection
Guides students through decisions about which life cycle stages and processes to include. Boundary choices directly affect completeness and comparability of results.
Lesson 3 • Articulating the Study Goal
Teaches how to state the intended application, audience, and decision context of an LCA. A clear goal prevents scope creep and guides all subsequent methodological choices.
Lesson 4 • Defining the Functional Unit
Explains how to select and quantify the functional unit as the basis for all comparisons. Correct functional unit selection ensures meaningful and defensible results.
Chapter 3HideHide detailsSee detailsLife Cycle Inventory Analysis
Life Cycle Inventory Analysis
Lesson 1 • Inventory Data Types and Sources
Distinguishes foreground from background data and primary from secondary sources. Understanding data provenance is essential for quality assessment and uncertainty analysis.
Lesson 2 • Allocation Methods
Addresses how to distribute environmental burdens when processes produce multiple outputs. Allocation choices can significantly shift results and must be justified methodologically.
Lesson 3 • Inventory Validation and Completeness
Covers mass balance checks, cross-validation techniques, and gap-filling strategies. Validated inventories reduce errors that propagate into impact assessment results.
Lesson 4 • Process Flow Modeling
Teaches construction of unit process models and their linkage into a product system. Accurate flow modeling is the structural backbone of a reliable inventory.
Lesson 5 • Data Quality Assessment
Introduces pedigree matrices and data quality indicators to evaluate inventory reliability. Rigorous quality assessment supports credible uncertainty and sensitivity analyses.
Chapter 4HideHide detailsSee detailsLife Cycle Impact Assessment
Life Cycle Impact Assessment
Lesson 1 • Selecting and Applying LCIA Methods
Guides selection among established LCIA methods such as ReCiPe, CML, and TRACI. Students practice applying a chosen method to a complete inventory dataset.
Lesson 2 • Climate Change and Energy Impact Categories
Covers global warming potential characterisation factors and cumulative energy demand methods. These are the most commonly reported categories and serve as a practical starting point.
Lesson 3 • Resource Use and Water Impact Categories
Examines mineral resource scarcity, fossil resource depletion, and water consumption methods. Resource categories are increasingly required in product sustainability disclosures.
Lesson 4 • LCIA Framework and Structure
Explains the compulsory and optional elements of the LCIA phase per international standards. Provides the conceptual map students need before applying specific methods.
Lesson 5 • Human Health and Ecosystem Impact Categories
Addresses toxicity, particulate matter, and land use impact categories affecting human and ecological health. Students learn to apply characterisation models for these complex pathways.
Chapter 5HideHide detailsSee detailsInterpretation and Sensitivity Analysis
Interpretation and Sensitivity Analysis
Lesson 1 • Drawing Conclusions and Recommendations
Structures the process of translating quantitative results into clear, scope-consistent conclusions. Students practice formulating recommendations aligned with the original study goal.
Lesson 2 • Uncertainty Analysis
Introduces Monte Carlo simulation and scenario-based approaches to quantify result uncertainty. Uncertainty analysis is compulsory for credible comparative assertions.
Lesson 3 • Hotspot Identification
Teaches contribution analysis to pinpoint processes and flows driving the largest impacts. Hotspot identification directs improvement efforts to where they matter most.
Lesson 4 • Sensitivity Analysis Techniques
Covers one-at-a-time and global sensitivity methods to test how assumptions affect results. Sensitivity analysis reveals which inputs most influence conclusions.
Chapter 6HideHide detailsSee detailsLCA Software and Computational Tools
LCA Software and Computational Tools
Lesson 1 • Automating and Scaling LCA Workflows
Introduces scripting interfaces and batch processing to handle large or repetitive LCA tasks. Automation skills increase efficiency for portfolio-level or comparative studies.
Lesson 2 • Database Integration and Management
Teaches how to import, link, and manage background databases within LCA software. Correct database management ensures inventory accuracy and reproducibility.
Lesson 3 • Building a Model in LCA Software
Walks through creating unit processes, defining flows, and assembling a product system model. Hands-on model building consolidates skills from inventory and impact assessment chapters.
Lesson 4 • Overview of LCA Software Platforms
Surveys major LCA tools including SimaPro, OpenLCA, and GaBi, comparing their features. Informed tool selection prevents workflow inefficiencies in professional practice.
Chapter 7HideHide detailsSee detailsComparative LCA and Benchmarking
Comparative LCA and Benchmarking
Lesson 1 • Critical Review of Comparative Studies
Covers the critical review process required for comparative assertions intended for public disclosure. Students practise both conducting and responding to expert panel reviews.
Lesson 2 • Industry Benchmarking with LCA Data
Shows how to use sector-average datasets and benchmarks to contextualise product performance. Benchmarking translates absolute scores into relative environmental positioning.
Lesson 3 • Multi-Criteria Decision Analysis Integration
Combines LCA results with cost, technical, and social criteria for holistic decision support. MCDA integration prevents single-metric optimisation that ignores trade-offs.
Lesson 4 • Principles of Comparative LCA Design
Establishes methodological requirements for valid comparisons, including functional equivalence. Poorly designed comparisons produce misleading results that undermine credibility.
Chapter 8HideHide detailsSee detailsStrategic LCA for Decision Support
Strategic LCA for Decision Support
Lesson 1 • Supply Chain Decarbonisation with LCA
Applies LCA to identify and prioritise emission reduction opportunities across supplier tiers. Supply chain hotspots often represent the largest leverage points for corporate climate targets.
Lesson 2 • Embedding LCA in Product Development
Shows how to integrate LCA at each stage of the product development process for proactive design. Early integration reduces costly redesign and maximizes environmental improvement potential.
Lesson 3 • Building an Organisational LCA Capability
Addresses staffing, data infrastructure, and governance needed to sustain an internal LCA function. Organisational capability ensures LCA delivers value beyond individual project studies.
Lesson 4 • Communicating LCA Results to Stakeholders
Teaches how to translate technical LCA findings into clear messages for non-expert audiences. Effective communication ensures LCA insights drive real decisions rather than gathering dust.
Lesson 5 • LCA for Environmental Product Declarations
Guides the preparation of third-party verified environmental product declarations using LCA results. EPDs are increasingly required in green procurement and construction specifications.
Your valid completion certificate
This course is for you:
Sustainability consultant: ready to add rigorous LCA methodology to client services.
Product engineer: wanting to evaluate environmental trade-offs during early design stages.
Corporate ESG analyst: tasked with quantifying supply chain environmental impacts credibly.
Environmental science graduate: building technical skills for a professional sustainability career.
Procurement specialist: needing to evaluate supplier environmental claims with confidence.
Policy researcher: seeking a structured method to support evidence-based environmental regulation.
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