CHAPTER 1: INTRODUCTION
1.1. Report description
1.2. Key market segments
1.3. Key benefits to the stakeholders
1.4. Research methodology
1.4.1. Primary research
1.4.2. Secondary research
1.4.3. Analyst tools and models
CHAPTER 2: EXECUTIVE SUMMARY
2.1. CXO Perspective
CHAPTER 3: MARKET OVERVIEW
3.1. Market definition and scope
3.2. Key findings
3.2.1. Top impacting factors
3.2.2. Top investment pockets
3.3. Porter’s five forces analysis
3.3.1. Low bargaining power of suppliers
3.3.2. Low threat of new entrants
3.3.3. Low threat of substitutes
3.3.4. Low intensity of rivalry
3.3.5. Low bargaining power of buyers
3.4. Market dynamics
3.4.1. Drivers
3.4.1.1. Energy Security Concerns
3.4.1.2. Environment Regulations
3.4.2. Restraints
3.4.2.1. High Production Costs
3.4.2.2. Lack of Infrastructure
3.4.3. Opportunities
3.4.3.1. Renewable Energy Storage
3.5. Value Chain Analysis
3.6. Key Regulation Analysis
3.7. Pricing Analysis
CHAPTER 4: SECOND GENERATION BIOFUELS MARKET, BY TYPE
4.1. Overview
4.1.1. Market size and forecast
4.2. Cellulosic Ethanol
4.2.1. Key market trends, growth factors and opportunities
4.2.2. Market size and forecast, by region
4.2.3. Market share analysis by country
4.3. Biodiesel
4.3.1. Key market trends, growth factors and opportunities
4.3.2. Market size and forecast, by region
4.3.3. Market share analysis by country
4.4. Bio Butanol
4.4.1. Key market trends, growth factors and opportunities
4.4.2. Market size and forecast, by region
4.4.3. Market share analysis by country
4.5. Others
4.5.1. Key market trends, growth factors and opportunities
4.5.2. Market size and forecast, by region
4.5.3. Market share analysis by country
CHAPTER 5: SECOND GENERATION BIOFUELS MARKET, BY FEEDSTOCK
5.1. Overview
5.1.1. Market size and forecast
5.2. Simple Lignocellulose
5.2.1. Key market trends, growth factors and opportunities
5.2.2. Market size and forecast, by region
5.2.3. Market share analysis by country
5.3. Complex Lignocellulose
5.3.1. Key market trends, growth factors and opportunities
5.3.2. Market size and forecast, by region
5.3.3. Market share analysis by country
5.4. Syngas
5.4.1. Key market trends, growth factors and opportunities
5.4.2. Market size and forecast, by region
5.4.3. Market share analysis by country
5.5. Algae
5.5.1. Key market trends, growth factors and opportunities
5.5.2. Market size and forecast, by region
5.5.3. Market share analysis by country
5.6. Others
5.6.1. Key market trends, growth factors and opportunities
5.6.2. Market size and forecast, by region
5.6.3. Market share analysis by country
CHAPTER 6: SECOND GENERATION BIOFUELS MARKET, BY PROCESS
6.1. Overview
6.1.1. Market size and forecast
6.2. Biochemical Process
6.2.1. Key market trends, growth factors and opportunities
6.2.2. Market size and forecast, by region
6.2.3. Market share analysis by country
6.3. Thermochemical Process
6.3.1. Key market trends, growth factors and opportunities
6.3.2. Market size and forecast, by region
6.3.3. Market share analysis by country
CHAPTER 7: SECOND GENERATION BIOFUELS MARKET, BY APPLICATION
7.1. Overview
