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Europe Plastic Valves Market - Industry Analysis, Size, Share, Growth, Trends, and Forecast 2031 - By Product, Technology, Grade, Application, End-user, Region: (Europe)

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    Report

  • 288 Pages
  • September 2024
  • Region: Europe
  • Fairfield Market Research
  • ID: 5998388
The Europe plastic valves market is poised for substantial growth, projected to rise from USD 570.90 million in 2024 to USD 818.9 million by 2031, at a CAGR of 5.30%. The need for reliable and efficient valve solutions for fluid control in plant engineering and environmental technology applications is boosting the market. Plastic valves, known for their ability to control and ensure safe operations in diverse processes, are finding their place in a range of industries.

Plastic valves offer excellent processing characteristics, enabling manufacturers to produce high-quality valves on a large scale while maintaining consistent performance. Their role in facilitating control, dosing, and safe operations in industrial processes is becoming increasingly essential, especially in the wake of stricter environmental regulations and the rising demand for sustainable water management solutions.

Key Market Drivers: Industrialization and Infrastructure Development

Europe is witnessing rapid industrial expansion, creating a robust demand for plastic valves across several industries. Key sectors driving this demand include manufacturing, construction, and water management, where efficient fluid control systems are crucial for optimizing operations. The versatility of plastic valves, their ease of installation, and their ability to cater to a wide range of applications make them an ideal choice for many industries.

Furthermore, with environmental concerns gaining prominence, there is an increasing focus on water scarcity and the environmental impact of industrial processes. This has led to the integration of advanced technologies such as sensors, actuators, and control systems within plastic valves. These advancements allow for precise control, remote operation, and real-time monitoring, significantly enhancing operational efficiency, productivity, and safety in various industrial applications.

Challenges for Plastic Valve Manufacturers: Material Limitations and Environmental Concerns

Despite the growing demand for plastic valves, manufacturers face several challenges that need to be addressed. One of the primary limitations is the temperature and pressure resistance of plastic valves compared to their metal counterparts. This restricts their applicability in industries that require extreme conditions, such as oil and gas, petrochemicals, or heavy manufacturing. The limited durability of plastic valves under high-temperature or high-pressure environments poses a challenge for manufacturers seeking to cater to these industries.

Additionally, the production of plastic valves, made from petroleum byproducts, contributes to the global plastic waste stream. The accumulation of plastic waste in landfills and oceans is an ongoing environmental crisis, further highlighting the need for sustainable manufacturing practices in the plastic valve industry.

Opportunities for Market Growth: Efficiency and Quality Assurance

Despite the challenges, the Europe plastic valves market presents numerous opportunities for growth. The region's ongoing commercial and infrastructure development projects are creating a lucrative market for plastic valve manufacturers. These projects are driving the demand for efficient fluid control systems that can enhance operational efficiency and ensure smooth functionality in industrial processes.

Compared to metal valves, plastic valves are easier to handle and install, simplifying the installation process and reducing labor costs and time. This advantage is particularly appealing in large-scale infrastructure projects where efficiency is critical. Moreover, European regulations emphasize quality assurance in construction projects, offering an opportunity for manufacturers to implement stringent quality control measures throughout their production processes.

By providing plastic valves that meet the necessary certifications and industry benchmarks, manufacturers can position themselves as reliable partners in the market, gaining a competitive edge.

Emerging Trends in Plastic Valve Demand

The increasing importance of environmental protection and human health is shaping the demand for plastic valves in applications such as water generation and wastewater treatment. As industries place a greater emphasis on sustainability, there is a rising need for valves that can handle diverse applications, from processing technically clean fluids to managing particle-loaded liquids.

Customization is also emerging as a key trend, with manufacturers offering tailored solutions for specific fluid handling needs. This trend is driving the demand for various types of plastic valves, including ball valves, diaphragm valves, butterfly valves, check valves, and solenoid valves, each of which is designed to cater to different industrial requirements.

Competitive Analysis:

  • Parker Hannifin Corp.
  • Emerson Electric Co.
  • Watts Water Technologies
  • Flowserve Corporation
  • STÜBBE GmbH & Co. KG
  • POLYPIPE ITALIA EFFAST
  • Xylem
  • Spirax Sarco Engineering
  • Georg Fischer
  • Pure Valve
  • Safi France
  • CEPEX Fluidra
  • Alfa Laval Corporate AB
  • Weir Group Plc.
  • Technip FMC Plc.

