Zero Liquid Discharge Systems Market reports and Global Analysis

 Zero Liquid Discharge Systems Market reports and Global Analysis

Zero Liquid Discharge Systems , Industry Analysis Report, Regional Outlook, Application Development, Growth Potential, Price Trends, Competitive Market Share & Forecast, 2025 ? 2035, Chem Reports

Global analysis of the Zero Liquid Discharge Systems Market including market trends, applications, and growth forecasts.

Pages: 206

Format: PDF

Date: 11-2025

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Introduction 

The global Zero Liquid Discharge (ZLD) Systems market is projected to grow steadily from USD XX million in 2025 to USD XX million by 2035, at an estimated CAGR of XX%. The study considers 2024 as the base year, with forecasts extending from 2025 to 2035. The primary objective of this report is to provide a comprehensive understanding of the market, including its definition, segmentation, growth potential, emerging trends, and the challenges influencing market development. Extensive research and detailed analysis were conducted to ensure the accuracy and reliability of the information presented. All data has been sourced from credible industry channels and validated by experts. The report uses visual tools—such as charts, graphs, and tables—to enhance clarity and help readers better understand the market dynamics.

Market Segmentation

1. By System Type

a) Conventional ZLD Systems

  • Evaporators
  • Crystallizers
  • Brine concentrators
  • Spray dryers

b) Hybrid ZLD Systems

  • Combination of membrane processes + thermal processes
  • Integrated RO–evaporation systems
  • Advanced brine management systems

2. By Process

  • Pretreatment
    (Chemical dosing, filtration, softening)
  • Filtration & Membrane Separation
    (RO, NF, UF)
  • Evaporation
  • Crystallization
  • Sludge Handling & Dewatering
  • Recovery & Recycling

3. By Technology

  • Reverse Osmosis (RO)
  • Nanofiltration (NF)
  • Ultrafiltration (UF)
  • Electrodialysis
  • Multi-Effect Evaporation (MEE)
  • Mechanical Vapor Compression (MVC)
  • Thermal Evaporation
  • Brine Concentration Systems

4. By Application

  • Power Generation
  • Chemicals & Petrochemicals
  • Food & Beverage
  • Pharmaceuticals & Biotechnology
  • Oil & Gas Refining
  • Textile & Dyeing
  • Pulp & Paper
  • Mining & Metals
  • Desalination Plants
  • Other Industrial Applications

5. By End-Use Industry

  • Industrial Manufacturing
  • Municipal & Utilities
  • Environmental Services
  • Agriculture & Irrigation
  • Waste & Water Recycling Plants

Key Players in the Zero Liquid Discharge Systems Market

Global Leading Companies

  1. Veolia Water Technologies
  2. SUEZ Water Technologies & Solutions
  3. Aquatech International LLC
  4. GEA Group
  5. Evoqua Water Technologies
  6. H2O GmbH
  7. Saltworks Technologies Inc.
  8. Doosan Hydro Technology
  9. IDE Technologies
  10. AquaFilsep Inc.

Additional Prominent & Regional Players

  • Larsen & Toubro (L&T)
  • Oasys Water
  • Condorchem Envitech
  • Samco Technologies
  • Toshiba Water Solutions
  • Praj Industries
  • WABAG Water Technologies
  • Aquarion Group
  • Gradiant Corporation

Regional Analysis

1. North America

  • Strong adoption driven by stringent environmental regulations and high wastewater disposal costs.
  • Key demand from oil & gas, power plants, chemicals, and mining operations.
  • Technological advancements and strong presence of established ZLD solution providers support market growth.

2. Europe

  • Strong focus on sustainability, circular water reuse, and industrial wastewater management.
  • Widespread demand from the pharmaceuticals, food processing, and manufacturing industries.
  • Increasing regulatory pressure on wastewater discharge boosts ZLD adoption.

3. Asia-Pacific

  • Fastest-growing region due to rapid industrialization, severe water scarcity, and tightening environmental norms.
  • China and India are major markets, especially across textiles, chemicals, power, and metals.
  • Government initiatives promoting industrial wastewater recycling drive strong demand.

4. Latin America

  • Emerging market with increased adoption in mining, oil & gas, and food processing industries.
  • Brazil, Mexico, and Chile show rising interest in water reuse due to industrial expansion and water scarcity concerns.

5. Middle East & Africa

  • High demand from desalination plants, refineries, and petrochemical industries.
  • Water scarcity challenges in GCC countries make ZLD systems highly relevant.
  • Investments in industrial water recycling and wastewater infrastructure support growth.

