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 Product Analysis
3.7 Emerging Markets
3.8 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 Light-powered Catalyst Market, By Product Type
5.1 Introduction
5.2 Polymers and petrochemicals
5.3 Environmental
5.4 Chemical synthesis
5.5 Petroleum refining
5.6 Heterogeneous Catalyst
5.7 Other Product Types
6 Global Light-powered 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 Light-powered Catalyst Market, By Geography
7.1 Introduction
7.2 North America
7.2.1 US
7.2.2 Canada
7.2.3 Mexico
7.3 Europe
7.3.1 Germany
7.3.2 UK
7.3.3 Italy
7.3.4 France
7.3.5 Spain
7.3.6 Rest of Europe
7.4 Asia Pacific
7.4.1 Japan
7.4.2 China
7.4.3 India
7.4.4 Australia
7.4.5 New Zealand
7.4.6 South Korea
7.4.7 Rest of Asia Pacific
7.5 South America
7.5.1 Argentina
7.5.2 Brazil
7.5.3 Chile
7.5.4 Rest of South America
7.6 Middle East & Africa
7.6.1 Saudi Arabia
7.6.2 UAE
7.6.3 Qatar
7.6.4 South Africa
7.6.5 Rest of Middle East & Africa
8 Key Developments
8.1 Agreements, Partnerships, Collaborations and Joint Ventures
8.2 Acquisitions & Mergers
8.3 New Product Launch
8.4 Expansions
8.5 Other Key Strategies
9 Company Profiling
9.1 Clariant AG
9.2 Chevron Phillips Chemical Company LLC
9.3 Evonik Industries AG
9.4 Dow Chemical Company
9.5 Albemarle Corporation Johnson Matthey
9.6 Johnson Matthey
9.7 BASF SE
9.8 Dorf Ketal Chemicals (I) Pvt. Ltd.
9.9 W.R. Grace and Co
9.10 ELight-powered Catalyst Marketonmobil Corporation
List of Tables
Table 1 Global Light-powered Catalyst Market Outlook, By Region (2020-2028) ($MN)
Table 2 Global Light-powered Catalyst Market Outlook, By Product Type (2020-2028) ($MN)
Table 3 Global Light-powered Catalyst Market Outlook, By Polymers and petrochemicals (2020-2028) ($MN)
Table 4 Global Light-powered Catalyst Market Outlook, By Environmental (2020-2028) ($MN)
Table 5 Global Light-powered Catalyst Market Outlook, By Chemical synthesis (2020-2028) ($MN)
Table 6 Global Light-powered Catalyst Market Outlook, By Petroleum refining (2020-2028) ($MN)
Table 7 Global Light-powered Catalyst Market Outlook, By Heterogeneous Catalyst (2020-2028) ($MN)
Table 8 Global Light-powered Catalyst Market Outlook, By Other Product Types (2020-2028) ($MN)
Table 9 Global Light-powered Catalyst Market Outlook, By Raw Material (2020-2028) ($MN)
Table 10 Global Light-powered Catalyst Market Outlook, By Metals (2020-2028) ($MN)
Table 11 Global Light-powered Catalyst Market Outlook, By Zeolites (2020-2028) ($MN)
Table 12 Global Light-powered Catalyst Market Outlook, By Chemical compounds (2020-2028) ($MN)
Table 13 Global Light-powered Catalyst Market Outlook, By Other Raw Materials (2020-2028) ($MN)
Table 14 North America Light-powered Catalyst Market Outlook, By Country (2020-2028) ($MN)
Table 15 North America Light-powered Catalyst Market Outlook, By Product Type (2020-2028) ($MN)
Table 16 North America Light-powered Catalyst Market Outlook, By Polymers and petrochemicals (2020-2028) ($MN)
Table 17 North America Light-powered Catalyst Market Outlook, By Environmental (2020-2028) ($MN)
Table 18 North America Light-powered Catalyst Market Outlook, By Chemical synthesis (2020-2028) ($MN)
Table 19 North America Light-powered Catalyst Market Outlook, By Petroleum refining (2020-2028) ($MN)
Table 20 North America Light-powered Catalyst Market Outlook, By Heterogeneous Catalyst (2020-2028) ($MN)
Table 21 North America Light-powered Catalyst Market Outlook, By Other Product Types (2020-2028) ($MN)
