![]() |
市场调查报告书
商品编码
1987374
己二酸市场规模、份额、趋势和预测:最终产品、应用、最终用户和地区划分,2026-2034年Adipic Acid Market Size, Share, Trends and Forecast by End Product, Application, End User, and Region, 2026-2034 |
||||||
2025年全球己二酸市场规模为69亿美元。展望未来,IMARC集团预测,2026年至2034年间,该市场将以5.03%的复合年增长率成长,到2034年达到107.3亿美元。目前,亚太地区是该市场的主要驱动力,预计2025年将占据40%的市场份额。该地区受益于完善的化学製造基础设施、汽车和纺织业的强劲需求,以及政府为促进工业扩张和聚酰胺生产而采取的支持措施,所有这些因素都推动了己二酸市场份额的成长。
汽车、纺织和电子产业对尼龙66日益增长的需求是己二酸市场的主要驱动力。己二酸是生产聚酰胺66的关键前体,而聚酰胺66广泛用作工程塑料,用于製造轻量化汽车零件、工业纺织品和电子连接器。为满足排放气体严格的排放法规,汽车减重的重要性日益凸显,这进一步加速了尼龙66基材料的应用。此外,聚氨酯产业的蓬勃发展也推动了对己二酸的需求,因为己二酸是家具、隔热材料和鞋类应用领域中柔性及半刚性泡棉材料的关键成分。己二酸作为增塑剂在建筑、医疗和包装等应用领域中柔性聚氯乙烯(PVC)产品中的应用日益广泛,也促进了己二酸市场的成长。
由于多种因素,美国正崛起为己二酸市场的重要区域。其成熟的汽车和航太产业推动了对尼龙66基工程塑胶和纤维的巨大需求,这些材料广泛应用于安全气囊、安全带、轮胎帘布和引擎室零件等领域。根据国际汽车製造商协会(OICA)统计,截至2024年12月,美国汽车产量达到10,562,188辆,整个汽车供应链对尼龙66工程塑胶的需求依然强劲。电动车(EV)的日益普及进一步推动了对己二酸衍生轻质聚合物材料的需求。此外,人们对永续生产实践的日益关注以及生物循环生产过程的发展,也为美国国内己二酸生产商开闢了新的成长途径。
汽车轻量材料需求不断成长
汽车产业对轻量材料日益增长的需求正显着推动全球己二酸的消费。以己二酸为原料生产的尼龙66,凭藉其优异的强度重量比、耐热性和耐久性,正在取代传统金属,应用于发动机罩、进气歧管、散热器端盖和发动机舱结构件等汽车零件中。随着汽车製造商加强减轻车身重量以提高燃油效率并满足严格的碳排放标准,己二酸衍生工程塑胶的应用范围也不断扩大。预计到2024年,全球汽车产量将超过9,250万辆,对尼龙66工程塑胶的强劲需求依然存在。电动车的普及进一步加速了这一趋势,因为更轻的车辆所需的动力更少,从而延长了电池续航里程并降低了整体能耗。此外,尼龙66在安全气囊织物、轮胎加强帘线和煞车零件等领域日益广泛的应用,也有助于提升全球车辆的安全性和性能标准。
人们越来越关注永续生物基生产
对环境永续性的日益关注正在改变己二酸的市场前景和竞争格局。传统的己二酸生产方法是透过环己烷氧化,排放大量一氧化二氮。因此,业内相关人员正在投资替代生产路线,例如使用可再生原料的微生物发酵和生物质衍生化合物的催化转化。欧盟透过其「欧洲绿色交易」设定了2030年将温室气体排放减少至少55%的目标,鼓励整个化学工业的製造商转向生物基和可回收化学产品。采用物料平衡法,利用永续原料生产生物循环尼龙66,正在各大製造商中推广。此外,要求化工厂排放的法规结构正在加速对先进排放技术和更环保的生产管道的投资,使永续性成为长期市场发展的核心驱动力。
聚氨酯和塑化剂的应用范围不断扩大
己二酸在聚氨酯和塑化剂生产的应用日益广泛,推动了其需求量在传统尼龙应用领域之外的显着成长。己二酸衍生的聚酯多元醇是生产柔软性及半刚性聚氨酯泡棉的关键组分,这些泡棉广泛应用于家具缓衝、隔热材料和鞋类製造。建设活动的活性化和消费者在住宅用品方面支出的成长正在推动全球聚氨酯泡棉的消费。此外,己二酸衍生的己二酸酯作为非邻苯二甲酸酯类增塑剂在柔性PVC产品中日益受到关注,这得益于监管政策对传统邻苯二甲酸酯类配方的逐步淘汰。对柔性包装、医用导管、电线绝缘和地板材料等产品需求的成长,也提振了未来几年己二酸的市场前景。
The global adipic acid market size was valued at USD 6.9 Billion in 2025. Looking forward, IMARC Group estimates the market to reach USD 10.73 Billion by 2034, exhibiting a CAGR of 5.03% from 2026-2034. Asia-Pacific currently dominates the market, holding a market share of 40% in 2025. The region benefits from extensive chemical manufacturing infrastructure, robust demand from the automotive and textile industries, and favorable government initiatives promoting industrial expansion and polyamide production, contributing to the adipic acid market share.