Market Drivers

1. Increasing Stringency of Environmental Regulations

Governments across the world are enforcing strict regulations on wastewater discharge, compelling industries to adopt ZLD systems to eliminate effluent release and ensure compliance.

2. Rising Water Scarcity and Need for Water Reuse

Growing freshwater shortages and rising industrial water demand are pushing industries to recycle and reuse wastewater—making ZLD an attractive long-term solution for sustainability.

3. High Industrial Wastewater Generation

Industries such as power generation, chemicals, oil & gas, textiles, and pharmaceuticals produce large volumes of wastewater with high TDS and contaminants, driving adoption of advanced treatment systems like ZLD.

4. Growing Focus on Circular Economy and Sustainability

Companies are increasingly prioritizing water recovery, resource conservation, and minimal environmental impact. ZLD systems help achieve near-complete water recycling, aligning with global sustainability goals.

5. Technological Advancements in Membrane & Thermal Processes

Innovations in RO, MVC, multi-effect evaporation, and hybrid systems are improving energy efficiency, lowering operational costs, and making ZLD more feasible for large-scale operations.

6. Rising Cost of Wastewater Disposal

Increasing landfill costs, discharge penalties, and sludge disposal restrictions make ZLD systems a cost-effective long-term investment for many industries.

Market Restraints

1. High Capital and Operational Costs

ZLD systems require significant upfront investment and involve high energy consumption for evaporation and crystallization, making them costly for small and medium industries.

2. Complexity of System Design & Operation

ZLD requires advanced engineering, specialized operators, and regular maintenance. The complexity of system integration can deter adoption in industries lacking technical expertise.

3. Large Energy Requirements

Thermal evaporation and crystallization processes are energy-intensive, which can lead to high electricity consumption and increased operating costs.

4. Challenges with Brine Management

Managing concentrated brine, salts, and sludge remains a challenge, particularly in regions with limited disposal infrastructure.

5. Limited Awareness in Developing Regions

Some industries in emerging markets are still unaware of the long-term cost savings and environmental benefits of ZLD systems, hindering adoption.

6. Space & Infrastructure Constraints

ZLD systems require substantial space for equipment installation, evaporation units, and crystallizers, posing limitations for urban or space-constrained facilities.

PESTEL Analysis of the Zero Liquid Discharge (ZLD) Systems Market

1. Political Factors

  • Government enforcement of strict wastewater treatment and discharge regulations significantly drives adoption.
  • National and regional sustainability policies encourage industries to invest in water recovery solutions.
  • Political stability and industrial policies influence the pace of infrastructure development and ZLD uptake.

2. Economic Factors

  • High installation and operational costs can limit adoption, particularly in small enterprises.
  • Economic growth in industrial sectors directly increases wastewater output, supporting demand for ZLD.
  • Availability of subsidies, tax incentives, or funding for water management impacts market growth.
  • Operational energy costs affect long-term viability of ZLD systems.

3. Social Factors

  • Growing public awareness of water pollution, water scarcity, and sustainability pressures industries to adopt ZLD.
  • Increased demand for environmentally responsible industries drives investment in advanced treatment technologies.
  • Urbanization and population growth create higher water demand, making recycling a social necessity.

4. Technological Factors

  • Advancements in membrane technologies, hybrid ZLD systems, and high-efficiency evaporators improve performance and reduce costs.
  • Automation and digital monitoring enhance operational efficiency and system reliability.
  • Innovations in brine concentration, crystallization, and heat-recovery technologies reduce energy consumption.

5. Environmental Factors

  • ZLD reduces industrial impact on water bodies by eliminating liquid waste discharge.
  • Helps industries meet sustainability goals by minimizing pollution and maximizing water reuse.
  • Environmental concerns regarding brine disposal and high energy use require continuous innovation.
  • Climate change and drought conditions increase the need for advanced water management systems.

6. Legal Factors

  • Strict wastewater disposal laws require industries to treat effluents before discharge or adopt ZLD where mandated.
  • Compliance with water recycling standards and industrial effluent norms drives the implementation of ZLD systems.
  • Legal penalties for water pollution increase financial risks for industries that avoid ZLD adoption.
  • Certifications and quality standards must be met for ZLD equipment, adding to compliance complexity.

