オゾン発生装置:技術、市場、プレーヤーOzone Generation: Technologies, Markets and Players レポートのスコープ 本レポートは、オゾン生成産業を対象とする。世界市場の確定的かつ詳細な推定と予測を行い、その後、アプリケーションの種類と地域について詳細に分析します。継続的な市場動向、成長ドラ... もっと見る
サマリーレポートのスコープ本レポートは、オゾン生成産業を対象とする。世界市場の確定的かつ詳細な推定と予測を行い、その後、アプリケーションの種類と地域について詳細に分析します。継続的な市場動向、成長ドライバー、市場を阻害する課題についても考察しています。本レポートで分析する市場の範囲には、グローバルベースで水用途、空気・ガス処理、医療向けのOGTカテゴリーが含まれます。水アプリケーションの市場区分には、飲料水(例:自治体、ボトル入り、住宅)、廃水(例:産業、自治体)、プロセス水とその他の水(例:プールとスパ、養殖、残りのアプリケーション)が含まれます。空気・ガス処理分野には、半導体製造分野およびその他の空気・ガス処理分野が含まれます。 2021年を基準年として、予測期間2022-2027年の推定市場データを掲載しています。また、地域別(用途別地域)の市場規模も取り上げます。販売額の推定は、サプライチェーンにおける価格に基づいています。市場牽引力と産業構造が検討されます。国際的な側面は、世界の全地域について分析されます。 本レポートでは、COVID-19の影響を考察しています。2020年、世界の製造業の成長率はパンデミックによって深刻な影響を受けた。COVID-19のパンデミックは、すべての地域経済の進歩を止めた。世界中の様々な政府が、経済減速の影響を抑えるための対策を講じた。 レポートには、以下の内容が含まれています: - データ表74点、追加表50点 - オゾン生成の世界市場および技術の概要 - 2021年、2022年のデータと2027年までの年間複合成長率(CAGR)の予測による市場規模の推定と世界市場動向の分析 - タイプ、アプリケーション、地域に基づくオゾン生成市場の現在と将来の市場可能性のハイライトと定量化 - オゾン生成技術の使用に影響を与えるトレンドとその主要な供給元市場の特定 - 化学反応、放電、紫外線、酸素分子の光分解など、オゾン生成方法に関する情報 - 市場規模や性質に影響を与える可能性のある、技術、環境、法律/規制、政治的なトレンドの分析 - オゾン生成技術の進歩、水処理、空気・ガス処理、医療用のOGTカテゴリーについての説明。 - 業界の主要企業の市場シェア分析、独自技術、戦略的提携、その他の主要な市場戦略、関連する特許分析についての解説 - Evoqua Water Technologies Corp.、MKS Instruments Inc.、株式会社東芝、Xylem Inc.、Industrie De Nora、株式会社荏原製作所など、業界の主要企業の包括的な企業プロフィール 目次Table of ContentsChapter 1 Introduction 1.1 Overview 1.2 Study Goals and Objectives 1.3 Reasons for Doing This Study 1.4 What’s New in This Update? 1.5 Scope of Report 1.6 Information Sources 1.7 Methodology 1.8 Intended Audience 1.9 Geographic Breakdown 1.10 Analyst’s Credentials 1.11 BCC Custom Research 1.12 Related BCC Research Reports Chapter 2 Summary and Highlights 2.1 Overview of the Ozone Generation Industry 2.1.1 Population Growth Increasing the Need for OGT 2.1.2 OGT Offers Green Alternative 2.1.3 Air Pollution Good for OGT business 2.1.4 Successfully Completed Projects Supporting OGT Market Growth Chapter 3 Market Trends 3.1 Overview 3.2 Ozone Lifespan 3.3 Industry Landscape 3.4 History of Ozone Generation Technology 3.5 Megatrends and Innovations 3.6 Global Water Industry Trends 3.6.1 Consumer Health Awareness 3.6.2 Need for Water Management 3.7 Life Cycle Assessment of Ozone Generators 3.8 Regulatory Trends Chapter 4 Market Dynamics 4.1 Major Market Growth Drivers 4.1.1 Increasing Awareness of Environmental Pollution 4.1.2 Stringent Regulations 4.1.3 Advancements in Technology 4.1.4 Increasing Adoption in Emerging Markets 4.1.5 Demand for Water is Soaring in Response to Global Population 4.1.6 Rapid Urbanization: The Growth and Challenges of Modern Cities 4.1.7 Rapid Growth in Industrialization 4.1.8 Growth in Water Treatment Industries 4.1.9 Climate Change, Extreme Weather Events and OGT 4.1.10 Greater Health Awareness 4.1.11 Higher Water Quality Standards 4.1.12 Population Shifts Guiding OGT Market 4.1.13 Increasing Global Water Consumption Raising OGT demand 4.1.14 Freshwater Depletion and the Need for Water Purification 4.1.15 Water Scarcity and Stress Increasing Water Purification Needs 4.1.16 Mass Migrations Weighing Heavily on Water Supplies 4.1.17 Air Pollution is Expanding Interest in Air Purification 4.1.18 Ozone Generation Technologies and Global Wealth 4.1.19 OGT Use in Natural Disaster Response Incidents 4.1.20 OGTs and Healthy Work Environments 4.1.21 OGT Used to Decrease Harsh Chemical Use 4.1.22 Bottled Water Market Growth and OGT 4.1.23 Economic Benefits of Ozone Use 4.1.24 Availability of Trained Staff 4.2 Market Challenges/Restraints 4.2.1 Higher Installation Cost of Ozone Generation Technology 4.2.2 Lack of Awareness 4.2.3 Limited Access to Financing 4.2.4 Limited Scalability of Ozone Generation Technology 4.2.5 Competing Technologies: Ozone Not Alone 4.2.6 Technical Challenges 4.2.7 Pricing Pressure 4.2.8 Shortage of Semiconductor Chips 4.3 Key Market Growth Opportunities 4.3.1 Market for Ozone Generation Growth in Healthcare Sector 4.3.2 Market for Ozone Generation Growth in Food and Beverage Industry 4.3.3 Market for Ozone Generation Growth in Agriculture Industry 4.4 Successfully Completed Projects Support OGT Market Growth 4.4.1 U.S. 4.4.2 Asia 4.4.3 Europe 4.6 Ozone Installations 4.5 Ozone Therapy to Combat Illness 4.5.1 Varying Regional Acceptance of Ozone Therapy 4.5.2 OGT's Effect on Thriving Medical Markets 4.5.3 Media Safety Concerns Over Ozone 4.5.4 Ozone Safety Measures 4.6 New Technologies Combating High Costs Associated with OGT 4.7 OGT and Food Security and Safety Issues 4.8 Semiconductor Industry’s Volatility and Its Effects on the OGT Market 4.9 OGT and Endocrine Disrupting Compounds 4.10 Water Recycling and Reuse Market Spurring Growth of the OGT Market Chapter 5 Ozone Generation Technology Background 5.1 Technology Overview 5.2 Ozone Generation Technology Methods 5.2.1 Corona Discharge 5.2.2 Ultraviolet 5.2.3 Electrolysis 5.2.4 Cold Plasma 5.2.5 Advanced Oxidation Processes 5.3 Ozone Generation Technology Applications 5.3.1 Ozone in Water Applications 5.3.2 Ozone in Air and Gas 5.3.3 Ozone in Medicine 5.4 Structure and Design of Ozone Generator 5.5 Ozone Generation Working Principle 5.5.1 Corona Discharge 5.5.2 Ultraviolet Radiation 5.5.3 Electrolysis 5.6 Benefits of Ozone Generation 5.7 Manufacturing Process of Ozone Generators 5.8 Ozone Production, Concentration and Solubility 5.9 Raw Material Trends 5.10 Environmental Concerns Regarding Atmospheric Ozone 5.11 Ozone as an Antioxidant and Disinfectant Chapter 6 Ozone Generation Industry Value Chain 6.1 Value Chain Analysis Chapter 7 Impact of COVID-19 and Russia/Ukraine War on the Market for Ozone Generation 7.1 Impact of COVID-19 on the Ozone Generation Industry 7.2 Impact of the Russia/Ukraine War on the Ozone Generation Industry Chapter 8 Ozone GenerationTechnology: Methods and Applications 8.1 Overview 8.2 Water Applications 8.2.1 Potable Water 8.2.2 Wastewater 8.2.3 Process Water 8.2.4 Other Water Treatment 8.3 Air and Gas Treatment 8.3.1 Air and Gas Treatment Segments 8.3.2 Other Air and Gas Treatment Segments 8.3.3 Food Storage 8.4 Medicine 8.4.1 Generating Medical Ozone 8.4.2 Medical Ozone Applications Chapter 9 Market Breakdown by Region 9.1 Global Market for Ozone Generation 9.2 Asia-Pacific 9.2.1 China 9.2.2 India 9.2.3 Japan 9.2.4 South Korea 9.3 North America 9.3.1 U.S. 9.3.2 Canada 9.4 Europe 9.4.1 Germany 9.4.2 U.K. 9.4.3 France 9.4.4 Other Countries 9.5 Middle East 9.6 Latin America and Caribbean 9.7 