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市場調査レポート
商品コード
1384872
イソブテンの世界市場規模、シェア、産業動向分析レポート:製品別、用途別、地域別展望と予測、2023年~2030年Global Isobutene Market Size, Share & Industry Trends Analysis Report By Product (Methyl tert-butyl ether (MTBE), and Ethyl tert-butyl ether (ETBE)), By Application, By Regional Outlook and Forecast, 2023 - 2030 |
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イソブテンの世界市場規模、シェア、産業動向分析レポート:製品別、用途別、地域別展望と予測、2023年~2030年 |
出版日: 2023年10月31日
発行: KBV Research
ページ情報: 英文 289 Pages
納期: 即納可能
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イソブテン市場規模は、予測期間中にCAGR 4.4%で成長し、2030年には354億米ドルに達すると予測されます。2022年の市場規模は18,952.7キロトンに達し、2.4%の成長を遂げる(2019年~2022年)。
しかし、イソブテンの生産と取り扱いは、有毒化学物質への暴露、火災の危険性、爆発の危険性など、作業員にリスクをもたらす可能性があります。安全基準を遵守し、従業員の健康を確保することは最優先事項です。そのためには、安全対策、訓練、設備に多額の投資を必要とすることが多いです。安全衛生規制への対応は管轄区域によって異なり、複雑でコストがかかります。イソブテン市場の企業は、多くの化学物質の取り扱い、輸送、緊急時対応計画の規則を理解し、遵守しなければならないです。事故や化学物質の放出が発生した場合、イソブテン生産者は強固な緊急対応計画を持たなければならないです。様々な不測の事態に備え、地元当局との効果的なコミュニケーションを確保することが不可欠です。このような評価の準備と、特定されたコンプライアンス違反の問題への対処は、困難な場合があります。いくつかの安全衛生上の懸念があるため、市場の成長は今後数年で低下すると思われます。
製品の展望
製品は、メチルtert-ブチルエーテル(MTBE)とエチルtert-ブチルエーテル(ETBE)に区分されます。エチルtert-ブチルエーテル(ETBE)セグメントは、2022年の市場でかなりの収益シェアを獲得しました。ETBEは主にイソブチレンとエタノールから得られるバイオ燃料です。オクタン価が高く、蒸気圧が低く、沸点が低いため、ガソリンを合成するための理想的な成分です。このため、精製業者はバイオ成分とオクタン価の要件を満たすことができます。また、ナフサを使用することで、環境基準を満たし、ガソリン市場の変化に対応することができます。コンパウンドを使用することで、ナフサをガソリンに改良したり、オクタン価の低いグレードを高いグレードに改良したりすることができます。予測期間中、ETBEの需要は、自動車の性能向上の重要性に対する意識の高まりや、消費者に環境に優しい燃料の使用を義務付ける規制の厳格化など、さまざまな要因による、より高品質なガソリンに対する世界のニーズの高まりによって牽引されると予想されます。
用途別展望
用途別に見ると、市場は自動車、航空宇宙、酸化防止剤、医薬品、その他に細分化されます。2022年には、自動車分野が市場で最も高い収益シェアを占めました。イソブチレン系エラストマーは自動車用途に特化した特性を持っています。この特性には、最小限の気体・液体透過性、耐薬品性、優れた減衰性などが含まれます。これらのエラストマーがハロゲン化されると、熱効果も向上します。イソブチレン-パラ-メチルスチレンと同様に、臭素化イソブチレン-パラ-メチルスチレンには固有の耐オゾン性があります。これらの特性は、ダイナミックコンポーネント、ケーブル、タイヤインナーライナーなどの自動車用途において、この材料に優位性を与えています。さらに、その化学的特性は、自動車燃料のアンチノック剤として広く使用されることに大きく貢献しています。
地域別展望
地域別では、北米、欧州、アジア太平洋、ラテンアメリカ・中東・アフリカで市場を分析しています。2022年には、北米地域が市場で最も高い収益シェアを記録しました。イソブテンは、タイヤ製造など様々な用途に使用されるブチルゴム製造の主要原料です。北米における自動車産業の成長と高品質タイヤの需要が、ブチルゴム、ひいてはイソブテンの必要性を押し上げました。北米がこの産業に大きく貢献しているのは、乗用車や軽自動車への支出が増加していること、1人当たりの可処分所得が増加していること、製造業が近年好調で持続的に成長していることによる。
The Global Isobutene Market size is expected to reach $35.4 billion by 2030, rising at a market growth of 4.4% CAGR during the forecast period. In the year 2022, the market attained a volume of 18,952.7 Kilo Tonnes, experiencing a growth of 2.4% (2019-2022).