Points Covered in The Report:
The points that are discussed within the report are the major market players that are involved in the market, such as manufacturers, raw material suppliers, equipment suppliers, end users, traders, distributors and etc.
The complete profile of the companies is mentioned. And the capacity, production, price, revenue, cost, gross, gross margin, sales volume, sales revenue, consumption, growth rate, import, export, supply, future strategies, and the technological developments that they are making are also included within the report. The historical data from 2020 to 2024 and the forecast data from 2025 to 2035.
The growth factors of the market are discussed in detail, wherein the different end users of the market are explained in detail.
Data and information by manufacturer, by region, by type, by application and etc, and custom research can be added according to specific requirements.
The report contains the SWOT analysis of the market. Finally, the report contains the conclusion part, where the opinions of the industrial experts are included.

Key Reasons to Purchase
To gain insightful analyses of the market and have a comprehensive understanding of the global market and its commercial landscape.
Assess the production processes, major issues, and solutions to mitigate the development risk.
To understand the most affecting driving and restraining forces in the market and their impact on the global market.
Learn about the market strategies that are being adopted by leading respective organizations.
To understand the future outlook and prospects for the market.
Besides the standard structure reports, we also provide custom research according to specific requirements.

Chapter 1 Industry Overview
1.1 Definition
1.2 Brief Introduction by Major Type
1.2.1 Conventional Zero Liquid Discharge Systems
1.2.2 Hybrid Zero Liquid Discharge Systems
1.2.3
1.2.4
1.2.5
1.2.6
1.2.7
1.2.8
1.2.9
1.3 Brief Introduction by Major Application
1.3.1 Food & Beverages
1.3.2 Textiles
1.3.3 Pharmaceuticals
1.3.4 Semiconductors & Electronics
1.3.5 Others
1.3.6
1.3.7
1.3.8
1.3.9
1.4 Brief Introduction by Major Regions
1.4.1 United States
1.4.2 Europe
1.4.3 China
1.4.4 Japan
1.4.5 India
1.5 Brief Introduction by Major
1.5.1
1.5.2
1.5.3
1.5.4
1.5.5
1.5.6
1.5.7
1.5.8
1.5.9
1.6 Brief Introduction by Major
1.6.1
1.6.2
1.6.3
1.6.4
1.6.5
1.6.6
1.6.7
1.6.8
1.6.9
1.7 Brief Introduction by Major
1.7.1
1.7.2
1.7.3
1.7.4
1.7.5
1.7.6
1.7.7
1.7.8
1.7.9
1.8 Brief Introduction by Major
1.8.1
1.8.2
1.8.3
1.8.4
1.8.5
1.8.6
1.8.7
1.8.8
1.8.9
Chapter 2 Production Market Analysis
2.1 Global Production Market Analysis
2.1.1  Global Capacity, Production, Capacity Utilization Rate, Ex-Factory Price, Revenue, Cost, Gross and Gross Margin Analysis
2.1.2  Major Manufacturers Performance and Market Share
2.2 Regional Production Market Analysis
2.2.1  Regional Market Performance and Market Share
2.2.2 United States Market
2.2.3 Europe Market
2.2.4 China Market
2.2.5 Japan Market
2.2.6 India Market
2.2.7  Market
Chapter 3 Sales Market Analysis
3.1 Global Sales Market Analysis
3.1.1  Global Sales Volume, Sales Price and Sales Revenue Analysis
3.1.2  Major Manufacturers Performance and Market Share
3.2 Regional Sales Market Analysis
3.2.1  Regional Market Performance and Market Share
3.2.2 United States Market
3.2.3 Europe Market
3.2.4 China Market
3.2.5 Japan Market
3.2.6 India Market
3.2.7  Market
Chapter 4 Consumption Market Analysis
4.1 Global Consumption Market Analysis
4.1.1  Global Consumption Volume Analysis
4.2 Regional Consumption Market Analysis
4.2.1  Regional Market Performance and Market Share
4.2.2 United States Market
4.2.3 Europe Market
