PFAS Water Treatment Market - 2026-2035
PFAS Water Treatment Market reached USD 3.4 Billion in 2025 and is expected to reach USD 16.2 billion by 2035, growing with a CAGR of 16.90% during the forecast period 2026-2035.
The PFAS Water Treatment Market emerges as a key focus in DataM Intelligence latest in-depth analysis, where seasoned researchers harness advanced data analytics and strategic foresight to deliver unparalleled market intelligence. This insightful report meticulously explores the competitive landscape, profiling key players and their forward-thinking innovations in product development, pricing strategies, financial metrics, and global expansion initiatives. By uncovering the driving forces, market dynamics, and disruptive trends shaping the future, this research equips industry stakeholders with the actionable insights needed to make informed decisions in an increasingly dynamic and competitive environment.
A PFAS Water Treatment Market is a data-driven software solution that collects, integrates, analyzes, and visualizes customer data across various touchpoints to generate actionable insights. These platforms help businesses understand customer behaviors, preferences, and purchasing patterns in real time, enabling personalized marketing, enhanced customer engagement, and data-driven decision-making.
By Technology
Both primary and secondary data sources have been used in the global PFAS Water Treatment Market research report. During the research process, a wide range of industry-affecting factors are examined, including governmental regulations, market conditions, competitive levels, historical data, market situation, technological advancements, upcoming developments, in related businesses, as well as market volatility, prospects, potential barriers, and challenges.
The PFAS Water Treatment Market emerges as a key focus in DataM Intelligence latest in-depth analysis, where seasoned researchers harness advanced data analytics and strategic foresight to deliver unparalleled market intelligence. This insightful report meticulously explores the competitive landscape, profiling key players and their forward-thinking innovations in product development, pricing strategies, financial metrics, and global expansion initiatives. By uncovering the driving forces, market dynamics, and disruptive trends shaping the future, this research equips industry stakeholders with the actionable insights needed to make informed decisions in an increasingly dynamic and competitive environment.
A PFAS Water Treatment Market is a data-driven software solution that collects, integrates, analyzes, and visualizes customer data across various touchpoints to generate actionable insights. These platforms help businesses understand customer behaviors, preferences, and purchasing patterns in real time, enabling personalized marketing, enhanced customer engagement, and data-driven decision-making.
By Technology
- Granular Activated Carbon (GAC)
- Ion Exchange Resins
- Reverse Osmosis (RO)
- Nanofiltration (NF)
- Advanced Oxidation Processes (AOP)
- Electrochemical Oxidation
- Plasma-Based PFAS Destruction
- Foam Fractionation
- Other Emerging PFAS Treatment Technologies
- Long-Chain PFAS
- Perfluorooctanoic Acid (PFOA)
- Perfluorooctane Sulfonate (PFOS)
- Other Long-Chain PFAS
- Short-Chain PFAS
- Perfluorobutanoic Acid (PFBA)
- Perfluorobutane Sulfonate (PFBS)
- Other Short-Chain PFAS
- PFAS Mixtures
- Municipal Water Utilities
- Drinking Water Utilities
- Public Water Authorities
- Regional Water Boards
- Industrial Facilities
- Chemical & Petrochemical
- Semiconductor & Electronics
- Pulp & Paper
- Textile Manufacturing
- Metal Plating & Surface Finishing
- Oil & Gas
- Mining
- Others
- Environmental Remediation Contractors
- Site Remediation Companies
- Environmental Engineering & Consulting Firms
- Hazardous Waste Management Companies
- Defense & Military Facilities
- Military Bases
- Defense Manufacturing Facilities
- Training Grounds
- Airports
- Commercial Airports
- Military Airbases
- Aircraft Maintenance Facilities
- Commercial & Institutional Facilities
- Universities & Research Institutions
- Hospitals & Healthcare Facilities
- Hotels & Hospitality
- Corporate Campuses
- Commercial Buildings
- Groundwater Remediation
- Wastewater Treatment
- Landfill Leachate Treatment
- Others
- North America (U.S., Canada, Mexico)
- Europe (U.K., Italy, Germany, Russia, France, Spain, The Netherlands and Rest of Europe)
- Asia-Pacific (India, Japan, China, South Korea, Australia, Indonesia Rest of Asia Pacific)
- South America (Colombia, Brazil, Argentina, Rest of South America)
- Middle East & Africa (Saudi Arabia, U.A.E., South Africa, Rest of Middle East & Africa)
- Go-to-market Strategy.
