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
3.4. Market dynamics
3.4.1. Drivers
3.4.2. Restraints
3.4.3. Opportunities
3.5. Market Share Analysis
3.6. Value Chain Analysis
3.7. Regulatory Guidelines
3.8. Key Regulation Analysis
CHAPTER 4: GAS TREATMENT MARKET, BY TYPE
4.1. Overview
4.1.1. Market size and forecast
4.2. Amines
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. Glycol Dehydration
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. Triazine
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: GAS TREATMENT MARKET, BY APPLICATION
5.1. Overview
5.1.1. Market size and forecast
5.2. Acid gas removal
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. Dehydration
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. Others
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
CHAPTER 6: GAS TREATMENT MARKET, BY REGION
6.1. Overview
6.1.1. Market size and forecast By Region
6.2. North America
6.2.1. Key market trends, growth factors and opportunities
6.2.2. Market size and forecast, by Type
6.2.3. Market size and forecast, by Application
6.2.4. Market size and forecast, by country
6.2.4.1. U.S.
6.2.4.1.1. Market size and forecast, by Type
6.2.4.1.2. Market size and forecast, by Application
6.2.4.2. Canada
6.2.4.2.1. Market size and forecast, by Type
6.2.4.2.2. Market size and forecast, by Application
6.2.4.3. Mexico
6.2.4.3.1. Market size and forecast, by Type
6.2.4.3.2. Market size and forecast, by Application
6.3. Europe
6.3.1. Key market trends, growth factors and opportunities
6.3.2. Market size and forecast, by Type
6.3.3. Market size and forecast, by Application
6.3.4. Market size and forecast, by country
6.3.4.1. France
6.3.4.1.1. Market size and forecast, by Type
6.3.4.1.2. Market size and forecast, by Application
6.3.4.2. Germany
6.3.4.2.1. Market size and forecast, by Type
6.3.4.2.2. Market size and forecast, by Application
6.3.4.3. Italy
6.3.4.3.1. Market size and forecast, by Type
6.3.4.3.2. Market size and forecast, by Application
6.3.4.4. Spain
6.3.4.4.1. Market size and forecast, by Type
6.3.4.4.2. Market size and forecast, by Application
6.3.4.5. UK
6.3.4.5.1. Market size and forecast, by Type
6.3.4.5.2. Market size and forecast, by Application
6.3.4.6. Rest of Europe
6.3.4.6.1. Market size and forecast, by Type
6.3.4.6.2. Market size and forecast, by Application
6.4. Asia-Pacific
6.4.1. Key market trends, growth factors and opportunities
6.4.2. Market size and forecast, by Type
6.4.3. Market size and forecast, by Application
6.4.4. Market size and forecast, by country
6.4.4.1. China
6.4.4.1.1. Market size and forecast, by Type
6.4.4.1.2. Market size and forecast, by Application
6.4.4.2. Japan
6.4.4.2.1. Market size and forecast, by Type
6.4.4.2.2. Market size and forecast, by Application
6.4.4.3. India
6.4.4.3.1. Market size and forecast, by Type
6.4.4.3.2. Market size and forecast, by Application
6.4.4.4. South Korea
6.4.4.4.1. Market size and forecast, by Type
6.4.4.4.2. Market size and forecast, by Application
6.4.4.5. Australia
6.4.4.5.1. Market size and forecast, by Type
6.4.4.5.2. Market size and forecast, by Application
6.4.4.6. Rest of Asia-Pacific
6.4.4.6.1. Market size and forecast, by Type
6.4.4.6.2. Market size and forecast, by Application
6.5. LAMEA
6.5.1. Key market trends, growth factors and opportunities
6.5.2. Market size and forecast, by Type
6.5.3. Market size and forecast, by Application
6.5.4. Market size and forecast, by country
6.5.4.1. Brazil
6.5.4.1.1. Market size and forecast, by Type
6.5.4.1.2. Market size and forecast, by Application
6.5.4.2. Saudi Arabia
6.5.4.2.1. Market size and forecast, by Type
6.5.4.2.2. Market size and forecast, by Application
6.5.4.3. South Africa
6.5.4.3.1. Market size and forecast, by Type
6.5.4.3.2. Market size and forecast, by Application
6.5.4.4. Argentina
6.5.4.4.1. Market size and forecast, by Type
6.5.4.4.2. Market size and forecast, by Application