7.1.1. Market size and forecast
7.2. Transportation
7.2.1. Key market trends, growth factors and opportunities
7.2.2. Market size and forecast, by region
7.2.3. Market share analysis by country
7.3. Power Generation
7.3.1. Key market trends, growth factors and opportunities
7.3.2. Market size and forecast, by region
7.3.3. Market share analysis by country
7.4. Others
7.4.1. Key market trends, growth factors and opportunities
7.4.2. Market size and forecast, by region
7.4.3. Market share analysis by country
CHAPTER 8: SECOND GENERATION BIOFUELS MARKET, BY REGION
8.1. Overview
8.1.1. Market size and forecast By Region
8.2. North America
8.2.1. Key market trends, growth factors and opportunities
8.2.2. Market size and forecast, by Type
8.2.3. Market size and forecast, by Feedstock
8.2.4. Market size and forecast, by Process
8.2.5. Market size and forecast, by Application
8.2.6. Market size and forecast, by country
8.2.6.1. U.S.
8.2.6.1.1. Market size and forecast, by Type
8.2.6.1.2. Market size and forecast, by Feedstock
8.2.6.1.3. Market size and forecast, by Process
8.2.6.1.4. Market size and forecast, by Application
8.2.6.2. Canada
8.2.6.2.1. Market size and forecast, by Type
8.2.6.2.2. Market size and forecast, by Feedstock
8.2.6.2.3. Market size and forecast, by Process
8.2.6.2.4. Market size and forecast, by Application
8.2.6.3. Mexico
8.2.6.3.1. Market size and forecast, by Type
8.2.6.3.2. Market size and forecast, by Feedstock
8.2.6.3.3. Market size and forecast, by Process
8.2.6.3.4. Market size and forecast, by Application
8.3. Europe
8.3.1. Key market trends, growth factors and opportunities
8.3.2. Market size and forecast, by Type
8.3.3. Market size and forecast, by Feedstock
8.3.4. Market size and forecast, by Process
8.3.5. Market size and forecast, by Application
8.3.6. Market size and forecast, by country
8.3.6.1. Germany
8.3.6.1.1. Market size and forecast, by Type
8.3.6.1.2. Market size and forecast, by Feedstock
8.3.6.1.3. Market size and forecast, by Process
8.3.6.1.4. Market size and forecast, by Application
8.3.6.2. France
8.3.6.2.1. Market size and forecast, by Type
8.3.6.2.2. Market size and forecast, by Feedstock
8.3.6.2.3. Market size and forecast, by Process
8.3.6.2.4. Market size and forecast, by Application
8.3.6.3. Italy
8.3.6.3.1. Market size and forecast, by Type
8.3.6.3.2. Market size and forecast, by Feedstock
8.3.6.3.3. Market size and forecast, by Process
8.3.6.3.4. Market size and forecast, by Application
8.3.6.4. Spain
8.3.6.4.1. Market size and forecast, by Type
8.3.6.4.2. Market size and forecast, by Feedstock
8.3.6.4.3. Market size and forecast, by Process
8.3.6.4.4. Market size and forecast, by Application
8.3.6.5. UK
8.3.6.5.1. Market size and forecast, by Type
8.3.6.5.2. Market size and forecast, by Feedstock
8.3.6.5.3. Market size and forecast, by Process
8.3.6.5.4. Market size and forecast, by Application
8.3.6.6. Rest of Europe
8.3.6.6.1. Market size and forecast, by Type
8.3.6.6.2. Market size and forecast, by Feedstock
8.3.6.6.3. Market size and forecast, by Process
8.3.6.6.4. Market size and forecast, by Application
