![]() |
市场调查报告书
商品编码
1761696
全球高纯度异丁烯(HPIB)市场分析Global High Purity Isobutylene Market Study Analysis |
2024年全球高纯度异丁烯 (HPIB) 市场规模约为38亿美元,预计到预测期末将达到约50亿美元,2025年至2036年的复合年增长率为2.4%。丁基橡胶仍然是最大的应用领域,占全球HPIB需求的近一半。未来对合成橡胶和特种化学品等下游领域的投资预计将有助于市场保持稳定的成长轨迹。
全球HPIB产能展望
全球HPIB市场由主要化学品製造商主导,例如埃克森美孚、利安德巴塞尔工业、Enterprise Products Partners、雷普索尔、赢创、朗盛、燕山石化、可乐丽、松原株式会社、Vinati Organics、 BASF 、巴斯夫、住友化学、Petro Rabigh等。这些公司活跃于不同的地区和流程,确保向不同的工业领域提供产品供应。
2024年,全球高纯度异丁烯 (HPIB) 产能约为450万吨。预计到2036年,受橡胶、黏合剂和特种聚合物等产业需求成长的推动,这一产能将超过600万吨。亚太地区在200万吨以上产能中占比最大,其次是北美和欧洲。这三个地区合计约占全球产能的88%。
预计亚太地区将新增产能约100万吨,其中中国、印度、韩国和其他东南亚国家将领衔。北美和西欧将继续作为HPIB的净出口国,年均出口量分别为3万吨和1.5万吨。 2036年之前,这些地区没有大规模产能扩张的计画。
区域需求分析
亚太地区、北美和西欧合计占全球高纯度异丁烯 (HPIB) 消费量的 95% 以上。以中国主导的亚太地区是最大的消费地区,约占全球市场的 51%。预计该地区的复合年增长率将达到 3.0%,到 2036 年将达到 40 亿美元。其余 5% 的需求则来自中欧和东欧、拉丁美洲以及中东和非洲。
需求:依用途
高纯度异丁烯 (HPIB) 的主要用途是生产丁基橡胶,占总需求的 50% 以上。其他主要用途包括高纯度聚异丁烯 (PIB) 和甲基丙烯酸甲酯 (MMA),两者合计占市场份额的 35% 以上。其余需求来自添加剂和抗氧化剂等其他应用。
受汽车、建筑和其他工业领域需求成长的推动,预测期内丁基橡胶和高纯度聚异丁烯(PIB)预计将实现最快成长。这些下游产业的投资也有望推动HPIB的消费。
市场动态
驱动因素:汽车和医疗领域对丁基橡胶的需求不断增长
汽车轮胎和医疗应用对丁基橡胶需求的不断增长是高纯度异丁烯 (HPIB) 市场的关键驱动力。 HPIB 因其优异的抗渗透性和稳定性,是生产丁基橡胶的重要原料。汽车产量的不断增长、轮胎更换週期的不断延长以及合成橡胶在药品瓶盖和防护装备中的应用,都推动了对高品质 HPIB 的需求激增。电动车的普及和医疗基础设施的进步进一步推动了需求成长。这些全球趋势正在推动 HPIB 市场的成长。
限制因素:生产成本高、製造流程复杂
高纯度异丁烯 (HPIB) 市场的主要限制因素之一是高成本和复杂的生产过程。 HPIB 尤其适用于製药和特种化学品,因此需要先进的精製技术才能满足严格的品质标准。这些方法需要消耗大量能源并采用先进的技术,导致资本和营运成本高。此外,在生产和运输过程中保持纯度也带来了物流挑战。这些因素可能会阻碍新进入者,并限制供应扩张,进而影响整体市场的成长。
本报告分析了全球高纯度异丁烯 (HPIB) 市场,并提供了有关市场动态和行业趋势、细分市场需求和製造商概况的资讯。
The global market for High Purity Isobutylene (HPIB) was valued to be worth about USD 3.8 billion in 2024 and it is expected to expand at a CAGR of 2.4% from 2025 to 2036, reaching an estimated value of around USD 5.0 billion by the conclusion of the forecast period. Butyl Rubber continues to be the largest application area, accounting for nearly half of global HPIB demand. With upcoming investments in downstream sectors such as synthetic rubber and specialty chemicals, the market is expected to maintain a steady growth trajectory.
High Purity Isobutylene Production Processes
HPIB is mainly produced through four technologies: MTBE cracking, TBA dehydration, Isobutane dehydrogenation, and cold acid separation. As of 2024, there are over 75 production facilities worldwide. MTBE cracking is the most widely adopted method, contributing more than 50% of total capacity. It is followed by TBA dehydration, with the remaining 35% of capacity attributed to isobutane dehydrogenation and cold acid separation. Major producers using the TBA dehydration method include ExxonMobil, LyondellBasell Industries, BASF, and Songwon Corporation.