Isobutene is a key raw material in producing certain antioxidants, particularly hindered phenols. Thus, the antioxidants segment would acquire 1/4th share of the market by 2030. Hindered phenols are a class of chemical compounds widely used as antioxidants in plastics, rubber, and other polymer materials. In the polymer industry, isobutene-derived antioxidants are added to plastic and rubber formulations to prevent or slow oxidation. This helps prevent the degradation of the material, including color changes, embrittlement, and loss of physical properties, which can occur when these materials are exposed to oxygen, heat, and UV radiation. Isobutene plays a crucial role in developing antioxidants that help preserve the integrity and longevity of a wide range of materials and products, contributing to their durability and performance. Some of the factors impacting the market are increasing technological advances and techniques, growing adoption of renewable isobutene, and growing health and safety regulations.
Technological innovations have led to more efficient methods of isobutene production. These innovations can reduce energy consumption, waste generation, and production costs, making isobutene more economically viable and increasing its availability in the market. Advancements in technology have enabled the use of alternative feedstocks for isobutene production. These feedstocks can include biomass, agricultural residues, and other sustainable sources, reducing the reliance on traditional fossil fuels and contributing to an additional sustainable industry. Developing new catalysts and catalyst systems has improved the selectivity and yield of isobutene in production processes. This results in higher product quality and increased production efficiency. Innovative methods, such as metathesis, have been developing to produce isobutene efficiently. Additionally, Renewable isobutene is typically produced from biomass sources, such as agricultural residues, forestry waste, or dedicated energy crops. This renewable feedstock reduces the environmental impact of traditional isobutene production, which relies on fossil fuels. As sustainability becomes a more prominent concern, the demand for eco-friendly chemicals like renewable isobutene grows. The production of renewable isobutene can result in lower greenhouse gas emissions compared to traditional petrochemical-based isobutene production. The availability of renewable isobutene can open up new markets and applications, especially in industries where sustainable materials are highly valued. It addresses environmental concerns, supports renewable energy sources, and offers a more responsible alternative to traditional petrochemical-based isobutene, contributing to the market's growth and long-term viability.
However, Isobutene production and handling can pose risks to workers, such as exposure to toxic chemicals, fire hazards, and explosion risks. Complying with safety standards and ensuring the well-being of employees is a top priority. This often requires significant investments in safety measures, training, and equipment. Meeting health and safety regulations can vary by jurisdiction and be complex and costly. Companies in the isobutene market must navigate and adhere to many chemical handling, transportation, and emergency response planning rules. In case of accidents or chemical releases, isobutene producers must have robust emergency response plans. Preparing for various contingencies and ensuring effective communication with local authorities is essential. Preparing for these assessments and addressing any identified non-compliance issues can be challenging. Due to several health and safety concerns, the market growth will decline in the coming years.
Product Outlook
On the basis of the product, the market is segmented into methyl tert-butyl ether (MTBE) and ethyl tert-butyl ether (ETBE). The ethyl tert-butyl ether (ETBE) segment acquired a substantial revenue share in the market in 2022. ETBE is a biofuel derived mainly from isobutylene and ethanol. Due to its high-octane content, low pressure of vapor, and low boiling point, it is an ideal component for gasoline combining. This allows refiners to meet bio-component and octane requirements. Its use also enables companies to meet environmental standards and adapt to alterations in the gasoline market. Using compounds, naphtha is upgraded to gasoline, or lower octane grades are improved to higher grades. Over the forecast period, the demand for ETBE is anticipated to be driven by an increasing worldwide need for higher-quality gasoline due to various factors, such as a greater awareness of the importance of vehicle performance enhancement and stricter regulatory mandates requiring consumers to use eco-friendly fuel.