4.2.4 China Market
4.2.5 Japan Market
4.2.6 India Market
4.2.7  Market
Chapter 5 Production, Sales and Consumption Market Comparison Analysis
5.1 Global Production, Sales and Consumption Market Comparison Analysis
5.2 Regional Production, Sales Volume and Consumption Volume Market Comparison Analysis
5.2.1 United States
5.2.2 Europe
5.2.3 China
5.2.4 Japan
5.2.5 India
5.2.6
Chapter 6 Major Manufacturers Production and Sales Market Comparison Analysis
6.1 Global Major Manufacturers Production and Sales Market Comparison Analysis
6.1.1  Global Major Manufacturers Production and Sales Market Comparison
6.2 Regional Major Manufacturers Production and Sales Market Comparison Analysis
6.2.1 United States
6.2.2 Europe
6.2.3 China
6.2.4 Japan
6.2.5 India
6.2.6
Chapter 7 Major Type Analysis
7.1  Major Type Market Share
7.2 Conventional Zero Liquid Discharge Systems
7.3 Hybrid Zero Liquid Discharge Systems
7.4
7.5
7.6
7.7
7.8
7.9
7.10
Chapter 8 Major ApplicationAnalysis
8.1  Major Application Market Share
8.2 Food & Beverages
8.2.1  Sales Analysis
8.3 Textiles
8.3.1  Sales Analysis
8.4 Pharmaceuticals
8.4.1  Sales Analysis
8.5 Semiconductors & Electronics
8.5.1  Sales Analysis
8.6 Others
8.6.1  Sales Analysis
8.7
8.7.1  Sales Analysis
8.8
8.8.1  Sales Analysis
8.9
8.9.1  Sales Analysis
8.10
8.11.1  Sales Analysis
Chapter 9 Industry Chain Analysis
9.1 Up Stream Industries Analysis
9.1.1 Raw Material and Suppliers
9.1.2 Equipment and Suppliers
9.2 Manufacturing Analysis
9.2.1 Manufacturing Process
9.2.2 Manufacturing Cost Structure
9.2.3 Manufacturing Plants Distribution Analysis
9.3 Industry Chain Structure Analysis
Chapter 10 Global and Regional Market Forecast
10.1 Production Market Forecast
10.1.1 Global Market Forecast
10.1.2 Major Region Forecast
10.2 Sales Market Forecast
10.2.1 Global Market Forecast
10.2.2 Major Classification Forecast
10.3 Consumption Market Forecast
10.3.1 Global Market Forecast
10.3.2 Major Region Forecast
10.3.3 Major Application Forecast
Chapter 11 Major Manufacturers Analysis
11.1 GE Water & Process Technologies
11.1.1 Company Introduction
11.1.2 Product Specification and Major Types Analysis
11.1.3  Production Market Performance
11.1.4  Sales Market Performance
11.1.5 Contact Information
11.2 Veolia Water Technologies
11.2.1 Company Introduction
11.2.2 Product Specification and Major Types Analysis
11.2.3  Production Market Performance
11.2.4  Sales Market Performance
11.2.5 Contact Information
11.3 GEA Group AG
11.3.1 Company Introduction
11.3.2 Product Specification and Major Types Analysis
11.3.3  Production Market Performance
11.3.4  Sales Market Performance
11.3.5 Contact Information
11.4 Praj Industries Ltd.
11.4.1 Company Introduction
11.4.2 Product Specification and Major Types Analysis
11.4.3  Production Market Performance
11.4.4  Sales Market Performance
11.4.5 Contact Information
11.5 Aquatech International LLC
11.5.1 Company Introduction
11.5.2 Product Specification and Major Types Analysis
11.5.3  Production Market Performance
11.5.4  Sales Market Performance
11.5.5 Contact Information
11.6 H2O GmbH
11.6.1 Company Introduction
11.6.2 Product Specification and Major Types Analysis
11.6.3  Production Market Performance
11.6.4  Sales Market Performance
11.6.5 Contact Information
11.7 U.S. Water Services, Inc.
11.7.1 Company Introduction
11.7.2 Product Specification and Major Types Analysis
11.7.3  Production Market Performance
11.7.4  Sales Market Performance
11.7.5 Contact Information
11.8 Aquarion AG
11.8.1 Company Introduction
11.8.2 Product Specification and Major Types Analysis
11.8.3  Production Market Performance
11.8.4  Sales Market Performance
11.8.5 Contact Information