The growing demand for nylon 66 across the automotive, textile, and electrical sectors represents a primary driver of the adipic acid market. Adipic acid serves as a critical precursor in the production of polyamide 66, which is widely utilized in engineering plastics for lightweight vehicle components, industrial fibers, and electronic connectors. The increasing emphasis on vehicle weight reduction to meet stringent emission regulations is further accelerating the adoption of nylon 66-based materials. Additionally, the expanding polyurethane industry is propelling demand for adipic acid as a key ingredient in flexible and semi-rigid foams used in furniture, insulation, and footwear applications. The adipic acid market growth is bolstered by the rising consumption of the chemical as a plasticizer component in flexible polyvinyl chloride (PVC) products for construction, healthcare, and packaging applications.
The United States has emerged as a major region in the adipic acid market owing to many factors. The country's well-established automotive and aerospace sectors drive significant demand for nylon 66-based engineering plastics and fibers used in airbags, seat belts, tire cords, and under-hood components. In December 2024, the production of motor vehicles in the United States was recorded at 10,562,188.000 units, according to the International Organization of Motor Vehicle Manufacturers, sustaining strong demand for nylon 66 engineering plastics across the automotive supply chain. The growing adoption of electric vehicles (EVs) is further fueling demand for lightweight polymer materials derived from adipic acid. Moreover, the increasing focus on sustainable manufacturing practices and the development of bio-circular production pathways are creating new growth avenues for adipic acid producers in the country.
Growing Demand for Lightweight Automotive Materials
The escalating demand for lightweight materials in the automotive industry is significantly driving adipic acid consumption globally. Nylon 66, produced using adipic acid, is increasingly replacing traditional metals in vehicle components, such as engine covers, air intake manifolds, radiator end tanks, and structural under-hood parts due to its superior strength-to-weight ratio, thermal resistance, and durability. As automakers intensify efforts to reduce vehicle weight for improved fuel efficiency and compliance with stringent carbon emission standards, the utilization of engineering plastics derived from adipic acid continues to expand. Global car production reached over 92.5 Million units in 2024, sustaining robust demand for nylon 66-based engineering plastics. The transition toward EVs is further amplifying this trend, as lighter vehicles require less energy for propulsion, extending battery range and reducing overall energy consumption. Additionally, the growing adoption of nylon 66 in airbag fabrics, tire reinforcement cords, and brake components is enhancing vehicle safety and performance standards worldwide.
Rising Focus on Sustainable Bio-Based Production
Increasing emphasis on environmental sustainability is transforming the adipic acid market outlook and competitive dynamics. Conventional adipic acid manufacturing through cyclohexane oxidation generates significant nitrous oxide emissions. This has prompted industry participants to invest in alternative production routes, including microbial fermentation using renewable feedstocks and catalytic conversion of biomass-derived compounds. Through the European Green Deal, the European Union has established a target to reduce greenhouse gas emissions by at least 55% by 2030, encouraging manufacturers across the chemical sector to transition towards bio-based and recycled chemical products. The adoption of mass-balance approaches for producing bio-circular nylon 66 from sustainable feedstocks is gaining traction among leading manufacturers. Furthermore, regulatory frameworks mandating lower emissions from chemical plants are accelerating investment in advanced abatement technologies and greener production pathways, positioning sustainability as a core driver of long-term market evolution.
Expanding Polyurethane and Plasticizer Applications
The growing utilization of adipic acid in polyurethane and plasticizer manufacturing is creating significant demand expansion beyond traditional nylon applications. Adipic acid-based polyester polyols are essential components in producing flexible and semi-rigid polyurethane foams widely used in furniture cushioning, insulation materials, and footwear. The escalating construction activity and rising consumer spending on home furnishings are driving polyurethane foam consumption globally. Moreover, adipate esters derived from adipic acid are gaining prominence as non-phthalate plasticizers in flexible PVC products, benefiting from regulatory shifts away from traditional phthalate-based formulations. The increasing demand for flexible packaging materials, medical tubing, wire insulation, and flooring products is reinforcing the adipic acid market forecast over the coming years.