- Neutral perspective on the market performance.
- Development trends, competitive landscape analysis, supply side analysis, demand side analysis, year-on-year growth, competitive benchmarking, vendor identification, and other significant analysis, as well as development status.
- Customized regional/country reports as per request and country level analysis.
- Potential & niche segments and regions exhibiting promising growth covered.
- Analysis of Market Size (historical and forecast), Total Addressable Market (TAM), Serviceable Available Market (SAM), Serviceable Obtainable Market (SOM), Market Growth, Technological Trends, Market Share, Market Dynamics, Competitive Landscape and Major Players (Innovators, Start-ups, Laggard, and Pioneer).
Both primary and secondary data sources have been used in the global PFAS Water Treatment Market research report. During the research process, a wide range of industry-affecting factors are examined, including governmental regulations, market conditions, competitive levels, historical data, market situation, technological advancements, upcoming developments, in related businesses, as well as market volatility, prospects, potential barriers, and challenges.
1. DEFINITION AND OVERVIEW
1.1. Study Objectives
1.2. Market Definition
1.3. Market Scope
1.4. Stakeholder Analysis
1.5. Currency Considered
1.6. Study Period
2. EXECUTIVE SUMMARY
2.1. Key Takeaways
2.2. Top To Bottom Analysis
2.3. Market Share Analysis
2.4. Data Points from Key Primary Interviews
2.5. Data Points from Key Secondary Databases
2.6. Market Snapshot
2.7. Geographical Snapshot
3. DYNAMICS
3.1. Impacting Factors
3.1.1. Drivers
3.1.1.1. The introduction of legally enforceable PFAS limits for drinking water is driving the market.
3.1.1.2. Rising Identification of PFAS-Contaminated Water Sources is expanding the number of remediation projects worldwide.
3.1.1.3. Expansion of Municipal Water Infrastructure Investments to comply with PFAS regulations.
3.1.2. Restraints
3.1.2.1. High Capital and Operating Costs of Advanced PFAS Treatment Systems such as reverse osmosis (RO), ion exchange resins, plasma treatment, electrochemical oxidation.
3.1.2.2. Limited Commercial Maturity of PFAS Destruction Technologies.
3.1.2.3. High Analytical Testing and Continuous Monitoring are increasing the overall cost of compliance for municipalities and industrial operators.