11.9 Saltworks Technologies Inc.
11.9.1 Company Introduction
11.9.2 Product Specification and Major Types Analysis
11.9.3  Production Market Performance
11.9.4  Sales Market Performance
11.9.5 Contact Information
11.10 Doosan Hydro Technology LLC
11.10.1 Company Introduction
11.10.2 Product Specification and Major Types Analysis
11.10.3  Production Market Performance
11.10.4  Sales Market Performance
11.10.5 Contact Information
11.11 Petro Sep Corporation
11.11.1 Company Introduction
11.11.2 Product Specification and Major Types Analysis
11.11.3  Production Market Performance
11.11.4  Sales Market Performance
11.11.5 Contact Information
11.12 Ide Technologies
11.12.1 Company Introduction
11.12.2 Product Specification and Major Types Analysis
11.12.3  Production Market Performance
11.12.4  Sales Market Performance
11.12.5 Contact Information
11.13 Degremont Technologies
11.13.1 Company Introduction
11.13.2 Product Specification and Major Types Analysis
11.13.3  Production Market Performance
11.13.4  Sales Market Performance
11.13.5 Contact Information
11.14 L&T Constructions
11.14.1 Company Introduction
11.14.2 Product Specification and Major Types Analysis
11.14.3  Production Market Performance
11.14.4  Sales Market Performance
11.14.5 Contact Information
11.15 Oasys Water Inc.
11.15.1 Company Introduction
11.15.2 Product Specification and Major Types Analysis
11.15.3  Production Market Performance
11.15.4  Sales Market Performance
11.15.5 Contact Information
11.16 Samco Technologies Inc
11.16.1 Company Introduction
11.16.2 Product Specification and Major Types Analysis
11.16.3  Production Market Performance
11.16.4  Sales Market Performance
11.16.5 Contact Information
11.17 Water Next Solutions Private Limited
11.17.1 Company Introduction
11.17.2 Product Specification and Major Types Analysis
11.17.3  Production Market Performance
11.17.4  Sales Market Performance
11.17.5 Contact Information
11.18 Awas International GmbH
11.18.1 Company Introduction
11.18.2 Product Specification and Major Types Analysis
11.18.3  Production Market Performance
11.18.4  Sales Market Performance
11.18.5 Contact Information
11.19 Condorchem Envitech
11.19.1 Company Introduction
11.19.2 Product Specification and Major Types Analysis
11.19.3  Production Market Performance
11.19.4  Sales Market Performance
11.19.5 Contact Information
11.20 Hydro Air Research Italia
11.20.1 Company Introduction
11.20.2 Product Specification and Major Types Analysis
11.20.3  Production Market Performance
11.20.4  Sales Market Performance
11.20.5 Contact Information
11.21
Mcwong Environmental & Energy Group
11.21.1 Company Introduction
11.21.2 Product Specification and Major Types Analysis
11.21.3  Production Market Performance
11.21.4  Sales Market Performance
11.21.5 Contact Information
11.22
Memsys GmbH
11.22.1 Company Introduction
11.22.2 Product Specification and Major Types Analysis
11.22.3  Production Market Performance
11.22.4  Sales Market Performance
11.22.5 Contact Information
11.23
Tamilnadu Water Investment Co. Ltd
11.23.1 Company Introduction
11.23.2 Product Specification and Major Types Analysis
11.23.3  Production Market Performance
11.23.4  Sales Market Performance
11.23.5 Contact Information
11.24
Transparent Energy Systems Pvt. Ltd.
11.24.1 Company Introduction
11.24.2 Product Specification and Major Types Analysis
11.24.3  Production Market Performance
11.24.4  Sales Market Performance
11.24.5 Contact Information
11.25
ZLD Technologies Pvt Ltd
11.25.1 Company Introduction
11.25.2 Product Specification and Major Types Analysis
11.25.3  Production Market Performance
11.25.4  Sales Market Performance
11.25.5 Contact Information
11.26