Table 22 North America Light-powered Catalyst Market Outlook, By Raw Material (2020-2028) ($MN)
Table 23 North America Light-powered Catalyst Market Outlook, By Metals (2020-2028) ($MN)
Table 24 North America Light-powered Catalyst Market Outlook, By Zeolites (2020-2028) ($MN)
Table 25 North America Light-powered Catalyst Market Outlook, By Chemical compounds (2020-2028) ($MN)
Table 26 North America Light-powered Catalyst Market Outlook, By Other Raw Materials (2020-2028) ($MN)
Table 27 Europe Light-powered Catalyst Market Outlook, By Country (2020-2028) ($MN)
Table 28 Europe Light-powered Catalyst Market Outlook, By Product Type (2020-2028) ($MN)
Table 29 Europe Light-powered Catalyst Market Outlook, By Polymers and petrochemicals (2020-2028) ($MN)
Table 30 Europe Light-powered Catalyst Market Outlook, By Environmental (2020-2028) ($MN)
Table 31 Europe Light-powered Catalyst Market Outlook, By Chemical synthesis (2020-2028) ($MN)
Table 32 Europe Light-powered Catalyst Market Outlook, By Petroleum refining (2020-2028) ($MN)
Table 33 Europe Light-powered Catalyst Market Outlook, By Heterogeneous Catalyst (2020-2028) ($MN)
Table 34 Europe Light-powered Catalyst Market Outlook, By Other Product Types (2020-2028) ($MN)
Table 35 Europe Light-powered Catalyst Market Outlook, By Raw Material (2020-2028) ($MN)
Table 36 Europe Light-powered Catalyst Market Outlook, By Metals (2020-2028) ($MN)
Table 37 Europe Light-powered Catalyst Market Outlook, By Zeolites (2020-2028) ($MN)
Table 38 Europe Light-powered Catalyst Market Outlook, By Chemical compounds (2020-2028) ($MN)
Table 39 Europe Light-powered Catalyst Market Outlook, By Other Raw Materials (2020-2028) ($MN)
Table 40 Asia Pacific Light-powered Catalyst Market Outlook, By Country (2020-2028) ($MN)
Table 41 Asia Pacific Light-powered Catalyst Market Outlook, By Product Type (2020-2028) ($MN)
Table 42 Asia Pacific Light-powered Catalyst Market Outlook, By Polymers and petrochemicals (2020-2028) ($MN)
Table 43 Asia Pacific Light-powered Catalyst Market Outlook, By Environmental (2020-2028) ($MN)
Table 44 Asia Pacific Light-powered Catalyst Market Outlook, By Chemical synthesis (2020-2028) ($MN)
Table 45 Asia Pacific Light-powered Catalyst Market Outlook, By Petroleum refining (2020-2028) ($MN)
Table 46 Asia Pacific Light-powered Catalyst Market Outlook, By Heterogeneous Catalyst (2020-2028) ($MN)
Table 47 Asia Pacific Light-powered Catalyst Market Outlook, By Other Product Types (2020-2028) ($MN)
Table 48 Asia Pacific Light-powered Catalyst Market Outlook, By Raw Material (2020-2028) ($MN)
Table 49 Asia Pacific Light-powered Catalyst Market Outlook, By Metals (2020-2028) ($MN)
Table 50 Asia Pacific Light-powered Catalyst Market Outlook, By Zeolites (2020-2028) ($MN)
Table 51 Asia Pacific Light-powered Catalyst Market Outlook, By Chemical compounds (2020-2028) ($MN)
Table 52 Asia Pacific Light-powered Catalyst Market Outlook, By Other Raw Materials (2020-2028) ($MN)
Table 53 South America Light-powered Catalyst Market Outlook, By Country (2020-2028) ($MN)
Table 54 South America Light-powered Catalyst Market Outlook, By Product Type (2020-2028) ($MN)
Table 55 South America Light-powered Catalyst Market Outlook, By Polymers and petrochemicals (2020-2028) ($MN)
Table 56 South America Light-powered Catalyst Market Outlook, By Environmental (2020-2028) ($MN)
Table 57 South America Light-powered Catalyst Market Outlook, By Chemical synthesis (2020-2028) ($MN)