3.1.3. Opportunity
3.1.3.1. Increasing Global PFAS Regulations Creating Demand for Advanced Treatment Solutions
3.1.3.2. Expansion of Municipal Drinking Water Treatment Projects
3.1.3.3. Rising Demand for Industrial PFAS Wastewater Treatment
3.1.4. Trends
3.1.4.1. Shift Toward Advanced PFAS Destruction Technologies
3.1.4.2. Growing Adoption of Granular Activated Carbon (GAC) and Ion Exchange Solutions
3.1.4.3. Increasing Regulatory-Driven Investment in PFAS Treatment Infrastructure
3.1.5. Impact Analysis
4. INDUSTRY ANALYSIS
4.1. Geopolitical & Supply Chain Exposure
4.1.1. Supply chain constraints
4.1.1.1. Raw material access
4.1.2. Trade policy changes
4.2. Social & Patient-Centric Factors
4.2.1. Growing Public Awareness of PFAS Health Risks
4.2.1.1. Rising Consumer Demand for Safe Drinking Water
4.2.1.2. Increased Community Activism and Environmental Advocacy
4.3. Economic Factors
4.3.1. Increasing Government Funding for Water Infrastructure Modernization
4.3.1.1. Growing Municipal Expenditure on PFAS Compliance
4.3.1.2. High Treatment Costs Creating Demand for Cost-Optimized Solutions
4.4. Pricing Analysis
4.4.1. Pricing transparency trends
4.4.1.1. Premium vs generic pricing
4.4.2. Reimbursement model shifts
4.5. Regulatory Analysis
4.5.1. Policy updates
4.5.1.1. Compliance landscape
4.5.2. Regulation enforcement
5. BY TECHNOLOGY
5.1. Introduction
5.1.1. Market Size Analysis and Y-o-Y Growth Analysis, By Technology
5.1.2. Market Attractiveness Index, By Technology
5.2. Granular Activated Carbon (GAC)
5.3. Ion Exchange Resins
5.4. Reverse Osmosis (RO)
5.5. Nanofiltration (NF)
5.6. Advanced Oxidation Processes (AOP)
5.7. Electrochemical Oxidation
5.8. Plasma-Based PFAS Destruction
5.9. Foam Fractionation
5.10. Other Emerging PFAS Treatment Technologies
6. BY PFAS TYPE TREATED
6.1. Introduction
6.1.1. Market Size Analysis and Y-o-Y Growth Analysis, By PFAS Type Treated
6.1.2. Market Attractiveness Index, By PFAS Type Treated
6.2. Long-Chain PFAS
6.2.1. Perfluorooctanoic Acid (PFOA)
6.2.2. Perfluorooctane Sulfonate (PFOS)
6.2.3. Other Long-Chain PFAS
6.3. Short-Chain PFAS
6.3.1. Perfluorobutanoic Acid (PFBA)
6.3.2. Perfluorobutane Sulfonate (PFBS)
6.3.3. Other Short-Chain PFAS
6.4. PFAS Mixtures
7. BY END USER
7.1. Introduction
7.1.1. Market Size Analysis and Y-o-Y Growth Analysis, By End User
7.1.2. Market Attractiveness Index, By End User
7.2. Municipal Water Utilities
7.2.1. Drinking Water Utilities
7.2.2. Public Water Authorities
7.2.3. Regional Water Boards
7.3. Industrial Facilities
7.3.1. Chemical & Petrochemical
7.3.2. Semiconductor & Electronics
7.3.3. Pulp & Paper
7.3.4. Textile Manufacturing
7.3.5. Metal Plating & Surface Finishing
7.3.6. Oil & Gas
7.3.7. Mining
7.3.8. Others
7.4. Environmental Remediation Contractors
7.4.1. Site Remediation Companies
7.4.2. Environmental Engineering & Consulting Firms
7.4.3. Hazardous Waste Management Companies
7.5. Defense & Military Facilities
7.5.1. Military Bases
7.5.2. Defense Manufacturing Facilities
7.5.3. Training Grounds
7.6. Airports
7.6.1. Commercial Airports
7.6.2. Military Airbases
7.6.3. Aircraft Maintenance Facilities
7.7. Commercial & Institutional Facilities
7.7.1. Universities & Research Institutions
7.7.2. Hospitals & Healthcare Facilities
7.7.3. Hotels & Hospitality
7.7.4. Corporate Campuses