8.4. Asia-Pacific
8.4.1. Key market trends, growth factors and opportunities
8.4.2. Market size and forecast, by Type
8.4.3. Market size and forecast, by Feedstock
8.4.4. Market size and forecast, by Process
8.4.5. Market size and forecast, by Application
8.4.6. Market size and forecast, by country
8.4.6.1. China
8.4.6.1.1. Market size and forecast, by Type
8.4.6.1.2. Market size and forecast, by Feedstock
8.4.6.1.3. Market size and forecast, by Process
8.4.6.1.4. Market size and forecast, by Application
8.4.6.2. Japan
8.4.6.2.1. Market size and forecast, by Type
8.4.6.2.2. Market size and forecast, by Feedstock
8.4.6.2.3. Market size and forecast, by Process
8.4.6.2.4. Market size and forecast, by Application
8.4.6.3. India
8.4.6.3.1. Market size and forecast, by Type
8.4.6.3.2. Market size and forecast, by Feedstock
8.4.6.3.3. Market size and forecast, by Process
8.4.6.3.4. Market size and forecast, by Application
8.4.6.4. Thailand
8.4.6.4.1. Market size and forecast, by Type
8.4.6.4.2. Market size and forecast, by Feedstock
8.4.6.4.3. Market size and forecast, by Process
8.4.6.4.4. Market size and forecast, by Application
8.4.6.5. Rest of Asia-Pacific
8.4.6.5.1. Market size and forecast, by Type
8.4.6.5.2. Market size and forecast, by Feedstock
8.4.6.5.3. Market size and forecast, by Process
8.4.6.5.4. Market size and forecast, by Application
8.5. LAMEA
8.5.1. Key market trends, growth factors and opportunities
8.5.2. Market size and forecast, by Type
8.5.3. Market size and forecast, by Feedstock
8.5.4. Market size and forecast, by Process
8.5.5. Market size and forecast, by Application
8.5.6. Market size and forecast, by country
8.5.6.1. Brazil
8.5.6.1.1. Market size and forecast, by Type
8.5.6.1.2. Market size and forecast, by Feedstock
8.5.6.1.3. Market size and forecast, by Process
8.5.6.1.4. Market size and forecast, by Application
8.5.6.2. South Africa
8.5.6.2.1. Market size and forecast, by Type
8.5.6.2.2. Market size and forecast, by Feedstock
8.5.6.2.3. Market size and forecast, by Process
8.5.6.2.4. Market size and forecast, by Application
8.5.6.3. Israel
8.5.6.3.1. Market size and forecast, by Type
8.5.6.3.2. Market size and forecast, by Feedstock
8.5.6.3.3. Market size and forecast, by Process
8.5.6.3.4. Market size and forecast, by Application
8.5.6.4. Rest of LAMEA
8.5.6.4.1. Market size and forecast, by Type
8.5.6.4.2. Market size and forecast, by Feedstock
8.5.6.4.3. Market size and forecast, by Process
8.5.6.4.4. Market size and forecast, by Application
CHAPTER 9: COMPETITIVE LANDSCAPE
9.1. Introduction
9.2. Top winning strategies
9.3. Product mapping of top 10 player
9.4. Competitive dashboard
9.5. Competitive heatmap
9.6. Top player positioning, 2022
CHAPTER 10: COMPANY PROFILES
10.1. Algenol Biotech LLC
10.1.1. Company overview
10.1.2. Key executives
10.1.3. Company snapshot
10.1.4. Operating business segments
10.1.5. Product portfolio
10.2. Clariant AG.
10.2.1. Company overview
10.2.2. Key executives
10.2.3. Company snapshot
10.2.4. Operating business segments
10.2.5. Product portfolio
10.2.6. Business performance