In China, the MTBE cracking method dominates, with key producers such as Cenway, Sinostart, CITIC Guoan, Ningbo Haode, Dongying Qifa, Shandong Yuhuang, and others. Plant capacities in the region range from 20 to 60 kilo tons per year.
Global HPIB Capacity Outlook
The global HPIB market is led by major chemical producers such as ExxonMobil, LyondellBasell Industries, Enterprise Products Partners, Repsol, Evonik, Lanxess, Yanshan Petrochemical, Kuraray, Songwon Corporation, Vinati Organics, Reliance, BASF, Sumitomo Chemical, and Petro Rabigh. These companies operate across various regions and processes, ensuring supply to diverse industrial segments.
In 2024, the global High Purity Isobutylene production capacity was around 4,500 kilo tons. This is expected to surpass 6,000 kilo tons by 2036, driven by increasing demand from industries such as rubber, adhesives, and specialty polymers. Asia Pacific holds the largest share, with over 2,000 kilo tons of installed capacity, followed by North America and Europe. Together, these three regions account for around 88% of the global capacity.
Over the forecast period, approximately 1,000 kilo tons of new capacity is expected in Asia Pacific, particularly in China, India, South Korea, and other Southeast Asian countries. North America and Western Europe are expected to remain net exporters of HPIB, averaging 30 and 15 kilo tons in annual net exports respectively. No major new capacity additions are planned in these regions through 2036.
Regional Demand Analysis
Asia Pacific, North America, and Western Europe collectively make up over 95% of global High Purity Isobutylene consumption. Asia Pacific, led by China, is the largest consumer, contributing about 51% to the global market. The region is expected to grow at a CAGR of 3.0%, reaching an estimated USD 4.0 billion by 2036. Other regions, including Central & Eastern Europe, Latin America, and the Middle East & Africa, account for the remaining 5% of demand.
Demand by application
The primary application of High Purity Isobutylene is in the production of Butyl Rubber, which accounts for over 50% of total demand. Other major uses include High Purity Polyisobutylene (PIB) and Methyl Methacrylate (MMA), which together represent over 35% of the market. The remaining demand comes from various applications such as additives and antioxidants.
During the forecast period, Butyl Rubber and High Purity PIB are expected to grow the fastest, supported by rising demand in automotive, construction, and other industrial sectors. Investment in these downstream industries is also expected to push HPIB consumption higher.
India High Purity Isobutylene Market
India's High Purity Isobutylene market was valued at around USD 0.2 billion in 2024 and is projected to reach USD 0.3 billion by 2036, growing at an estimated CAGR of 3.0%. Two major players dominate the domestic production.
Reliance Industries and Vinati Organics are the two leading companies in domestic production, collectively boasting an installed capacity of approximately 230 kilotons per year, utilizing the MTBE cracking process. In India, Butyl Rubber remains the key end-use segment, followed by smaller applications including specialty chemicals like antioxidants and additives.
Market Dynamics
Driver: Growing Demand for Butyl Rubber in Automotive and Healthcare
The rising demand for butyl rubber in automotive tires and medical applications is a key driver for the High Purity Isobutylene (HPIB) market. HPIB is a crucial raw material in the production of butyl rubber due to its exceptional impermeability and stability. With increasing vehicle production, tire replacement cycles, and the use of synthetic rubber in pharmaceutical closures and protective gear, the need for high-quality HPIB has surged. The shift toward electric vehicles and advancements in healthcare infrastructure are further supporting the demand. These trends collectively drive the growth of the HPIB market globally.
Restraint: High Production Costs and Complex Manufacturing Process
One of the main restraints in the High Purity Isobutylene (HPIB) market is the high cost and complexity of its production process. HPIB requires advanced purification techniques to meet stringent quality standards, particularly for use in pharmaceutical and specialty chemical applications. These methods require significant energy and advanced technology, resulting in high capital investment and operating costs. The maintaining purity during production and transport adds logistical challenges. These factors can deter new entrants and limit supply expansion, affecting overall market growth.
Note: Demand-Supply Analysis has been provided for all major Regions / Countries as mentioned below. The demand-supply (consumption) split by applications has been provided for each of the countries/regions in Volume (Kilotons) and Value (USD Million).
Note: CAGR will be calculated for all the applications to arrive at the regional/global demand growth for the forecast period (2025 - 2034)
Note: This section includes company information, company financials, manufacturing bases, and operating regions. Company financials have been mentioned only for those companies where financials were available in SEC Filings, annual reports, or company websites. All the reported financials in this report are in U.S. Dollars. Financials reported in other currencies have been converted using average currency conversion rates. Company profiles may include manufacturers, suppliers, and distributors.