7.7.5. Commercial Buildings
7.8. Groundwater Remediation
7.9. Wastewater Treatment
7.10. Landfill Leachate Treatment
7.11. Others
8. BY REGION
8.1. Introduction
8.1.1. Market Size Analysis and Y-o-Y Growth Analysis, By Region
8.1.2. Market Attractiveness Index, By Region
8.2. North America
8.2.1. Introduction
8.2.2. Key Region-Specific Dynamics
8.2.3. Market Size Analysis and Y-o-Y Growth Analysis, By Technology
8.2.4. Market Size Analysis and Y-o-Y Growth Analysis, By PFAS Type Treated
8.2.5. Market Size Analysis and Y-o-Y Growth Analysis, By End User
8.2.6. Market Size Analysis and Y-o-Y Growth Analysis, By Country
8.2.6.1. US
8.2.6.2. Canada
8.2.6.3. Mexico
8.3. Europe
8.3.1. Introduction
8.3.2. Key Region-Specific Dynamics
8.3.3. Market Size Analysis and Y-o-Y Growth Analysis, By Technology
8.3.4. Market Size Analysis and Y-o-Y Growth Analysis, By PFAS Type Treated
8.3.5. Market Size Analysis and Y-o-Y Growth Analysis, By End User
8.3.6. Market Size Analysis and Y-o-Y Growth Analysis, By Country
8.3.6.1. Germany
8.3.6.2. United Kingdom
8.3.6.3. France
8.3.6.4. Italy
8.3.6.5. Spain
8.3.6.6. Netherlands
8.3.6.7. Switzerland
8.3.6.8. Sweden
8.3.6.9. Norway
8.3.6.10. Denmark
8.3.6.11. Belgium
8.3.6.12. Poland
8.3.6.13. Austria
8.3.6.14. Ireland
8.3.6.15. Portugal
8.3.6.16. Greece
8.3.6.17. Finland
8.3.6.18. Rest of Europe
8.4. Latin America
8.4.1. Introduction
8.4.2. Key Region-Specific Dynamics
8.4.3. Market Size Analysis and Y-o-Y Growth Analysis, By Technology
8.4.4. Market Size Analysis and Y-o-Y Growth Analysis, By PFAS Type Treated
8.4.5. Market Size Analysis and Y-o-Y Growth Analysis, By End User
8.4.6. Market Size Analysis and Y-o-Y Growth Analysis, By Country
8.4.6.1. Brazil
8.4.6.2. Argentina
8.4.6.3. Chile
8.4.6.4. Colombia
8.4.6.5. Peru
8.4.6.6. Rest of Latin America
8.5. Asia-Pacific
8.5.1. Introduction
8.5.2. Key Region-Specific Dynamics
8.5.3. Market Size Analysis and Y-o-Y Growth Analysis, By Technology
8.5.4. Market Size Analysis and Y-o-Y Growth Analysis, By PFAS Type Treated
8.5.5. Market Size Analysis and Y-o-Y Growth Analysis, By End User
8.5.6. Market Size Analysis and Y-o-Y Growth Analysis, By Country
8.5.6.1. China
8.5.6.2. Japan
8.5.6.3. India
8.5.6.4. South Korea
8.5.6.5. Australia
8.5.6.6. New Zealand
8.5.6.7. Singapore
8.5.6.8. Malaysia
8.5.6.9. Thailand
8.5.6.10. Indonesia
8.5.6.11. Vietnam
8.5.6.12. Philippines
8.5.6.13. Taiwan
8.5.6.14. Rest of Asia Pacific
8.6. Middle East and Africa
8.6.1. Introduction
8.6.2. Key Region-Specific Dynamics
8.6.3. Market Size Analysis and Y-o-Y Growth Analysis, By Technology
8.6.4. Market Size Analysis and Y-o-Y Growth Analysis, By PFAS Type Treated
8.6.5. Market Size Analysis and Y-o-Y Growth Analysis, By End User
8.6.6. Market Size Analysis and Y-o-Y Growth Analysis, By Country
8.6.6.1. Saudi Arabia
8.6.6.2. United Arab Emirates
8.6.6.3. Qatar
8.6.6.4. Kuwait
8.6.6.5. Oman
8.6.6.6. Bahrain
8.6.6.7. South Africa
8.6.6.8. Egypt
8.6.6.9. Nigeria
8.6.6.10. Morocco
8.6.6.11. Rest of Middle East & Africa
9. COMPETITIVE LANDSCAPE ANALYSIS
9.1. Competitive Scenario
9.2. Market Positioning/Share Analysis
9.3. Mergers and Acquisitions Analysis
9.4. Partner Identification Analysis
9.5. Investment & Funding Landscape
9.6. Strategic Alliances & Innovation Pipelines
10. COMPANY PROFILES