10.2.7. Key strategic moves and developments
10.3. International Flavors & Fragrances Inc.
10.3.1. Company overview
10.3.2. Key executives
10.3.3. Company snapshot
10.3.4. Operating business segments
10.3.5. Product portfolio
10.3.6. Business performance
10.3.7. Key strategic moves and developments
10.4. Fiberight
10.4.1. Company overview
10.4.2. Key executives
10.4.3. Company snapshot
10.4.4. Operating business segments
10.4.5. Product portfolio
10.5. GranBio Investimentos S.A.
10.5.1. Company overview
10.5.2. Key executives
10.5.3. Company snapshot
10.5.4. Operating business segments
10.5.5. Product portfolio
10.5.6. Business performance
10.5.7. Key strategic moves and developments
10.6. INEOS Group
10.6.1. Company overview
10.6.2. Key executives
10.6.3. Company snapshot
10.6.4. Operating business segments
10.6.5. Product portfolio
10.6.6. Business performance
10.7. Orsted A/S
10.7.1. Company overview
10.7.2. Key executives
10.7.3. Company snapshot
10.7.4. Operating business segments
10.7.5. Product portfolio
10.7.6. Business performance
10.8. POET-DSM Advanced Biofuels LLC
10.8.1. Company overview
10.8.2. Key executives
10.8.3. Company snapshot
10.8.4. Operating business segments
10.8.5. Product portfolio
10.9. Reliance Industries Limited
10.9.1. Company overview
10.9.2. Key executives
10.9.3. Company snapshot
10.9.4. Operating business segments
10.9.5. Product portfolio
10.9.6. Business performance
10.10. Zea2
10.10.1. Company overview
10.10.2. Key executives
10.10.3. Company snapshot
10.10.4. Operating business segments
10.10.5. Product portfolio
| ※参考情報 第二世代バイオ燃料とは、食品や飼料として使用される作物を原料としないバイオ燃料のことを指します。主に木材、農業の副産物、廃棄物、生物由来の非食用原料を用いて生産されるため、第一世代バイオ燃料よりも持続可能性が高いとされています。第一世代のバイオ燃料は主にトウモロコシやサトウキビなどの作物から作られるため、これらの作物を食料供給と競合させる懸念がありました。しかし、第二世代バイオ燃料は、食料問題に対する影響を軽減し、資源の循環利用を促進する可能性を持っています。 第二世代バイオ燃料の種類は多岐にわたります。一つは、セルロースバイオ燃料です。これは植物の細胞壁に含まれるセルロースを原料とした燃料で、通常は藁や木くずなどが利用されます。セルロースバイオ燃料を作るためには、セルロースを分解して糖に変換し、さらに発酵させてエタノールを生成するプロセスが必要です。 次に、リグニンバイオ燃料があります。リグニンは植物細胞の構造材料であり、木材に多く含まれています。リグニンを利用することで、燃料油や化学品を生成することが可能です。リグニンからは、ガス化や熱分解のプロセスを経て、合成ガスを生成し、その後これを変換することで燃料を得ることができます。 また、アルゲや微細藻類を利用したバイオ燃料も第二世代に含まれます。藻類は成長が非常に早く、また二酸化炭素を吸収して成長するため、環境への負荷を軽減する可能性があります。藻類はオイルを豊富に含み、それを抽出してバイオディーゼルやバイオエタノールに変換することができます。 第二世代バイオ燃料の用途は、自動車や航空機の燃料としての利用が期待されています。特に、エタノールはガソリンと混合して使用されることが多く、既存のインフラを活用できる利点があります。また、バイオディーゼルはディーゼルエンジンで使用される燃料として広まりつつあり、化石燃料の代替としての役割を果たすことが期待されています。 これに加えて、第二世代バイオ燃料は、熱や電力の生成にも利用されます。特に発電所や地域の熱供給システムにおいて、バイオマスを燃料として使用することで、再生可能エネルギーの供給源としての役割を果たすことができます。さらに、これらの燃料は温室効果ガスの排出量を削減することができ、持続可能な社会づくりに寄与します。 関連技術については、バイオ燃料の生産においてさまざまな技術が開発されています。例えば、細胞分解技術や発酵技術、ガス化技術が挙げられます。これらの技術は、原料からバイオ燃料を効率的に生成するために不可欠です。特に、酵素を用いたセルロースの分解技術は、第二世代バイオ燃料の生産において重要な役割を果たしています。この技術により、安価かつ効率的にセルロースから糖を得ることが可能となります。 さらに、収集した生物廃棄物を集めてエネルギーを生成する技術も注目されています。例えば、農業や食品産業から出る廃棄物を利用してバイオガスを生成する方法があるため、廃棄物の循環利用が促進されます。このような技術により、資源の効率的な利用が図られ、持続可能なエネルギーシステムの構築が進むことが期待されています。 総じて、第二世代バイオ燃料は、環境への負荷を低減し、持続可能なエネルギーの選択肢を提供する重要な資源です。今後、技術の進歩とともに、より効率的かつ経済的な方法での生産が期待され、多くの分野での利用が進むでしょう。これにより、持続可能な社会の実現に寄与することが期待されます。 |
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