Wind Turbine Decommissioning Services Market to Grow by USD 2.23 Billion (2025-2029) as Lower LCOE Drives Demand, Report with the AI Impact on Market Trends - Technavio

Report on how AI is redefining market landscape - The global wind turbine decommissioning services market size is estimated to grow by USD 2.23 billion from 2025-2029, according to Technavio. The market is estimated to grow at a CAGR of  15.4%  during the forecast period. Significant reductions in LCOE due to reduced capital costs is driving market growth, with a trend towards rise in offshore installations. However, increase in amount of waste generated  poses a challenge. Key market players include A1Wind, Aggreko Plc, Belson Steel and Scrap, Cadeler, Deltares, DEME NV, EOS Engineering and Service Co. Ltd., General Electric Co., Intertek Group Plc, Jack up Barge B.V., NIRAS AS, Oceaneering International Inc., Principle Power Inc., Ramboll Group AS, ReBlade, Secure Energy Services, SgurrEnergy, Wilh. Wilhelmsen Holding ASA, Wind Decom, and Xinjiang Goldwind Science and Technology Co. Ltd..

Technavio has announced its latest market research report titled Global Wind Turbine Decommissioning Services Market 2025-2029

Technavio has announced its latest market research report titled Global Wind Turbine Decommissioning Services Market 2025-2029

Key insights into market evolution with AI-powered analysis. Explore trends, segmentation, and growth drivers- View Free Sample PDF

Wind Turbine Decommissioning Services Market Scope

Report Coverage

Details

Base year

2024

Historic period

2019 - 2023

Forecast period

2025-2029

Growth momentum & CAGR

Accelerate at a CAGR of 15.4%

Market growth 2025-2029

USD 2232 million

Market structure

Fragmented

YoY growth 2022-2023 (%)

14.3

Regional analysis

Europe, North America, APAC, Middle East and Africa, and South America

Performing market contribution

Europe at 35%

Key countries

Germany, US, India, Canada, China, UK, Saudi Arabia, Japan, Denmark, and Brazil

Key companies profiled

A1Wind, Aggreko Plc, Belson Steel and Scrap, Cadeler, Deltares, DEME NV, EOS Engineering and Service Co. Ltd., General Electric Co., Intertek Group Plc, Jack up Barge B.V., NIRAS AS, Oceaneering International Inc., Principle Power Inc., Ramboll Group AS, ReBlade, Secure Energy Services, SgurrEnergy, Wilh. Wilhelmsen Holding ASA, Wind Decom, and Xinjiang Goldwind Science and Technology Co. Ltd.

Market Driver

The Wind Turbine Decommissioning Services market is gaining momentum as the renewable energy sector focuses on sustainable disposal solutions for end-of-life wind turbines. This includes wind farm removal, dismantling, and recycling services. The decommissioning industry is prioritizing cost-effectiveness, efficiency, and safety. Turbine dismantling involves fiberglass recycling, rare-earth magnet recycling, and tower and foundation decommissioning. Decommissioning software and regulations ensure sustainable practices. Onshore wind farms are repowering or retiring turbines, leading to a growing need for disposal and recycling services. Wind energy lifecycle management is crucial for environmental stewardship and regulatory compliance. Decommissioning logistics and waste management are key considerations for decommissioning projects. Decommissioning technology continues to evolve, offering innovative solutions for wind farm disposal and renewable energy recycling. 

The offshore wind market is experiencing significant growth due to regulatory focus on renewable energy and the availability of better wind resources. With advancements in technology, prominent vendors have been constructing large-scale offshore wind farms, such as Borssele 1 and 2 in the Netherlands and Walney Extension in the UK. Their expertise in installation methods, foundation designs, logistics, and digitalization enables higher efficiencies and lower Levelized Cost of Energy (LCOE). Offshore wind farms, located farther from the shore, can harvest more energy than onshore farms, making them a lucrative investment for energy companies. The European offshore wind market is thriving due to these factors, and is expected to continue growing. 