Table 58 South America Light-powered Catalyst Market Outlook, By Petroleum refining (2020-2028) ($MN)
Table 59 South America Light-powered Catalyst Market Outlook, By Heterogeneous Catalyst (2020-2028) ($MN)
Table 60 South America Light-powered Catalyst Market Outlook, By Other Product Types (2020-2028) ($MN)
Table 61 South America Light-powered Catalyst Market Outlook, By Raw Material (2020-2028) ($MN)
Table 62 South America Light-powered Catalyst Market Outlook, By Metals (2020-2028) ($MN)
Table 63 South America Light-powered Catalyst Market Outlook, By Zeolites (2020-2028) ($MN)
Table 64 South America Light-powered Catalyst Market Outlook, By Chemical compounds (2020-2028) ($MN)
Table 65 South America Light-powered Catalyst Market Outlook, By Other Raw Materials (2020-2028) ($MN)
Table 66 Middle East & Africa Light-powered Catalyst Market Outlook, By Country (2020-2028) ($MN)
Table 67 Middle East & Africa Light-powered Catalyst Market Outlook, By Product Type (2020-2028) ($MN)
Table 68 Middle East & Africa Light-powered Catalyst Market Outlook, By Polymers and petrochemicals (2020-2028) ($MN)
Table 69 Middle East & Africa Light-powered Catalyst Market Outlook, By Environmental (2020-2028) ($MN)
Table 70 Middle East & Africa Light-powered Catalyst Market Outlook, By Chemical synthesis (2020-2028) ($MN)
Table 71 Middle East & Africa Light-powered Catalyst Market Outlook, By Petroleum refining (2020-2028) ($MN)
Table 72 Middle East & Africa Light-powered Catalyst Market Outlook, By Heterogeneous Catalyst (2020-2028) ($MN)
Table 73 Middle East & Africa Light-powered Catalyst Market Outlook, By Other Product Types (2020-2028) ($MN)
Table 74 Middle East & Africa Light-powered Catalyst Market Outlook, By Raw Material (2020-2028) ($MN)
Table 75 Middle East & Africa Light-powered Catalyst Market Outlook, By Metals (2020-2028) ($MN)
Table 76 Middle East & Africa Light-powered Catalyst Market Outlook, By Zeolites (2020-2028) ($MN)
Table 77 Middle East & Africa Light-powered Catalyst Market Outlook, By Chemical compounds (2020-2028) ($MN)
Table 78 Middle East & Africa Light-powered Catalyst Market Outlook, By Other Raw Materials (2020-2028) ($MN)
| ※参考情報 光電気触媒とは、光エネルギーを利用して化学反応を促進する触媒の一種です。特に、光電気触媒は紫外線や可視光を吸収し、電子とホールを生成することで反応を引き起こします。この技術は、環境問題の解決やエネルギー変換の効率化に貢献する可能性があるため、近年注目されています。 光電気触媒には、主に二つの種類があります。一つは、半導体に基づく光電気触媒です。このタイプの触媒は、例えば酸化チタン(TiO2)や酸化亜鉛(ZnO)など、特定の波長の光を吸収することができる半導体材料を使用します。これらの半導体は、光照射を受けることで電子を励起し、その結果、化学反応を促進します。 もう一つは、金属光触媒です。こちらは、プラチナや金などの金属が利用され、光を吸収して励起状態の電子を生成し、化学反応を進行させます。金属光触媒は、反応の選択性や効率を向上させるための触媒として非常に有望な分野です。さらに、光電気触媒は異なる材料を組み合わせることで、より効果的に機能するように設計されることがあります。 光電気触媒の用途は多岐にわたります。最も有名なものの一つは、環境浄化です。光電気触媒を利用した水処理技術は、抗菌機能や有害物質の分解が期待されており、特に紫外線光源を併用することによって、効果的に水中の有機物や重金属を分解することができます。また、空気清浄においても、湖南の化合物や揮発性有機化合物(VOC)を光触媒反応によって分解することができるため、室内の空気質向上にも寄与します。 さらに、光電気触媒は、エネルギー変換の分野でも重要な役割を果たします。特に、太陽光を利用した水素生成が注目されています。光電気触媒を使って水を分解し、水素を生成するプロセスは、再生可能エネルギーを利用したクリーンなエネルギー源としてのポテンシャルを秘めています。これにより、化石燃料依存からの脱却が期待されています。 この技術の発展には、様々な関連技術が必要です。例えば、ナノテクノロジーは、光電気触媒の性能を向上させるために重要な役割を果たしています。ナノスケールの材料を用いることで、表面積を大きくし、光吸収効率を改善することが可能です。また、表面改質や複合材料の開発も進行中であり、それにより光電気触媒の反応性や耐久性を高めることができます。 さらに、光電気触媒の応用には、材料の設計や次世代のデバイス開発も含まれています。これにより、触媒の性能の向上や新しい反応経路の開発が進められています。特に、機能性材料の開発や新しい合成技術は、効率的な反応を実現するために欠かせない要素です。 将来的には、光電気触媒のさらなる進化が期待されています。持続可能な社会の実現に向けて、エネルギー変換や環境浄化の分野での活用が進んでいくことでしょう。光電気触媒は、私たちの生活と環境を豊かにするための重要な技術として、ますます注目を集めると考えられています。光エネルギーを利用した持続可能な化学反応が進展すれば、化石燃料からの脱却やクリーンなエネルギーの実現に寄与することが可能となるでしょう。このように、光電気触媒技術は、未来のエネルギー問題解決の鍵を握っているといえるのです。 |