Application Outlook
Based on application, the market is fragmented into automotive, aerospace, antioxidants, pharmaceuticals, and others. In 2022, the automotive segment held the highest revenue share in the market. Isobutylene-based elastomers have properties exclusive to automotive applications. These characteristics include minimal gas and liquid permeability, chemical resistance, and superior damping. When these elastomers are halogenated, their thermal efficacy also improves. Similar to isobutylene-co-para-methylstyrene, brominated isobutylene-co-para-methylstyrene has inherent ozone resistance. These characteristics give the material an advantage in automotive applications, including dynamic components, cables, and tire inner liners. In addition, its chemical properties have contributed significantly to its widespread use as an anti-knock agent in automotive fuel.
Regional Outlook
Region-wise, the market is analyzed across North America, Europe, Asia Pacific, and LAMEA. In 2022, the North America region registered the highest revenue share in the market. Isobutene is a key raw material in the production of butyl rubber, which is used in various applications, including tire manufacturing. The growing automotive industry in North America and the demand for high-quality tires drove the need for butyl rubber and, consequently, isobutene. The vital contribution of North America to this industry is owing to higher spending on passenger cars and light vehicles, increasing per capita disposable income, and strong and sustained manufacturing sector growth in the region in recent years.
The market research report covers the analysis of key stake holders of the market. Key companies profiled in the report include BASF SE, Evonik Industries AG (RAG-Stiftung), Exxon Mobil Corporation, Sumitomo Chemical Co., Ltd., Global Bioenergies, Weifang Binhai Petro-Chem Co., Ltd (Tiande Chemical Holdings Co., LTD), Honeywell International, Inc., LyondellBasell Industries Holdings B.V., Linde PLC, and China Petrochemical Corporation (Sinopec Group).
Strategies Deployed in Isobutene Market
Jul-2023: Sumitomo Chemical Co., Ltd. partnered with Ginkgo Bioworks, an American biotech company. Under this partnership, both companies aimed to allow the mass production of functional chemicals through fermentation.
Jun-2023: Exxon Mobil Corporation partnered with Axens, a French company in the energy and petrochemical sector. This partnership aimed to produce high-quality isobutylene using MTBE Decomposition Technology which would be cost-effective.
Mar-2023: Global Bioenergies introduced Isonaturane 16, a twelve-carbon molecule obtained by assembling three naturally sourced isobutene molecules. This launch aimed to begin to market the new naturally sourced ingredient widely used in cosmetics.
Nov-2022: Global Bioenergies joined hands with Shell, a global group of energy and petrochemical companies. Under this collaboration, both companies aimed to produce high-octane components for the development of low-carbon road fuels.
Apr-2022: BASF partnered with SINOPEC, a Chinese oil and gas enterprise based in Beijing. This partnership aimed to construct a new tert-butyl acrylate plant which would support the growing demand from various industries in the Chinese market.
Mar-2021: BASF joined hands with OMV, an integrated oil, gas, and petrochemical company which is headquartered in Vienna, Austria. Under this collaboration, both companies aimed to launch a codeveloped ISO C4 plant, responsible for producing high-quality isobutene.
Nov-2020: BASF joined hands with Linde plc, a chemical company founded in Germany. Under this collaboration, both companies aimed to provide licensing and engineering and/or bundled services for engineering, procurement, and construction (EPC) for BASF's superior technology allowing the production of HPIB from refinery and steam cracker C4 streams.
Apr-2020: Sumitomo Chemical Co., Ltd. took over the group companies of Nufarm Limited, an Australian agricultural chemical company. This acquisition aimed to achieve further growth in the Sumitomo Chemical Health & Crop Sciences Sector.
By Product (Volume, Kilo Tonnes, USD Million, 2019-2030)
By Application (Volume, Kilo Tonnes, USD Million, 2019-2030)
By Geography (Volume, Kilo Tonnes, USD Million, 2019-2030)
Companies Profiled
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