Nylon 66 fibers hold 33% of the market share, serving as the foundational material for a wide range of industrial and consumer textile products. In order to manufacture these fibers, adipic acid and hexamethylenediamine are polycondensed, producing a polymer with remarkable tensile strength, abrasion resistance, and thermal stability. Nylon 66 fibers are mostly used in the automotive sector to make seat belt webbing, tire reinforcing cords, airbag materials, and under-hood textiles that need to withstand high temperatures. In addition to automobiles, nylon 66 fibers are widely utilized in industrial filtration materials, carpeting, clothing, ropes, and conveyor belts. The steady demand from the consumer and industrial sectors guarantees the continuous use of adipic acid through nylon 66 fiber production channels worldwide.
Plasticizers lead the market with a share of 26%. Plasticizers based on adipic acid, especially adipate esters like dioctyl and diisononyl adipate, are crucial ingredients in flexible PVC formulations used in a variety of industrial applications. These plasticizers are preferred over conventional phthalate-based substitutes due to their exceptional resistance to extraction, lower volatility, and better low-temperature performance. Adipate-based formulations are becoming increasingly popular as a result of regulatory changes in regions like Europe and North America, which favor non-phthalate plasticizers. Consumer products, medical tubing, food packaging films, construction floors, and automobile cable insulation are some of the main applications. Consumption of adipic acid-based plasticizers is also being driven by the growing construction sector in emerging economies and the rising need for flexible, environment-friendly packaging materials. Worldwide, this application segment is growing steadily, owing to strict environmental rules that favor safer plasticizer formulas.
Automotive dominates the market, with a share of 32%, spurred by the widespread use of nylon 66 engineered plastics and fibers in the production of automobiles. Lightweight yet robust parts, such as engine covers, radiator end tanks, cylinder head covers, air intake manifolds, fuel system components, and electrical connectors, are made from polyamide 66, which is derived from adipic acid. The use of engineering plastics, in place of conventional metal components, has increased due to the surging need to reduce vehicle weight, in order to increase fuel economy and lower carbon emissions. This trend is further reinforced by the rapid adoption of EVs, which require lightweight materials to enhance battery efficiency and extend driving range. According to the International Energy Agency (IEA), electric car sales exceeded 17 Million globally in 2024, driving substantial demand for lightweight nylon 66 components.
Asia-Pacific, accounting for 40% of the share, enjoys the leading position in the market. The region's dominance is underpinned by the presence of large-scale chemical manufacturing facilities, rapidly growing automotive and textile industries, and substantial government support for industrial expansion. China serves as one of the largest manufacturers and consumers of adipic acid, with a comprehensive production infrastructure spanning the entire nylon 66 value chain from upstream raw materials to downstream polymer processing. India is emerging as a high-growth market, driven by expanding automotive manufacturing, rising textile consumption, and increasing adoption of polyurethane-based products in construction and packaging applications. As per IMARC Group, the India textile market size was valued at USD 152.40 Billion in 2025. Japan and South Korea contribute through advanced engineering plastics production and strong automotive sector demand. The region's competitive cost structure, abundant raw material availability, and favorable trade dynamics continue to reinforce Asia-Pacific's leading position in the market.
NORTH AMERICA ADIPIC ACID MARKET ANALYSIS
North America represents a significant market for adipic acid, supported by a mature chemical manufacturing sector, strong automotive production base, and well-established demand from the nylon 66 and polyurethane industries. The region benefits from the presence of world-scale adipic acid production facilities, particularly in the United States, which house some of the largest integrated nylon 66 value chain operations globally. The automotive industry remains the primary demand driver, with nylon 66 engineering plastics extensively used in manufacturing lightweight structural components, electrical connectors, and under-hood applications. The region's increasing focus on sustainability is also shaping market dynamics, with manufacturers investing in bio-circular and mass-balance production pathways to reduce the carbon footprint of nylon 66 and related products. The polyurethane sector contributes additional demand through applications in furniture cushioning, automotive seating, building insulation, and footwear manufacturing. Furthermore, regulatory developments surrounding emission standards and environmental compliance are encouraging innovation in production technologies and supporting the adoption of greener chemical processes across the adipic acid supply chain in North America.