Africa 9.8 Australia and Oceania Chapter 10 Patent Analysis 10.1 Patent Analysis 10.2 Primozone's Improvement on Cold Plasma Ozone Generation 10.3 Ozone Nano-Bubbles of the Future 10.4 ROSE Technology and Remote-Control Operation 10.5 Household Ozone Spray 10.6 Ozone to Degrade Aflatoxin 10.7 Xylem's Advanced Oxidation Process 10.8 Ecosphere Fracks with Ozone 10.9 Roving Blue MVP Proven in Military Demonstrations 10.10 Scent Crusher Ozone Gear Bag 10.11 Touch Screen Water Faucet Ozone Generator 10.12 Mobile Disinfection Carts 10.13 Ozone Direct's Ozone Cabinet 10.14 Oxidation Technologies' Ozone Remediation Trailers 10.15 Primozone's Mobile and Containerized SM900 Chapter 11 Competitive Landscape 11.1 Overview 11.2 Company Market Share Analysis for Ozone Generation 11.3 Mergers, Acquisitions and New Product Developments Chapter 12 Company Profiles A2Z OZONE INC. ABSOLUTE OZONE AQUA-SUN OZONE INTERNATIONAL INC. ARGENTOX OZONE TECHNOLOGY GMBH BIOTEK ENVIRONMENTAL SCIENCE LTD. BIOZONE MANUFACTURING SOLUTIONS BWT HOLDING GMBH CHEMTRONICS TECHNOLOGIES CLEARWATER TECH LLC CMP DRAMM CORP. EBARA CORP. ECO SAFE SYSTEMS USA INC. ELOZO OY ENVRON ENVIRONMENTAL LTD. ERWIN SANDER ELECKTROAPPARETEBAU GMBH ESCO INTERNATIONAL EVOQUA WATER TECHNOLOGIES CORP. FARADAY OZONE PRODUCTS PRIVATE LIMITED FIN-TEK OZONE WATER TREATMENT GUARDIAN OZONE HANGZHOU RONGXIN ELECTRONIC EQUIPMENT CO. LTD. INDUSTRIE DE NORA S.P.A. INTERNATIONAL OZONE TECHNOLOGIES GROUP INC. JENESCO INC. KAUFMANN UMWELTTECHNIK GMBH LENNTECH B.V. LIFETECH SRO MAZZEI INJECTOR COMPANY LLC MEDOZONS LTD. MELLIFIQ METAWATER USA INC. MITSUBISHI ELECTRIC CORP. MKS INSTRUMENTS INC. NORLAND INTERNATIONAL INC. NUTEK INTERNATIONAL INC. OZOCAN CORP. OZONE DIRECT UK LTD. OZONE SAFE FOOD TECHNOLOGIES INC. OZONE SOLUTIONS OZONE WATER SYSTEMS INC. OZONOLOGY INC. PINNACLE OZONE SOLUTIONS LLC PROMINENT GMBH PROMOLIFE INC. PRIMOZONE PRODUCTION AB QINGDAO GUOLIN ENVIRONMENTAL TECHNOLOGY CO. LTD. RES REMEDIATION SERVICES RGF ENVIRONMENTAL GROUP INC. SEWEC OZON GMBH SUEZ S.A. SPARTAN ENVIRONMENTAL TECHNOLOGIES LLC TELEDYNE TECHNOLOGIES INC. TOSHIBA CORP. TRIWIN WATERTEC CO. LTD. WASSERTEC OZONE SYSTEMS XYLEM INC. Chapter 13 Appendix: Abbreviations"
SummaryReport Scope: Table of ContentsTable of ContentsChapter 1 Introduction 1.1 Overview 1.2 Study Goals and Objectives 1.3 Reasons for Doing This Study 1.4 What’s New in This Update? 1.5 Scope of Report 1.6 Information Sources 1.7 Methodology 1.8 Intended Audience 1.9 Geographic Breakdown 1.10 Analyst’s Credentials 1.11 BCC Custom Research 1.12 Related BCC Research Reports Chapter 2 Summary and Highlights 2.1 Overview of the Ozone Generation Industry 2.1.1 Population Growth Increasing the Need for OGT 2.1.2 OGT Offers Green Alternative 2.1.3 Air Pollution Good for OGT business 2.1.4 Successfully Completed Projects Supporting OGT Market Growth Chapter 3 Market Trends 3.1 Overview 3.2 Ozone Lifespan 3.3 Industry Landscape 3.4 History of Ozone Generation Technology 3.5 Megatrends and Innovations 3.6 Global Water Industry Trends 3.6.1 Consumer Health Awareness 3.6.2 Need for Water Management 3.7 Life Cycle Assessment of Ozone Generators 3.8 Regulatory Trends Chapter 4 Market Dynamics 