![]() |
市場調查報告書
商品編碼
1703487
環保(綠色)多元醇市場-全球產業規模、佔有率、趨勢、機會和預測,按類型(聚醚、聚酯)、按最終用戶(家具、汽車、包裝、其他)、按地區和競爭情況分類,2020-2030 年預測Eco-Friendly (Green) Polyols Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, Segmented By Type (Polyether, Polyester), By End User (Furniture, Automotive, Packaging, Others), By Region and Competition, 2020-2030F |
2024 年全球環保(綠色)多元醇市場價值為 44.8 億美元,預計到 2030 年將達到 60.3 億美元,預測期內年複合成長率(CAGR) 為 5.28%。
市場概覽 | |
---|---|
預測期 | 2026-2030 |
2024年市場規模 | 44.8億美元 |
2030年市場規模 | 60.3億美元 |
2025-2030 年複合年成長率 | 5.28% |
成長最快的領域 | 汽車 |
最大的市場 | 北美洲 |
受環保意識增強、監管框架更加嚴格以及對傳統石化多元醇永續替代品的需求不斷成長的推動,該市場正在經歷強勁成長。綠色多元醇來自可再生資源,如天然油(例如大豆、蓖麻和棕櫚)、二氧化碳和再生材料。它們主要用於製造聚氨酯產品。
隨著全球對氣候變遷的擔憂日益加劇,監管機構正在實施嚴格的排放標準並鼓勵使用再生資源。這種轉變促使各產業向生物基多元醇轉型。汽車、建築和消費品等關鍵行業的公司擴大將永續材料融入其營運中,以滿足環境、社會和治理 (ESG) 目標和永續性基準。
汽車產業的擴張
原料供應和成本波動
生物基多元醇技術的進步
Gobal Eco-Friendly (Green) Polyols Market was valued at USD 4.48 billion in 2024 and is projected to reach USD 6.03 billion by 2030, growing at a compound annual growth rate (CAGR) of 5.28% during the forecast period.
Market Overview | |
---|---|
Forecast Period | 2026-2030 |
Market Size 2024 | USD 4.48 Billion |
Market Size 2030 | USD 6.03 Billion |
CAGR 2025-2030 | 5.28% |
Fastest Growing Segment | Automotive |
Largest Market | North America |
This market is experiencing robust growth, fueled by increasing environmental consciousness, stricter regulatory frameworks, and the growing demand for sustainable alternatives to conventional petrochemical-based polyols. Green polyols are derived from renewable sources such as natural oils (e.g., soybean, castor, and palm), carbon dioxide, and recycled materials. They are primarily used in the manufacturing of polyurethane products.
With rising global concerns over climate change, regulatory bodies are implementing stringent emissions standards and encouraging the use of renewable resources. This shift is prompting industries to transition toward bio-based polyols. Companies across key sectors-including automotive, construction, and consumer goods-are increasingly integrating sustainable materials into their operations to meet environmental, social, and governance (ESG) goals and sustainability benchmarks.
Key Market Drivers
Expansion of the Automotive Industry
The ongoing expansion and transformation of the global automotive sector is a significant driver of demand for green polyols. In response to growing regulatory pressure to lower emissions, improve fuel efficiency, and align with global sustainability goals, automotive manufacturers are increasingly incorporating renewable and lightweight materials into vehicle design and production.
According to the European Automobile Manufacturers' Association, global car sales reached 74.6 million units in 2024-a 2.5% increase from the previous year. The EU market grew by 0.8% to 10.6 million units, while North America posted 3.8% growth. Conversely, Japan and South Korea experienced declines of 7% and 5.1%, respectively. China saw a strong recovery in Q4 2024, contributing to nearly 23 million units sold-approximately 31% of global vehicle sales.
Green polyols are extensively used in the production of polyurethane-based automotive components such as seat cushions, headrests, interior trims, and thermal and acoustic insulation. These materials enhance vehicle comfort, performance, and energy efficiency. The accelerated shift toward electric vehicles (EVs) is further boosting demand for sustainable, high-performance, and lightweight materials. Bio-based polyols provide a viable substitute for petroleum-based counterparts, aligning with the industry's push for greener mobility solutions. As EV production scales globally, the adoption of green polyols is expected to rise in tandem.
Key Market Challenges
Raw Material Availability and Cost Volatility
One of the major challenges facing the global green polyols market is the fluctuating availability and pricing of raw materials. Although green polyols are gaining traction due to their environmental benefits and use in a wide range of products-including insulation, coatings, adhesives, and elastomers-their production depends heavily on renewable inputs such as soybeans, castor oil, and corn.
Limited availability of these agricultural feedstocks creates a supply-demand imbalance, driving up the costs of green and bio-based polyols and potentially affecting their price competitiveness. Moreover, the industry's reliance on commercial crops raises concerns about resource allocation between industrial use and food supply, which can further strain availability and impact cost structures.
This dual pressure on supply and pricing poses a significant barrier to the widespread adoption of eco-friendly polyols. Ensuring a stable, scalable supply chain of renewable raw materials is therefore critical for sustaining market growth and maintaining competitiveness.
Key Market Trends
Advancements in Bio-Based Polyol Technologies
Ongoing innovations in bio-based polyol technologies are playing a pivotal role in the market's expansion. Progress in areas such as chemical engineering, biocatalytic processes, and production optimization has significantly improved the performance, scalability, and sustainability of green polyol solutions.
Next-generation bio-based polyols are being developed from a wider range of renewable inputs-including non-edible oils, agricultural residues, carbon dioxide, and lignocellulosic biomass-offering greater flexibility in feedstock sourcing and improving supply chain resilience.
For instance, in October 2024, Mitsubishi Chemical Group announced that its plant-derived polyol, "BioPTMG," has been adopted by Kahei Co., Ltd. for use in bio-synthetic leather applications. Consumer products made with this sustainable material-such as shoulder bags and wet tissue holders-will be marketed through "tonto," the eco-conscious brand of Triple A Co., Ltd. Originally launched in 2021, BioPTMG enhances the strength, flexibility, and durability of polyurethane and polyester materials.
Emerging technologies such as enzymatic polymerization, microbial fermentation, and carbon capture utilization are further supporting the development of greener, low-emission production methods. Simultaneously, breakthroughs in molecular engineering are enabling the design of polyols with customized performance characteristics, such as improved thermal stability, greater durability, and faster curing times. These enhancements make green polyols well-suited for a wide range of high-performance applications in industries including automotive, electronics, and sustainable construction.
In this report, the Global Eco-Friendly (Green) Polyols Market has been segmented into the following categories, in addition to the industry trends which have also been detailed below:
Company Profiles: Detailed analysis of the major companies present in the Global Eco-Friendly (Green) Polyols Market.
Global Eco-Friendly (Green) Polyols Market report with the given market data, Tech Sci Research offers customizations according to a company's specific needs. The following customization options are available for the report: