1 エグゼクティブ・サマリー
2 序文
2.1 概要
2.2 ステークホルダー
2.3 調査範囲
2.4 調査方法
2.4.1 データマイニング
2.4.2 データ分析
2.4.3 データの検証
2.4.4 リサーチアプローチ
2.5 リサーチソース
2.5.1 一次調査ソース
2.5.2 セカンダリーリサーチソース
2.5.3 前提条件
3 市場動向分析
3.1 はじめに
3.2 推進要因
3.3 抑制要因
3.4 機会
3.5 脅威
3.6 技術分析
3.7 アプリケーション分析
3.8 エンドユーザー分析
3.9 新興市場
3.10 Covid-19の影響
4 ポーターズファイブフォース分析
4.1 供給者の交渉力
4.2 買い手の交渉力
4.3 代替品の脅威
4.4 新規参入の脅威
4.5 競争上のライバル関係
5 化学触媒の世界市場、種類別
5.1 はじめに
5.2 不均一系触媒
5.3 均一系触媒
5.4 バイオ触媒
5.5 その他のタイプ
6 化学触媒の世界市場、原料別
6.1 はじめに
6.2 金属
6.3 ゼオライト
6.4 化合物
6.5 その他の原材料
7 化学触媒の世界市場、技術別
7.1 はじめに
7.2 触媒コンバーター技術
7.3 流動接触分解(FCC)技術
7.4 電気触媒
7.5 その他の技術
8 化学触媒の世界市場、用途別
8.1 導入
8.2 ハイドロプロセシング
8.3 触媒改質
8.4 アンモニア製造・アンモニア生産
8.5 水処理・空気浄化
8.6 酵素触媒
8.7 ポリエステル・ナイロン製造
8.8 染料・顔料合成
8.9 その他の用途
9 化学触媒の世界市場、エンドユーザー別
9.1 はじめに
9.2 化学産業
9.3 石油・ガス
9.4 自動車
9.5 医薬品
9.6 食品・飲料
9.7 エネルギー・電力
9.8 繊維
9.9 その他のエンドユーザー
10 化学触媒の世界市場、地域別
10.1 はじめに
10.2 北アメリカ
10.2.1 アメリカ
10.2.2 カナダ
10.2.3 メキシコ
10.3 ヨーロッパ
10.3.1 ドイツ
10.3.2 イギリス
10.3.3 イタリア
10.3.4 フランス
10.3.5 スペイン
10.3.6 その他のヨーロッパ
10.4 アジア太平洋
10.4.1 日本
10.4.2 中国
10.4.3 インド
10.4.4 オーストラリア
10.4.5 ニュージーランド
10.4.6 韓国
10.4.7 その他のアジア太平洋地域
10.5 南アメリカ
10.5.1 アルゼンチン
10.5.2 ブラジル
10.5.3 チリ
10.5.4 その他の南アメリカ地域
10.6 中東/アフリカ
10.6.1 サウジアラビア
10.6.2 アラブ首長国連邦
10.6.3 カタール
10.6.4 南アフリカ
10.6.5 その他の中東/アフリカ地域
11 主要開発
11.1 契約、パートナーシップ、提携、合弁事業
11.2 買収と合併
11.3 新製品上市
11.4 事業拡大
11.5 その他の主要戦略
12 企業プロフィール
12.1 BASF SE
12.2 Albemarle Corporation
12.3 Arkema SA
12.4 Chevron Phillips Chemical Company LLC
12.5 Clariant AG
12.6 DuPont de Nemours, Inc.
12.7 Evonik Industries AG
12.8 ExxonMobil Corporation
12.9 Haldor Topsoe A/S
12.10 Honeywell
12.11 INEOS
12.12 Johnson Matthey PLC
12.13 LyondellBasell Industries N.V.
12.14 Royal Dutch Shell PLC
12.15 Sinopec Catalyst Company
12.16 The Dow Chemical Company
12.17 W. R. Grace & Co.
表一覧
表1 化学触媒の世界市場展望、地域別 (2022-2030) ($MN)
表2 化学触媒の世界市場展望、種類別(2022-2030年) ($MN)
表3 化学触媒の世界市場展望、不均一系触媒別 (2022-2030) ($MN)
表4 化学触媒の世界市場展望、均一系触媒別 (2022-2030) ($MN)
表5 化学触媒の世界市場展望、生物触媒別 (2022-2030) ($MN)
表6 化学触媒の世界市場展望、その他の種類別 (2022-2030) ($MN)
表7 化学触媒の世界市場展望、原材料別 (2022-2030) ($MN)
表8 化学触媒の世界市場展望、金属別 (2022-2030) ($MN)
表9 化学触媒の世界市場展望、ゼオライト別 (2022-2030) ($MN)
表10 化学触媒の世界市場展望、化学化合物別 (2022-2030) ($MN)
表11 化学触媒の世界市場展望、その他の原料別 (2022-2030) ($MN)
表12 化学触媒の世界市場展望、技術別 (2022-2030) ($MN)
表13 化学触媒の世界市場展望、触媒コンバーター技術別 (2022-2030) ($MN)
表14 化学触媒の世界市場展望、流動接触分解(FCC)技術別 (2022-2030) ($MN)
表15 化学触媒の世界市場展望、電極触媒別 (2022-2030) ($MN)
表16 化学触媒の世界市場展望、その他の技術別 (2022-2030) ($MN)
表17 化学触媒の世界市場展望、用途別 (2022-2030) ($MN)
表18 化学触媒の世界市場展望、ハイドロプロセス別 (2022-2030) ($MN)
表19 化学触媒の世界市場展望、触媒改質別 (2022-2030) ($MN)
表20 化学触媒の世界市場展望、アンモニア製造・アンモニア生産別 (2022-2030) ($MN)
表21 化学触媒の世界市場展望、水処理・空気浄化別 (2022-2030) ($MN)
表22 化学触媒の世界市場展望、酵素触媒別 (2022-2030) ($MN)
表23 化学触媒の世界市場展望、ポリエステル・ナイロン生産別 (2022-2030) ($MN)
表24 化学触媒の世界市場展望、染料・顔料合成別 (2022-2030) ($MN)
表25 化学触媒の世界市場展望、その他の用途別 (2022-2030) ($MN)
表26 化学触媒の世界市場展望、エンドユーザー別 (2022-2030) ($MN)
表27 化学触媒の世界市場展望、化学産業別 (2022-2030) ($MN)
表28 化学触媒の世界市場展望、石油・ガス別 (2022-2030) ($MN)
表29 化学触媒の世界市場展望、自動車別 (2022-2030) ($MN)
表30 化学触媒の世界市場展望、医薬品別 (2022-2030) ($MN)
表31 化学触媒の世界市場展望:食品・飲料別 (2022-2030) ($MN)
表32 化学触媒の世界市場展望、エネルギー・電力別 (2022-2030) ($MN)
表33 化学触媒の世界市場展望、繊維別 (2022-2030) ($MN)
表34 化学触媒の世界市場展望、その他のエンドユーザー別 (2022-2030) ($MN)
注)北アメリカ、ヨーロッパ、APAC、南アメリカ、中東/アフリカ地域の表も上記と同様に表記しています。
Market Dynamics:
Driver:
Increasing demand from various industries
Increasing demand from various industries fuels the development of advanced catalysts that improve process efficiency, reduce emissions, and enhance product quality. This surge in demand drives the development of advanced catalysts and spurs innovation, leading to more sustainable and effective solutions. For instance, automotive catalysts help meet emission regulations, while catalysts in energy applications support the transition to renewable sources driving the growth of the market.
Restraint:
Loss of efficient catalytic activity over time
Catalysts can degrade due to fouling, poisoning, or deactivation, leading to diminished performance and higher replacement or regeneration expenses. This inefficiency can cause disruptions in industrial processes and drive up costs for manufacturers. Consequently, the need for frequent maintenance and catalyst regeneration can deter investment in certain catalytic technologies and slow market growth.
Opportunity:
Advances in catalyst design and manufacturing
Innovations such as nanocatalysts, more precise catalyst formulations, and improved manufacturing techniques lead to higher activity, selectivity, and stability. These advancements enable more efficient industrial processes; reduce energy consumption, and lower operational costs. They also facilitate the development of catalysts for emerging applications, such as renewable energy and environmental technologies ensuring market sustainability.
Threat:
High costs of catalyst development and production
High costs of catalyst development and production limits accessibility and slows down the adoption, particularly for advanced or specialized catalysts. Expensive raw materials, complex manufacturing processes, and substantial R&D investments can drive up prices, making catalysts less economically viable for some applications. This cost burden can deter industries from investing in or upgrading to advanced catalytic solutions, impacting market growth.
Covid-19 Impact:
The COVID-19 pandemic impacted the chemical catalyst market by disrupting supply chains, halting production, and causing delays in project timelines. Lockdowns and restrictions affected the availability of raw materials and transportation, leading to shortages and increased costs. Industrial slowdowns and reduced demand from key sectors like automotive and petrochemicals further strained the market. However, the pandemic also accelerated interest in catalysts for healthcare and sanitization applications.
The heterogeneous catalysts segment is expected to be the largest during the forecast period
The heterogeneous catalysts is expected to be the largest during the forecast period offering advantages in process efficiency, stability, and reusability. Operating in a different phase from the reactants, these solid catalysts simplify separation and recycling, reducing operational costs and enhancing overall process sustainability. Their widespread use in industries like petrochemicals and automotive drives market growth by providing effective solutions for complex reactions and emission control.
The zeolites segment is expected to have the highest CAGR during the forecast period
The zeolites segment is expected to have the highest CAGR during the forecast period owing to their unique porous structure and high surface area make them excellent for applications in petrochemical refining, environmental cleanup, and industrial processes. Zeolites offer advantages such as high selectivity, stability, and the ability to enhance reaction rates. Their use in catalytic cracking and hydrocracking processes drives market growth by improving efficiency and product yield.
Region with largest share:
North America is projected to hold the largest market share during the forecast period owing to the growing steadily due to increasing industrial activities, technological advancements, and regulatory requirements. The market is expected to continue expanding due to ongoing innovations and the push for more sustainable and efficient processes as catalysts are essential in controlling emissions from vehicles and industrial processes, including catalytic converters and pollution control devices..
Region with highest CAGR:
Asia Pacific is projected to hold the highest CAGR over the forecast period due to increased industrialization, economic growth, and rising demand for various chemicals and fuels. Countries like China, India, Japan, and South Korea are major contributors to this growth. Further the APAC region has significant petrochemical production facilities, which drive the demand for catalysts in refining processes like fluid catalytic cracking (FCC) and catalytic reforming.
Key players in the market
Some of the key players in Chemical Catalyst market include BASF SE, Albemarle Corporation, Arkema SA, Chevron Phillips Chemical Company LLC, Clariant AG, DuPont de Nemours, Inc., Evonik Industries AG, ExxonMobil Corporation, Haldor Topsoe A/S, Honeywell, INEOS, Johnson Matthey PLC, LyondellBasell Industries N.V., Royal Dutch Shell PLC, Sinopec Catalyst Company, The Dow Chemical Company and W. R. Grace & Co.
Key Developments:
In July 2024, BASF introduced Haptex® 4.0: The future of sustainable synthetic leather. This complexity has traditionally made the reuse or recycling of the synthetic leather a challenge, which this challenge can now be tackled by Haptex 4.0.
In July 2024, BASF and ‘Pragati’ extended full transparency & traceability to bio-based footwear solutions with SuCCESS code. The demand for sustainable footwear solutions has been growing steadily in tandem with consumer awareness.
In June 2024, DuPont launched new Tedlar® Frontsheet offerings at 2024 SNEC PV Power Expo and the service life is hinged on material selection, modular design, and environment and working conditions.
Types Covered:
• Heterogeneous Catalysts
• Homogeneous Catalysts
• Biocatalysts
• Other Types
Raw Materials Covered:
• Metals
• Zeolites
• Chemical Compounds
• Other Raw Materials
Technologies Covered:
• Catalytic Converters Technology
• Fluid Catalytic Cracking (FCC) Technology
• Electrocatalysts
• Other Technologies
Applications Covered:
• Hydroprocessing
• Catalytic Reforming
• Ammonia Production & Ammonia Production
• Water Treatment & Air Purification
• Enzyme Catalysts
• Polyester & Nylon Production
• Dye & Pigment Synthesis
• Other Applications
End Users Covered:
• Chemical Industry
• Oil & Gas
• Automotive
• Pharmaceutical
• Food & Beverage
• Energy & Power
• Textile
• Other End Users
Regions Covered:
• North America
US
Canada
Mexico
• Europe
Germany
UK
Italy
France
Spain
Rest of Europe
• Asia Pacific
Japan
China
India
Australia
New Zealand
South Korea
Rest of Asia Pacific
• South America
Argentina
Brazil
Chile
Rest of South America
• Middle East & Africa
Saudi Arabia
UAE
Qatar
South Africa
Rest of Middle East & Africa
What our report offers:
- Market share assessments for the regional and country-level segments
- Strategic recommendations for the new entrants
- Covers Market data for the years 2022, 2023, 2024, 2026, and 2030
- Market Trends (Drivers, Constraints, Opportunities, Threats, Challenges, Investment Opportunities, and recommendations)
- Strategic recommendations in key business segments based on the market estimations
- Competitive landscaping mapping the key common trends
- Company profiling with detailed strategies, financials, and recent developments
- Supply chain trends mapping the latest technological advancements
1 Executive Summary
2 Preface
2.1 Abstract
2.2 Stake Holders
2.3 Research Scope
2.4 Research Methodology
2.4.1 Data Mining
2.4.2 Data Analysis
2.4.3 Data Validation
2.4.4 Research Approach
2.5 Research Sources
2.5.1 Primary Research Sources
2.5.2 Secondary Research Sources
2.5.3 Assumptions
3 Market Trend Analysis
3.1 Introduction
3.2 Drivers
3.3 Restraints
3.4 Opportunities
3.5 Threats
3.6 Technology Analysis
3.7 Application Analysis
3.8 End User Analysis
3.9 Emerging Markets
3.10 Impact of Covid-19
4 Porters Five Force Analysis
4.1 Bargaining power of suppliers
4.2 Bargaining power of buyers
4.3 Threat of substitutes
4.4 Threat of new entrants
4.5 Competitive rivalry
5 Global Chemical Catalyst Market, By Type
5.1 Introduction
5.2 Heterogeneous Catalysts
5.3 Homogeneous Catalysts
5.4 Biocatalysts
5.5 Other Types
6 Global Chemical Catalyst Market, By Raw Material
6.1 Introduction
6.2 Metals
6.3 Zeolites
6.4 Chemical Compounds
6.5 Other Raw Materials
7 Global Chemical Catalyst Market, By Technology
7.1 Introduction
7.2 Catalytic Converters Technology
7.3 Fluid Catalytic Cracking (FCC) Technology
7.4 Electrocatalysts
7.5 Other Technologies
8 Global Chemical Catalyst Market, By Application
8.1 Introduction
8.2 Hydroprocessing
8.3 Catalytic Reforming
8.4 Ammonia Production & Ammonia Production
8.5 Water Treatment & Air Purification
8.6 Enzyme Catalysts
8.7 Polyester & Nylon Production
8.8 Dye & Pigment Synthesis
8.9 Other Applications
9 Global Chemical Catalyst Market, By End User
9.1 Introduction
9.2 Chemical Industry
9.3 Oil & Gas
9.4 Automotive
9.5 Pharmaceutical
9.6 Food & Beverage
9.7 Energy & Power
9.8 Textile
9.9 Other End Users
10 Global Chemical Catalyst Market, By Geography
10.1 Introduction
10.2 North America
10.2.1 US
10.2.2 Canada
10.2.3 Mexico
10.3 Europe
10.3.1 Germany
10.3.2 UK
10.3.3 Italy
10.3.4 France
10.3.5 Spain
10.3.6 Rest of Europe
10.4 Asia Pacific
10.4.1 Japan
10.4.2 China
10.4.3 India
10.4.4 Australia
10.4.5 New Zealand
10.4.6 South Korea
10.4.7 Rest of Asia Pacific
10.5 South America
10.5.1 Argentina
10.5.2 Brazil
10.5.3 Chile
10.5.4 Rest of South America
10.6 Middle East & Africa
10.6.1 Saudi Arabia
10.6.2 UAE
10.6.3 Qatar
10.6.4 South Africa
10.6.5 Rest of Middle East & Africa
11 Key Developments
11.1 Agreements, Partnerships, Collaborations and Joint Ventures
11.2 Acquisitions & Mergers
11.3 New Product Launch
11.4 Expansions
11.5 Other Key Strategies
12 Company Profiling
12.1 BASF SE
12.2 Albemarle Corporation
12.3 Arkema SA
12.4 Chevron Phillips Chemical Company LLC
12.5 Clariant AG
12.6 DuPont de Nemours, Inc.
12.7 Evonik Industries AG
12.8 ExxonMobil Corporation
12.9 Haldor Topsoe A/S
12.10 Honeywell
12.11 INEOS
12.12 Johnson Matthey PLC
12.13 LyondellBasell Industries N.V.
12.14 Royal Dutch Shell PLC
12.15 Sinopec Catalyst Company
12.16 The Dow Chemical Company
12.17 W. R. Grace & Co.
List of Tables
Table 1 Global Chemical Catalyst Market Outlook, By Region (2022-2030) ($MN)
Table 2 Global Chemical Catalyst Market Outlook, By Type (2022-2030) ($MN)
Table 3 Global Chemical Catalyst Market Outlook, By Heterogeneous Catalysts (2022-2030) ($MN)
Table 4 Global Chemical Catalyst Market Outlook, By Homogeneous Catalysts (2022-2030) ($MN)
Table 5 Global Chemical Catalyst Market Outlook, By Biocatalysts (2022-2030) ($MN)
Table 6 Global Chemical Catalyst Market Outlook, By Other Types (2022-2030) ($MN)
Table 7 Global Chemical Catalyst Market Outlook, By Raw Material (2022-2030) ($MN)
Table 8 Global Chemical Catalyst Market Outlook, By Metals (2022-2030) ($MN)