11.26.1 Company Introduction
11.26.2 Product Specification and Major Types Analysis
11.26.3  Production Market Performance
11.26.4  Sales Market Performance
11.26.5 Contact Information
11.27

11.27.1 Company Introduction
11.27.2 Product Specification and Major Types Analysis
11.27.3  Production Market Performance
11.27.4  Sales Market Performance
11.27.5 Contact Information
11.28

11.28.1 Company Introduction
11.28.2 Product Specification and Major Types Analysis
11.28.3  Production Market Performance
11.28.4  Sales Market Performance
11.28.5 Contact Information
11.29

11.29.1 Company Introduction
11.29.2 Product Specification and Major Types Analysis
11.29.3  Production Market Performance
11.29.4  Sales Market Performance
11.29.5 Contact Information
11.30

11.30.1 Company Introduction
11.30.2 Product Specification and Major Types Analysis
11.30.3  Production Market Performance
11.30.4  Sales Market Performance
11.30.5 Contact Information
11.31

11.31.1 Company Introduction
11.31.2 Product Specification and Major Types Analysis
11.31.3  Production Market Performance
11.31.4  Sales Market Performance
11.31.5 Contact Information
11.32

11.32.1 Company Introduction
11.32.2 Product Specification and Major Types Analysis
11.32.3  Production Market Performance
11.32.4  Sales Market Performance
11.32.5 Contact Information
11.33

11.33.1 Company Introduction
11.33.2 Product Specification and Major Types Analysis
11.33.3  Production Market Performance
11.33.4  Sales Market Performance
11.33.5 Contact Information
11.34

11.34.1 Company Introduction
11.34.2 Product Specification and Major Types Analysis
11.34.3  Production Market Performance
11.34.4  Sales Market Performance
11.34.5 Contact Information
11.35

11.35.1 Company Introduction
11.35.2 Product Specification and Major Types Analysis
11.35.3  Production Market Performance
11.35.4  Sales Market Performance
11.35.5 Contact Information
11.36

11.36.1 Company Introduction
11.36.2 Product Specification and Major Types Analysis
11.36.3  Production Market Performance
11.36.4  Sales Market Performance
11.36.5 Contact Information
11.37

11.37.1 Company Introduction
11.37.2 Product Specification and Major Types Analysis
11.37.3  Production Market Performance
11.37.4  Sales Market Performance
11.37.5 Contact Information
11.38

11.38.1 Company Introduction
11.38.2 Product Specification and Major Types Analysis
11.38.3  Production Market Performance
11.38.4  Sales Market Performance
11.38.5 Contact Information
11.39

11.39.1 Company Introduction
11.39.2 Product Specification and Major Types Analysis
11.39.3  Production Market Performance
11.39.4  Sales Market Performance
11.39.5 Contact Information
11.40

11.40.1 Company Introduction
11.40.2 Product Specification and Major Types Analysis
11.40.3  Production Market Performance
11.40.4  Sales Market Performance
11.40.5 Contact Information
Chapter 12 New Project Investment Feasibility Analysis
12.1 New Project SWOT Analysis
12.2 New Project Investment Feasibility Analysis
Chapter 13 Conclusions
Chapter 14 Appendix
Author List
Disclosure Section
Research Methodology
Data Source
Interview List
Global Disclaimer

Market Segmentation

1. By System Type

a) Conventional ZLD Systems

  • Evaporators
  • Crystallizers
  • Brine concentrators
  • Spray dryers

b) Hybrid ZLD Systems

  • Combination of membrane processes + thermal processes
  • Integrated RO–evaporation systems
  • Advanced brine management systems

2. By Process

  • Pretreatment
    (Chemical dosing, filtration, softening)
  • Filtration & Membrane Separation
    (RO, NF, UF)
  • Evaporation
  • Crystallization
  • Sludge Handling & Dewatering
  • Recovery & Recycling

3. By Technology

  • Reverse Osmosis (RO)
  • Nanofiltration (NF)
  • Ultrafiltration (UF)
  • Electrodialysis
  • Multi-Effect Evaporation (MEE)
  • Mechanical Vapor Compression (MVC)
  • Thermal Evaporation
  • Brine Concentration Systems

4. By Application

  • Power Generation
  • Chemicals & Petrochemicals
  • Food & Beverage
  • Pharmaceuticals & Biotechnology
  • Oil & Gas Refining
  • Textile & Dyeing
  • Pulp & Paper
  • Mining & Metals
  • Desalination Plants
  • Other Industrial Applications

5. By End-Use Industry

  • Industrial Manufacturing
  • Municipal & Utilities
  • Environmental Services
  • Agriculture & Irrigation
  • Waste & Water Recycling Plants

Key Players in the Zero Liquid Discharge Systems Market

Global Leading Companies

  1. Veolia Water Technologies
  2. SUEZ Water Technologies & Solutions
  3. Aquatech International LLC
  4. GEA Group
  5. Evoqua Water Technologies
  6. H2O GmbH
  7. Saltworks Technologies Inc.
  8. Doosan Hydro Technology
  9. IDE Technologies
  10. AquaFilsep Inc.

Additional Prominent & Regional Players

  • Larsen & Toubro (L&T)
  • Oasys Water
  • Condorchem Envitech
  • Samco Technologies
  • Toshiba Water Solutions
  • Praj Industries
  • WABAG Water Technologies
  • Aquarion Group
  • Gradiant Corporation

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