4.1 Major Market Growth Drivers 4.1.1 Increasing Awareness of Environmental Pollution 4.1.2 Stringent Regulations 4.1.3 Advancements in Technology 4.1.4 Increasing Adoption in Emerging Markets 4.1.5 Demand for Water is Soaring in Response to Global Population 4.1.6 Rapid Urbanization: The Growth and Challenges of Modern Cities 4.1.7 Rapid Growth in Industrialization 4.1.8 Growth in Water Treatment Industries 4.1.9 Climate Change, Extreme Weather Events and OGT 4.1.10 Greater Health Awareness 4.1.11 Higher Water Quality Standards 4.1.12 Population Shifts Guiding OGT Market 4.1.13 Increasing Global Water Consumption Raising OGT demand 4.1.14 Freshwater Depletion and the Need for Water Purification 4.1.15 Water Scarcity and Stress Increasing Water Purification Needs 4.1.16 Mass Migrations Weighing Heavily on Water Supplies 4.1.17 Air Pollution is Expanding Interest in Air Purification 4.1.18 Ozone Generation Technologies and Global Wealth 4.1.19 OGT Use in Natural Disaster Response Incidents 4.1.20 OGTs and Healthy Work Environments 4.1.21 OGT Used to Decrease Harsh Chemical Use 4.1.22 Bottled Water Market Growth and OGT 4.1.23 Economic Benefits of Ozone Use 4.1.24 Availability of Trained Staff 4.2 Market Challenges/Restraints 4.2.1 Higher Installation Cost of Ozone Generation Technology 4.2.2 Lack of Awareness 4.2.3 Limited Access to Financing 4.2.4 Limited Scalability of Ozone Generation Technology 4.2.5 Competing Technologies: Ozone Not Alone 4.2.6 Technical Challenges 4.2.7 Pricing Pressure 4.2.8 Shortage of Semiconductor Chips 4.3 Key Market Growth Opportunities 4.3.1 Market for Ozone Generation Growth in Healthcare Sector 4.3.2 Market for Ozone Generation Growth in Food and Beverage Industry 4.3.3 Market for Ozone Generation Growth in Agriculture Industry 4.4 Successfully Completed Projects Support OGT Market Growth 4.4.1 U.S. 4.4.2 Asia 4.4.3 Europe 4.6 Ozone Installations 4.5 Ozone Therapy to Combat Illness 4.5.1 Varying Regional Acceptance of Ozone Therapy 4.5.2 OGT's Effect on Thriving Medical Markets 4.5.3 Media Safety Concerns Over Ozone 4.5.4 Ozone Safety Measures 4.6 New Technologies Combating High Costs Associated with OGT 4.7 OGT and Food Security and Safety Issues 4.8 Semiconductor Industry’s Volatility and Its Effects on the OGT Market 4.9 OGT and Endocrine Disrupting Compounds 4.10 Water Recycling and Reuse Market Spurring Growth of the OGT Market Chapter 5 Ozone Generation Technology Background 5.1 Technology Overview 5.2 Ozone Generation Technology Methods 5.2.1 Corona Discharge 5.2.2 Ultraviolet 5.2.3 Electrolysis 5.2.4 Cold Plasma 5.2.5 Advanced Oxidation Processes 5.3 Ozone Generation Technology Applications 5.3.1 Ozone in Water Applications 5.3.2 Ozone in Air and Gas 5.3.3 Ozone in Medicine 5.4 Structure and Design of Ozone Generator 5.5 Ozone Generation Working Principle 5.5.1 Corona Discharge 5.5.2 Ultraviolet Radiation 5.5.3 Electrolysis 5.6 Benefits of Ozone Generation 5.7 Manufacturing Process of Ozone Generators 5.8 Ozone Production, Concentration and Solubility 5.9 Raw Material Trends 5.10 Environmental Concerns Regarding Atmospheric Ozone 5.11 Ozone as an Antioxidant and Disinfectant Chapter 6 Ozone Generation Industry