10.1. Veolia Water Technologies*
10.1.1. Company Overview
10.1.2. Product Portfolio
10.1.3. Revenue Analysis
10.1.4. Pricing Analysis
10.1.5. SWOT Analysis
10.1.6. Recent Developments
10.1.6.1. Major Deals
10.1.6.2. M&A
10.1.6.3. Collaboration
10.1.6.4. Acquisition
10.1.6.5. Joint Ventures
10.1.6.6. Innovations
10.1.7. Recent News
10.1.7.1. Events
10.1.7.2. Conferences
10.1.7.3. Symposiums
10.1.7.4. Webinars
10.2. Xylem Inc.
10.3. Calgon Carbon Corporation
10.4. AECOM
10.5. Jacobs Solutions Inc.
10.6. WSP Global Inc.
10.7. Stantec Inc.
10.8. CDM Smith
10.9. Black & Veatch
10.10. Kurita Water Industries Ltd.
10.11. DuPont Water Solutions
10.12. Aqua-Aerobic Systems, Inc. (LIST NOT EXHAUSTIVE)
11. PFAS WATER TREATMENT MARKET – RESEARCH METHODOLOGY
11.1. Research Data
11.1.1. Secondary Data
11.1.2. Primary Data
11.1.3. CAGR Analysis
11.2. Market Size Estimation Methodology
11.2.1. Bottom-Up Approach
11.2.2. Top-Down Approach
11.3. Market Breakdown & Data Triangulation
11.4. Research Assumptions
11.5. Limitations
12. APPENDIX
12.1. About Us and Services
12.2. Contact Us
1.1. Study Objectives
1.2. Market Definition
1.3. Market Scope
1.4. Stakeholder Analysis
1.5. Currency Considered
1.6. Study Period
2. EXECUTIVE SUMMARY
2.1. Key Takeaways
2.2. Top To Bottom Analysis
2.3. Market Share Analysis
2.4. Data Points from Key Primary Interviews
2.5. Data Points from Key Secondary Databases
2.6. Market Snapshot
2.7. Geographical Snapshot
3. DYNAMICS
3.1. Impacting Factors
3.1.1. Drivers
3.1.1.1. The introduction of legally enforceable PFAS limits for drinking water is driving the market.
3.1.1.2. Rising Identification of PFAS-Contaminated Water Sources is expanding the number of remediation projects worldwide.
3.1.1.3. Expansion of Municipal Water Infrastructure Investments to comply with PFAS regulations.
3.1.2. Restraints
3.1.2.1. High Capital and Operating Costs of Advanced PFAS Treatment Systems such as reverse osmosis (RO), ion exchange resins, plasma treatment, electrochemical oxidation.
3.1.2.2. Limited Commercial Maturity of PFAS Destruction Technologies.
3.1.2.3. High Analytical Testing and Continuous Monitoring are increasing the overall cost of compliance for municipalities and industrial operators.
3.1.3. Opportunity
3.1.3.1. Increasing Global PFAS Regulations Creating Demand for Advanced Treatment Solutions
3.1.3.2. Expansion of Municipal Drinking Water Treatment Projects
3.1.3.3. Rising Demand for Industrial PFAS Wastewater Treatment
3.1.4. Trends
3.1.4.1. Shift Toward Advanced PFAS Destruction Technologies
3.1.4.2. Growing Adoption of Granular Activated Carbon (GAC) and Ion Exchange Solutions
3.1.4.3. Increasing Regulatory-Driven Investment in PFAS Treatment Infrastructure
3.1.5. Impact Analysis
4. INDUSTRY ANALYSIS
4.1. Geopolitical & Supply Chain Exposure
4.1.1. Supply chain constraints
4.1.1.1. Raw material access
4.1.2. Trade policy changes
4.2. Social & Patient-Centric Factors
4.2.1. Growing Public Awareness of PFAS Health Risks
4.2.1.1. Rising Consumer Demand for Safe Drinking Water
4.2.1.2. Increased Community Activism and Environmental Advocacy
4.3. Economic Factors
4.3.1. Increasing Government Funding for Water Infrastructure Modernization
4.3.1.1. Growing Municipal Expenditure on PFAS Compliance
4.3.1.2. High Treatment Costs Creating Demand for Cost-Optimized Solutions