Table 9 Global Chemical Catalyst Market Outlook, By Zeolites (2022-2030) ($MN)
Table 10 Global Chemical Catalyst Market Outlook, By Chemical Compounds (2022-2030) ($MN)
Table 11 Global Chemical Catalyst Market Outlook, By Other Raw Materials (2022-2030) ($MN)
Table 12 Global Chemical Catalyst Market Outlook, By Technology (2022-2030) ($MN)
Table 13 Global Chemical Catalyst Market Outlook, By Catalytic Converters Technology (2022-2030) ($MN)
Table 14 Global Chemical Catalyst Market Outlook, By Fluid Catalytic Cracking (FCC) Technology (2022-2030) ($MN)
Table 15 Global Chemical Catalyst Market Outlook, By Electrocatalysts (2022-2030) ($MN)
Table 16 Global Chemical Catalyst Market Outlook, By Other Technologies (2022-2030) ($MN)
Table 17 Global Chemical Catalyst Market Outlook, By Application (2022-2030) ($MN)
Table 18 Global Chemical Catalyst Market Outlook, By Hydroprocessing (2022-2030) ($MN)
Table 19 Global Chemical Catalyst Market Outlook, By Catalytic Reforming (2022-2030) ($MN)
Table 20 Global Chemical Catalyst Market Outlook, By Ammonia Production & Ammonia Production (2022-2030) ($MN)
Table 21 Global Chemical Catalyst Market Outlook, By Water Treatment & Air Purification (2022-2030) ($MN)
Table 22 Global Chemical Catalyst Market Outlook, By Enzyme Catalysts (2022-2030) ($MN)
Table 23 Global Chemical Catalyst Market Outlook, By Polyester & Nylon Production (2022-2030) ($MN)
Table 24 Global Chemical Catalyst Market Outlook, By Dye & Pigment Synthesis (2022-2030) ($MN)
Table 25 Global Chemical Catalyst Market Outlook, By Other Applications (2022-2030) ($MN)
Table 26 Global Chemical Catalyst Market Outlook, By End User (2022-2030) ($MN)
Table 27 Global Chemical Catalyst Market Outlook, By Chemical Industry (2022-2030) ($MN)
Table 28 Global Chemical Catalyst Market Outlook, By Oil & Gas (2022-2030) ($MN)
Table 29 Global Chemical Catalyst Market Outlook, By Automotive (2022-2030) ($MN)
Table 30 Global Chemical Catalyst Market Outlook, By Pharmaceutical (2022-2030) ($MN)
Table 31 Global Chemical Catalyst Market Outlook, By Food & Beverage (2022-2030) ($MN)
Table 32 Global Chemical Catalyst Market Outlook, By Energy & Power (2022-2030) ($MN)
Table 33 Global Chemical Catalyst Market Outlook, By Textile (2022-2030) ($MN)
Table 34 Global Chemical Catalyst Market Outlook, By Other End Users (2022-2030) ($MN)
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.
| ※参考情報 化学触媒とは、化学反応を促進する物質であり、反応の速さを高めたり、特定の反応経路を選択的に進めたりする役割を持っています。触媒自身は反応の途中で消費されることがなく、反応が終了した後は元の形に戻るため、その量は反応の進行において減少しません。この特性により、触媒は工業プロセスや研究開発において非常に重要な役割を果たしています。 化学触媒は大きく分けて三つの種類に分類されます。まず、均一触媒は反応系において全ての成分が同一の相、例えば液体中に溶け込んでいる形で存在する触媒です。次に、非均一触媒は固体触媒が液体や気体の相と相互作用する場合に用いられるもので、多くの工業的プロセスではこのタイプの触媒が使用されています。最後に、酵素触媒は生物由来の触媒で、特に生化学反応において重要な役割を果たします。酵素は特定の基質に対して高い選択性を持ち、反応を進行させるために必要な活性エネルギーを低下させます。 化学触媒の用途は非常に多岐にわたります。工業的には、触媒は石油精製、化学合成、環境保護などの分野で活用されています。たとえば、ハーバー・ボッシュ法においては、鉄などの触媒を用いて空気中の窒素と水素からアンモニアを合成するプロセスが行われます。また、触媒は自動車の排ガス処理装置においても重要な役割を果たし、有害な排出物を無害な物質に変えるために使用されます。さらに、プラスチックの製造や医薬品の合成などにも利用されており、経済的かつ効率的な反応を実現しています。 関連技術の中で興味深いのは、触媒の設計技術です。ナノテクノロジーを用いることで、触媒表面の特性を細かく制御することが可能になり、反応性や選択性の向上を図っています。これにより、より少ない量の触媒で高い効率を実現することができ、環境負荷の低減にも寄与しています。さらに、コンピュータシミュレーションや機械学習技術を用いて、新しい触媒の発見を加速する試みも盛んに行われています。 また、持続可能な化学反応の開発も触媒研究の重要なトピックとなっています。生物由来の触媒である酵素の利用や、再生可能エネルギー源との連携を通じて、グリーンケミストリーの概念が広がっています。これにより、環境に優しい反応が実現され、資源の長期的な利用に繋がっています。 化学触媒は、これからの持続可能な社会の実現に向けてますます重要な役割を果たすことが期待されています。新しい材料の開発や反応経路の解明が進むことで、より効率的で環境に配慮した化学プロセスが実現されるでしょう。触媒技術の進歩は、今後の科学技術の発展に不可欠であり、日常生活や産業界に広く影響を与えることになります。 このように、化学触媒は多くの分野で重要な役割を果たし、将来の技術革新の鍵ともなり得る存在です。触媒科学の進展が、持続可能な社会の実現に向けた新たな道を切り開くことを期待しています。 |