UNITED STATES ADIPIC ACID MARKET ANALYSIS
The United States represents one of the most established markets for adipic acid, anchored by the presence of world-class production facilities and a diversified downstream industrial base. The country's automotive sector drives substantial demand for nylon 66 engineering plastics used in engine components, structural parts, airbag fabrics, and electrical connectors, supporting sustained adipic acid consumption. The growing EV segment is creating incremental demand for lightweight nylon-based materials to improve energy efficiency and extend driving range. As per IMARC Group, the United States electric car market size was valued at USD 102.6 Billion in 2025, creating incremental demand for lightweight adipic acid-derived polymer materials. The aerospace and defense sectors provide additional consumption channels for high-performance nylon 66 fibers and resins. The food and beverage (F&B) industry also utilizes adipic acid as a regulated food additive for acidulation and flavoring in processed products. The country's robust research and development (R&D) ecosystem is fostering innovation in sustainable production technologies, including bio-based and bio-circular adipic acid manufacturing pathways, positioning the United States as a leader in the transition towards greener chemical production methods.
EUROPE ADIPIC ACID MARKET ANALYSIS
Europe is a significant market for adipic acid, driven by a strong automotive manufacturing base, stringent sustainability regulations, and growing demand for bio-based chemical products. Germany, France, and the United Kingdom are key contributors, with well-established polyamide and polyurethane production infrastructures supporting diversified industrial applications. The European Union's regulatory framework is accelerating the transition towards sustainable and bio-based adipic acid production methods. The automotive industry continues to drive demand for nylon 66 engineering plastics in vehicle lightweighting applications. Additionally, the expanding adoption of non-phthalate adipate-based plasticizers in construction, healthcare, and packaging is creating sustained growth opportunities across the European market. Furthermore, increasing investments in circular economy initiatives and recycling-compatible polymer solutions are reinforcing long-term demand for adipic acid derivatives across multiple end-use sectors.
ASIA-PACIFIC ADIPIC ACID MARKET ANALYSIS
Asia-Pacific leads the global adipic acid market, driven by the region's rapidly expanding automotive and textile sectors, extensive chemical manufacturing capabilities, and favorable government industrial policies. China is among the top producers and consumers, featuring an extensive manufacturing infrastructure that encompasses the entire polyamide value chain. As of November 2024, China's production of new energy vehicles (NEVs) exceeded 10 Million units for the first time in 2024, according to CAAM, driving substantial demand for lightweight nylon 66 automotive components derived from adipic acid. Additionally, strong growth in textile manufacturing and rising consumption of synthetic fibers for apparel and industrial applications are among the major adipic acid market trends across the Asia-Pacific region.
LATIN AMERICA ADIPIC ACID MARKET ANALYSIS
Latin America represents a growing market for adipic acid, supported by expanding automotive manufacturing, construction activity, and increasing adoption of polyamide-based industrial products. Brazil and Mexico serve as the primary demand centers, driven by their established automotive production bases and growing textile sector. The packaging industry is emerging as a supplementary demand driver, with rising consumption of flexible PVC products and polyurethane materials. Government infrastructure development programs are further supporting steady consumption growth across the region.
MIDDLE EAST AND AFRICA ADIPIC ACID MARKET ANALYSIS
The Middle East and Africa region represents an emerging market for adipic acid, driven by increasing industrialization, growing construction activity, and expanding manufacturing sectors. The UAE and South Africa serve as the primary demand hubs, supported by infrastructure development projects and rising adoption of polymer-based construction materials. For instance, the total value of construction contracts awarded in the UAE increased by 14% year-on-year in 2024, totaling USD 121 Billion, driving demand for polyurethane-based insulation materials and polymer-based construction products derived from adipic acid. The automotive sector is contributing incremental demand as vehicle assembly operations expand across the region.
The global adipic acid market features a consolidated competitive landscape, with leading manufacturers investing in capacity optimization, sustainable production methods, and strategic asset realignment. Key industry participants are focusing on backward integration across the nylon 66 value chain to ensure supply reliability and cost efficiency. Several producers have shifted production from high-cost European sites to more competitive facilities in Asia-Pacific, reflecting broader trends in global chemical manufacturing. The pursuit of bio-based adipic acid through fermentation and catalytic pathways is emerging as a critical competitive differentiator. Major players are committing resources to reduce greenhouse gas emissions, particularly nitrous oxide, and align with evolving environmental regulations, while exploring strategic partnerships and acquisitions to strengthen their market positions. These strategies are collectively enhancing operational resilience and reinforcing long-term competitiveness in the global adipic acid market.