4.4. Pricing Analysis
4.4.1. Pricing transparency trends
4.4.1.1. Premium vs generic pricing
4.4.2. Reimbursement model shifts
4.5. Regulatory Analysis
4.5.1. Policy updates
4.5.1.1. Compliance landscape
4.5.2. Regulation enforcement
5. BY TECHNOLOGY
5.1. Introduction
5.1.1. Market Size Analysis and Y-o-Y Growth Analysis, By Technology
5.1.2. Market Attractiveness Index, By Technology
5.2. Granular Activated Carbon (GAC)
5.3. Ion Exchange Resins
5.4. Reverse Osmosis (RO)
5.5. Nanofiltration (NF)
5.6. Advanced Oxidation Processes (AOP)
5.7. Electrochemical Oxidation
5.8. Plasma-Based PFAS Destruction
5.9. Foam Fractionation
5.10. Other Emerging PFAS Treatment Technologies
6. BY PFAS TYPE TREATED
6.1. Introduction
6.1.1. Market Size Analysis and Y-o-Y Growth Analysis, By PFAS Type Treated
6.1.2. Market Attractiveness Index, By PFAS Type Treated
6.2. Long-Chain PFAS
6.2.1. Perfluorooctanoic Acid (PFOA)
6.2.2. Perfluorooctane Sulfonate (PFOS)
6.2.3. Other Long-Chain PFAS
6.3. Short-Chain PFAS
6.3.1. Perfluorobutanoic Acid (PFBA)
6.3.2. Perfluorobutane Sulfonate (PFBS)
6.3.3. Other Short-Chain PFAS
6.4. PFAS Mixtures
7. BY END USER
7.1. Introduction
7.1.1. Market Size Analysis and Y-o-Y Growth Analysis, By End User
7.1.2. Market Attractiveness Index, By End User
7.2. Municipal Water Utilities
7.2.1. Drinking Water Utilities
7.2.2. Public Water Authorities
7.2.3. Regional Water Boards
7.3. Industrial Facilities
7.3.1. Chemical & Petrochemical
7.3.2. Semiconductor & Electronics
7.3.3. Pulp & Paper
7.3.4. Textile Manufacturing
7.3.5. Metal Plating & Surface Finishing
7.3.6. Oil & Gas
7.3.7. Mining
7.3.8. Others
7.4. Environmental Remediation Contractors
7.4.1. Site Remediation Companies
7.4.2. Environmental Engineering & Consulting Firms
7.4.3. Hazardous Waste Management Companies
7.5. Defense & Military Facilities
7.5.1. Military Bases
7.5.2. Defense Manufacturing Facilities
7.5.3. Training Grounds
7.6. Airports
7.6.1. Commercial Airports
7.6.2. Military Airbases
7.6.3. Aircraft Maintenance Facilities
7.7. Commercial & Institutional Facilities
7.7.1. Universities & Research Institutions
7.7.2. Hospitals & Healthcare Facilities
7.7.3. Hotels & Hospitality
7.7.4. Corporate Campuses
7.7.5. Commercial Buildings
7.8. Groundwater Remediation
7.9. Wastewater Treatment
7.10. Landfill Leachate Treatment
7.11. Others
8. BY REGION
8.1. Introduction
8.1.1. Market Size Analysis and Y-o-Y Growth Analysis, By Region
8.1.2. Market Attractiveness Index, By Region
8.2. North America
8.2.1. Introduction
8.2.2. Key Region-Specific Dynamics
8.2.3. Market Size Analysis and Y-o-Y Growth Analysis, By Technology
8.2.4. Market Size Analysis and Y-o-Y Growth Analysis, By PFAS Type Treated
8.2.5. Market Size Analysis and Y-o-Y Growth Analysis, By End User
8.2.6. Market Size Analysis and Y-o-Y Growth Analysis, By Country
8.2.6.1. US
8.2.6.2. Canada
8.2.6.3. Mexico
8.3. Europe
8.3.1. Introduction
8.3.2. Key Region-Specific Dynamics
8.3.3. Market Size Analysis and Y-o-Y Growth Analysis, By Technology
8.3.4. Market Size Analysis and Y-o-Y Growth Analysis, By PFAS Type Treated
8.3.5. Market Size Analysis and Y-o-Y Growth Analysis, By End User
8.3.6. Market Size Analysis and Y-o-Y Growth Analysis, By Country
8.3.6.1. Germany
8.3.6.2. United Kingdom
8.3.6.3. France