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Market Challenges

  • The renewable energy sector, specifically wind energy, is growing rapidly, but with this growth comes the challenge of wind farm decommissioning. As wind turbines reach the end of their life cycle, disposal becomes a crucial issue. Companies offer dismantling and recycling services for wind turbines and wind farms, ensuring sustainable wind energy practices. Decommissioning involves fiberglass recycling, rare-earth magnet recycling, and foundation and tower removal. Decommissioning software and technology improve cost-effectiveness, efficiency, and safety. Regulations guide the decommissioning industry, prioritizing sustainable methods and waste management. Onshore wind farms face decommissioning challenges, making repowering an alternative option. Ultimately, wind turbine decommissioning is essential for the wind energy lifecycle.
  • Wind turbines consist of various components, including rotors, blades, generators, gearboxes, main shafts, nacelles, and towers. While some components, such as gearboxes and generators, can be easily recycled, managing the dismantled blades poses a significant challenge. Modern wind turbine blades, like the LM 88.4 P by LM Wind Power, are particularly long, measuring 88.4 meters, designed for the Adwens AD 8-180 wind turbine model with a nominal capacity of 8 MW and a rotor diameter of 180 meters. These longer blades generate more power per tower, making them essential in the wind energy industry. However, their size and material composition make their disposal or recycling a complex process. Effective wind turbine decommissioning services are crucial to address this challenge and ensure sustainable disposal or repurposing of these components.

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Segment Overview 

This wind turbine decommissioning services market report extensively covers market segmentation by  

  • Type
    • Large
    • Medium
    • Small
  • Application
    • Onshore
    • Offshore
  • Geography
    • Europe
    • North America
    • APAC
    • Middle East And Africa
    • South America

1.1 Large-  The global wind turbine decommissioning services market is witnessing growth due to the increasing prevalence of larger, more efficient wind turbines. As older, less efficient turbines reach the end of their operational life, they are being replaced with larger units, which range from 2 to 6 megawatts. This trend is driven by the economic feasibility and higher energy output of larger turbines. To accommodate these larger installations, smaller turbines are being decommissioned. For instance, offshore wind energy companies are removing smaller turbines from the North Sea to make way for larger, more powerful units. The expanding wind energy industry internationally is expected to boost the demand for decommissioning services for larger turbines, offering growth opportunities to the market during the forecast period.

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Research Analysis

The Wind Turbine Decommissioning Services Market refers to the business of dismantling, recycling, and disposing of wind power generation equipment at the end of its useful life. As wind power generation continues to grow, the need for decommissioning services becomes increasingly important. A power purchase agreement (PPA) outlines the terms for energy production and sale, but eventually, the wind turbines reach the end of their life cycle. Decommissioning involves the removal of parts and components, some of which may be recycled or reused, while others may be disposed of in an environmentally sustainable manner. The costs of decommissioning can be significant, including installation costs, land use agreements, and regulatory requirements. Solar, geothermal, and other renewable energy sources face similar challenges in their decommissioning processes. Governments and the wind industry are exploring business cases for replacement and investments in new technology to minimize the environmental impact and maximize the recovery of valuable materials. Dismantling and recycling methods are being developed to minimize costs and reduce the impact on ecosystems. Offshore decommissioning presents unique challenges in marine environments, particularly in the recovery of rare-earth magnets and the disposal of large structures. Regulatory requirements and recycling methods are evolving to ensure the wind industry remains a leader in sustainable energy production. The decommissioning process is a critical component of the wind industry's life cycle, ensuring that the benefits of wind power continue even after the turbines have stopped generating energy.

Market Research Overview

The Wind Turbine Decommissioning Services Market refers to the industry dedicated to the disposal, recycling, and dismantling of wind turbines and wind farms at the end of their operational life. Renewable energy disposal is a critical aspect of the wind energy lifecycle, ensuring sustainable and cost-effective decommissioning. Wind farm decommissioning involves the removal of wind turbines, towers, foundations, and other infrastructure. Recycling services play a crucial role in this process, with a focus on fiberglass recycling, rare-earth magnet recycling, and sustainable decommissioning. Decommissioning technology, cost-effectiveness, efficiency, logistics, safety, and regulations are key considerations in this industry. Onshore wind farms, wind turbine retirement, and wind farm repowering are major applications for decommissioning services. Environmental concerns and waste management are also significant factors in the decommissioning process. Decommissioning software and decommissioning and recycling are essential tools to optimize the process and minimize the environmental impact.

Table of Contents:

1 Executive Summary
2 Market Landscape
3 Market Sizing
4 Historic Market Size
5 Five Forces Analysis
6 Market Segmentation

  • Type
    • Large
    • Medium
    • Small
  • Application
    • Onshore
    • Offshore
  • Geography
    • Europe
    • North America
    • APAC
    • Middle East And Africa
    • South America

7 Customer Landscape
8 Geographic Landscape
9 Drivers, Challenges, and Trends
10 Company Landscape
11 Company Analysis
12 Appendix

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