6.5.4.5. Rest of LAMEA
6.5.4.5.1. Market size and forecast, by Type
6.5.4.5.2. Market size and forecast, by Application
CHAPTER 7: COMPETITIVE LANDSCAPE
7.1. Introduction
7.2. Top winning strategies
7.3. Product mapping of top 10 player
7.4. Competitive dashboard
7.5. Competitive heatmap
7.6. Top player positioning, 2022
CHAPTER 8: COMPANY PROFILES
8.1. Amines & Plasticizers Ltd.
8.1.1. Company overview
8.1.2. Key executives
8.1.3. Company snapshot
8.1.4. Operating business segments
8.1.5. Product portfolio
8.1.6. Business performance
8.1.7. Key strategic moves and developments
8.2. Ecolab Inc.
8.2.1. Company overview
8.2.2. Key executives
8.2.3. Company snapshot
8.2.4. Operating business segments
8.2.5. Product portfolio
8.2.6. Business performance
8.2.7. Key strategic moves and developments
8.3. Huntsman International LLC
8.3.1. Company overview
8.3.2. Key executives
8.3.3. Company snapshot
8.3.4. Operating business segments
8.3.5. Product portfolio
8.3.6. Business performance
8.3.7. Key strategic moves and developments
8.4. BASF SE
8.4.1. Company overview
8.4.2. Key executives
8.4.3. Company snapshot
8.4.4. Operating business segments
8.4.5. Product portfolio
8.4.6. Business performance
8.4.7. Key strategic moves and developments
8.5. SAMSON Controls Inc.
8.5.1. Company overview
8.5.2. Key executives
8.5.3. Company snapshot
8.5.4. Operating business segments
8.5.5. Product portfolio
8.5.6. Business performance
8.5.7. Key strategic moves and developments
8.6. Eunisell Chemicals
8.6.1. Company overview
8.6.2. Key executives
8.6.3. Company snapshot
8.6.4. Operating business segments
8.6.5. Product portfolio
8.6.6. Business performance
8.6.7. Key strategic moves and developments
8.7. DowDuPont Inc.
8.7.1. Company overview
8.7.2. Key executives
8.7.3. Company snapshot
8.7.4. Operating business segments
8.7.5. Product portfolio
8.7.6. Business performance
8.7.7. Key strategic moves and developments
8.8. Akzo Nobel N.V.
8.8.1. Company overview
8.8.2. Key executives
8.8.3. Company snapshot
8.8.4. Operating business segments
8.8.5. Product portfolio
8.8.6. Business performance
8.8.7. Key strategic moves and developments
8.9. CLARIANT
8.9.1. Company overview
8.9.2. Key executives
8.9.3. Company snapshot
8.9.4. Operating business segments
8.9.5. Product portfolio
8.9.6. Business performance
8.9.7. Key strategic moves and developments
8.10. Berryman Chemicals Inc.
8.10.1. Company overview
8.10.2. Key executives
8.10.3. Company snapshot
8.10.4. Operating business segments
8.10.5. Product portfolio
8.10.6. Business performance
8.10.7. Key strategic moves and developments
| ※参考情報 ガス処理とは、主に工業プロセスにおいて発生する有害ガスや不純物を取り除き、安全で環境に優しい形で排出するための技術や手法のことを指します。ガス処理は空気質の向上や環境保護の観点から非常に重要であり、多くの産業で利用されています。具体的には、化学工業、石油精製、発電所、廃棄物処理など、さまざまな分野で必要とされています。 ガス処理の主な種類としては、脱硫、脱硝、除塵、炭酸ガス回収、揮発性有機化合物(VOC)処理などがあります。脱硫は、燃料の燃焼時に生成される二酸化硫黄(SO2)や硫化水素(H2S)を取り除くプロセスです。これにより、大気中への硫黄酸化物の排出を減少させ、酸性雨の防止に寄与します。 脱硝は、窒素酸化物(NOx)を取り除く方法で、特に発電施設や交通機関から排出されるガスの浄化に利用されます。これによって、光化学スモッグや大気汚染の防止に繋がります。除塵は、工業煙や塵埃を取り除くことで、作業環境を清潔に保つだけでなく、呼吸器系の疾病を予防する効果があります。 炭酸ガス回収は、温暖化の原因となる二酸化炭素(CO2)を捕集し、地中に貯蔵する技術で、特に化石燃料を使用する発電所での利用が進んでいます。VOC処理は、揮発性有機化合物を削減する方法で、これらはしばしば化学工場や自動車修理工場から排出されるため、適切な処理が求められます。 ガス処理の用途は多岐にわたり、環境保護だけでなく、経済的な側面からも重要です。たとえば、発電所では、燃料の効率を向上させるために、ガス処理技術を用いて排出物を削減することが求められます。また、化学プロセスにおいては製品の品質を向上させるために、生成されるガスを適切に処理することが欠かせません。 関連技術としては、触媒技術、膜技術、吸着技術、化学反応技術などが挙げられます。触媒技術は、反応を促進し、生成物の選択性を高めるため、多くのガス処理プロセスで利用されています。たとえば、脱硝プロセスにおいては、選択的触媒還元(SCR)技術が一般的です。 膜技術は、特定のガスを透過させる膜を利用して、混合ガスから目的の成分を分離します。この技術は、軽量で高効率なガス処理が可能であるため、近年注目されています。吸着技術は、固体材料を用いて、ガス中の不純物を吸着する方法で、さまざまな産業で広く適用されています。 化学反応技術は、ガス中の成分と化学反応を起こすことで、望ましくない成分を除去する方法です。これは特に、ガス中の有害物質を処理する際に効果的です。たとえば、吸収塔を用いて、ガスが液体溶媒と接触することで反応を引き起こし、特定の成分を取り除くプロセスが一般的です。 ガス処理は、環境問題に対処するための重要な手段であり、持続可能な社会の実現に寄与しています。今後も技術革新が進む中で、新しいガス処理技術や効率的な処理方法が開発され、さらなる環境保護が期待されます。また、ガス処理技術の発展は、経済的な競争力の向上にも寄与するため、産業界においても注目されています。 |
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