Value Chain 6.1 Value Chain Analysis Chapter 7 Impact of COVID-19 and Russia/Ukraine War on the Market for Ozone Generation 7.1 Impact of COVID-19 on the Ozone Generation Industry 7.2 Impact of the Russia/Ukraine War on the Ozone Generation Industry Chapter 8 Ozone GenerationTechnology: Methods and Applications 8.1 Overview 8.2 Water Applications 8.2.1 Potable Water 8.2.2 Wastewater 8.2.3 Process Water 8.2.4 Other Water Treatment 8.3 Air and Gas Treatment 8.3.1 Air and Gas Treatment Segments 8.3.2 Other Air and Gas Treatment Segments 8.3.3 Food Storage 8.4 Medicine 8.4.1 Generating Medical Ozone 8.4.2 Medical Ozone Applications Chapter 9 Market Breakdown by Region 9.1 Global Market for Ozone Generation 9.2 Asia-Pacific 9.2.1 China 9.2.2 India 9.2.3 Japan 9.2.4 South Korea 9.3 North America 9.3.1 U.S. 9.3.2 Canada 9.4 Europe 9.4.1 Germany 9.4.2 U.K. 9.4.3 France 9.4.4 Other Countries 9.5 Middle East 9.6 Latin America and Caribbean 9.7 Africa 9.8 Australia and Oceania Chapter 10 Patent Analysis 10.1 Patent Analysis 10.2 Primozone's Improvement on Cold Plasma Ozone Generation 10.3 Ozone Nano-Bubbles of the Future 10.4 ROSE Technology and Remote-Control Operation 10.5 Household Ozone Spray 10.6 Ozone to Degrade Aflatoxin 10.7 Xylem's Advanced Oxidation Process 10.8 Ecosphere Fracks with Ozone 10.9 Roving Blue MVP Proven in Military Demonstrations 10.10 Scent Crusher Ozone Gear Bag 10.11 Touch Screen Water Faucet Ozone Generator 10.12 Mobile Disinfection Carts 10.13 Ozone Direct's Ozone Cabinet 10.14 Oxidation Technologies' Ozone Remediation Trailers 10.15 Primozone's Mobile and Containerized SM900 Chapter 11 Competitive Landscape 11.1 Overview 11.2 Company Market Share Analysis for Ozone Generation 11.3 Mergers, Acquisitions and New Product Developments Chapter 12 Company Profiles A2Z OZONE INC. ABSOLUTE OZONE AQUA-SUN OZONE INTERNATIONAL INC. ARGENTOX OZONE TECHNOLOGY GMBH BIOTEK ENVIRONMENTAL SCIENCE LTD. BIOZONE MANUFACTURING SOLUTIONS BWT HOLDING GMBH CHEMTRONICS TECHNOLOGIES CLEARWATER TECH LLC CMP DRAMM CORP. EBARA CORP. ECO SAFE SYSTEMS USA INC. ELOZO OY ENVRON ENVIRONMENTAL LTD. ERWIN SANDER ELECKTROAPPARETEBAU GMBH ESCO INTERNATIONAL EVOQUA WATER TECHNOLOGIES CORP. FARADAY OZONE PRODUCTS PRIVATE LIMITED FIN-TEK OZONE WATER TREATMENT GUARDIAN OZONE HANGZHOU RONGXIN ELECTRONIC EQUIPMENT CO. LTD. INDUSTRIE DE NORA S.P.A. INTERNATIONAL OZONE TECHNOLOGIES GROUP INC. JENESCO INC. KAUFMANN UMWELTTECHNIK GMBH LENNTECH B.V. LIFETECH SRO MAZZEI INJECTOR COMPANY LLC MEDOZONS LTD. MELLIFIQ METAWATER USA INC. MITSUBISHI ELECTRIC CORP. MKS INSTRUMENTS INC. NORLAND INTERNATIONAL INC. NUTEK INTERNATIONAL INC. OZOCAN CORP. OZONE DIRECT UK LTD. OZONE SAFE FOOD TECHNOLOGIES INC. OZONE SOLUTIONS OZONE WATER SYSTEMS INC. OZONOLOGY INC. PINNACLE OZONE SOLUTIONS LLC PROMINENT GMBH PROMOLIFE INC. PRIMOZONE PRODUCTION AB QINGDAO GUOLIN ENVIRONMENTAL TECHNOLOGY CO. LTD. RES REMEDIATION SERVICES RGF ENVIRONMENTAL GROUP INC. SEWEC OZON GMBH SUEZ S.A. SPARTAN ENVIRONMENTAL TECHNOLOGIES LLC TELEDYNE TECHNOLOGIES INC. TOSHIBA CORP. TRIWIN WATERTEC CO. LTD. WASSERTEC OZONE SYSTEMS XYLEM INC. Chapter 13 Appendix: Abbreviations"
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