8.3.6.4. Italy
8.3.6.5. Spain
8.3.6.6. Netherlands
8.3.6.7. Switzerland
8.3.6.8. Sweden
8.3.6.9. Norway
8.3.6.10. Denmark
8.3.6.11. Belgium
8.3.6.12. Poland
8.3.6.13. Austria
8.3.6.14. Ireland
8.3.6.15. Portugal
8.3.6.16. Greece
8.3.6.17. Finland
8.3.6.18. Rest of Europe
8.4. Latin America
8.4.1. Introduction
8.4.2. Key Region-Specific Dynamics
8.4.3. Market Size Analysis and Y-o-Y Growth Analysis, By Technology
8.4.4. Market Size Analysis and Y-o-Y Growth Analysis, By PFAS Type Treated
8.4.5. Market Size Analysis and Y-o-Y Growth Analysis, By End User
8.4.6. Market Size Analysis and Y-o-Y Growth Analysis, By Country
8.4.6.1. Brazil
8.4.6.2. Argentina
8.4.6.3. Chile
8.4.6.4. Colombia
8.4.6.5. Peru
8.4.6.6. Rest of Latin America
8.5. Asia-Pacific
8.5.1. Introduction
8.5.2. Key Region-Specific Dynamics
8.5.3. Market Size Analysis and Y-o-Y Growth Analysis, By Technology
8.5.4. Market Size Analysis and Y-o-Y Growth Analysis, By PFAS Type Treated
8.5.5. Market Size Analysis and Y-o-Y Growth Analysis, By End User
8.5.6. Market Size Analysis and Y-o-Y Growth Analysis, By Country
8.5.6.1. China
8.5.6.2. Japan
8.5.6.3. India
8.5.6.4. South Korea
8.5.6.5. Australia
8.5.6.6. New Zealand
8.5.6.7. Singapore
8.5.6.8. Malaysia
8.5.6.9. Thailand
8.5.6.10. Indonesia
8.5.6.11. Vietnam
8.5.6.12. Philippines
8.5.6.13. Taiwan
8.5.6.14. Rest of Asia Pacific
8.6. Middle East and Africa
8.6.1. Introduction
8.6.2. Key Region-Specific Dynamics
8.6.3. Market Size Analysis and Y-o-Y Growth Analysis, By Technology
8.6.4. Market Size Analysis and Y-o-Y Growth Analysis, By PFAS Type Treated
8.6.5. Market Size Analysis and Y-o-Y Growth Analysis, By End User
8.6.6. Market Size Analysis and Y-o-Y Growth Analysis, By Country
8.6.6.1. Saudi Arabia
8.6.6.2. United Arab Emirates
8.6.6.3. Qatar
8.6.6.4. Kuwait
8.6.6.5. Oman
8.6.6.6. Bahrain
8.6.6.7. South Africa
8.6.6.8. Egypt
8.6.6.9. Nigeria
8.6.6.10. Morocco
8.6.6.11. Rest of Middle East & Africa
9. COMPETITIVE LANDSCAPE ANALYSIS
9.1. Competitive Scenario
9.2. Market Positioning/Share Analysis
9.3. Mergers and Acquisitions Analysis
9.4. Partner Identification Analysis
9.5. Investment & Funding Landscape
9.6. Strategic Alliances & Innovation Pipelines
10. COMPANY PROFILES
10.1. Veolia Water Technologies*
10.1.1. Company Overview
10.1.2. Product Portfolio
10.1.3. Revenue Analysis
10.1.4. Pricing Analysis
10.1.5. SWOT Analysis
10.1.6. Recent Developments
10.1.6.1. Major Deals
10.1.6.2. M&A
10.1.6.3. Collaboration
10.1.6.4. Acquisition
10.1.6.5. Joint Ventures
10.1.6.6. Innovations
10.1.7. Recent News
10.1.7.1. Events
10.1.7.2. Conferences
10.1.7.3. Symposiums
10.1.7.4. Webinars
10.2. Xylem Inc.
10.3. Calgon Carbon Corporation
10.4. AECOM
10.5. Jacobs Solutions Inc.
10.6. WSP Global Inc.
10.7. Stantec Inc.
10.8. CDM Smith
10.9. Black & Veatch
10.10. Kurita Water Industries Ltd.
10.11. DuPont Water Solutions
10.12. Aqua-Aerobic Systems, Inc. (LIST NOT EXHAUSTIVE)
11. PFAS WATER TREATMENT MARKET – RESEARCH METHODOLOGY
11.1. Research Data
11.1.1. Secondary Data
11.1.2. Primary Data
11.1.3. CAGR Analysis
11.2. Market Size Estimation Methodology
11.2.1. Bottom-Up Approach
11.2.2. Top-Down Approach
11.3. Market Breakdown & Data Triangulation
11.4. Research Assumptions
11.5. Limitations
12. APPENDIX
12.1. About Us and Services
12.2. Contact Us