Segmentation of Europe Plastic Valves Industry Research

By Valve Material:

  • Thermoplastic
  • Polyvinyl Chloride
  • Chlorinated Polyvinyl Chloride
  • Polypropylene
  • Others

By Valve Type:

  • Ball Valves
  • Butterfly Valves
  • Check Valves
  • Gate Valves
  • Globe Valve
  • Others

By Actuation Type:

  • Manual
  • Pneumatic
  • Electric

By End Use:

  • Industrial
  • Commercial
  • Infrastructure
  • Residential
  • Agricultural
  • Municipal

By Country:

  • Germany
  • Italy
  • France
  • United Kingdom
  • Spain
  • Belgium
  • Netherlands
  • Luxembourg
  • Russia
  • Poland
  • Rest of Europe


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Table of Contents

1. Executive Summary
1.1. Europe Plastic Valves Market Snapshot
1.2. Future Projections
1.3. Key Market Trends
1.4. Regional Snapshot, by Value and Volume, 2024
1.5. Analyst Recommendations
2. Market Overview
2.1. Market Definitions and Segmentations
2.2. Market Dynamics
2.2.1. Drivers
2.2.2. Restraints
2.2.3. Market Opportunities
2.3. Value Chain Analysis
2.4. Porter’s Five Forces Analysis
2.5. COVID-19 Impact Analysis
2.5.1. Supply
2.5.2. Demand
2.6. Impact of Ukraine-Russia Conflict
2.7. Economic Overview
2.7.1. World Economic Projections
2.8. PESTLE Analysis
3. Price Analysis, 2019 - 2023
3.1. Global Average Price Analysis, by Valve Material, US$ Per Unit, 2019 - 2023
3.2. Prominent Factor Affecting Multilayer Ceramic Capacitors Prices
3.3. Global Average Price Analysis, by Region, US$ Per Unit
4. Europe Plastic Valves Market Outlook, 2019 - 2031
4.1. Europe Plastic Valves Market Outlook, by Valve Material, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.1.1. Key Highlights
4.1.1.1. Thermoplastic
4.1.1.1.1. Polyvinyl Chloride
4.1.1.1.2. Chlorinated Polyvinyl Chloride
4.1.1.1.3. Polypropylene
4.1.1.2. Others
4.2. Europe Plastic Valves Market Outlook, by Valve Type, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.2.1. Key Highlights
4.2.1.1. Ball Valves
4.2.1.2. Butterfly Valves
4.2.1.3. Check Valves
4.2.1.4. Gate Valves
4.2.1.5. Globe Valve
4.2.1.6. Others
4.3. Europe Plastic Valves Market Outlook, by Actuation Type, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.3.1. Key Highlights
4.3.1.1. Manual
4.3.1.2. Pneumatic
4.3.1.3. Electric
4.4. Europe Plastic Valves Market Outlook, by End User, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.4.1. Key Highlights
4.4.1.1. Industrial
4.4.1.2. Commercial
4.4.1.3. Infrastructure
4.4.1.4. Residential
4.4.1.5. Agricultural
4.4.1.6. Municipal
4.5. Europe Multilayer Ceramic Capacitors Market Outlook, by Country, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1. Key Highlights
4.5.1.1. Germany Multilayer Ceramic Capacitors Market by Valve Material, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.2. Germany Multilayer Ceramic Capacitors Market by Valve Type, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.3. Germany Multilayer Ceramic Capacitors Market by Actuation Type, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.4. Germany Multilayer Ceramic Capacitors Market by End User, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.5. U.K. Multilayer Ceramic Capacitors Market by Valve Material, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.6. U.K. Multilayer Ceramic Capacitors Market by Valve Type, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.7. U.K. Multilayer Ceramic Capacitors Market by Actuation Type, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.8. U.K. Multilayer Ceramic Capacitors Market by End User, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.9. France Multilayer Ceramic Capacitors Market by Valve Material, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.10. France Multilayer Ceramic Capacitors Market by Valve Type, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.11. France Multilayer Ceramic Capacitors Market by Actuation Type, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.12. France Multilayer Ceramic Capacitors Market by End User, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.13. Italy Multilayer Ceramic Capacitors Market by Valve Material, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.14. Italy Multilayer Ceramic Capacitors Market by Valve Type, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.15. Italy Multilayer Ceramic Capacitors Market by Actuation Type, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.16. Italy Multilayer Ceramic Capacitors Market by End User, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.17. Turkey Multilayer Ceramic Capacitors Market by Valve Material, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.18. Turkey Multilayer Ceramic Capacitors Market by Valve Type, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.19. Turkey Multilayer Ceramic Capacitors Market by Actuation Type, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.20. Turkey Multilayer Ceramic Capacitors Market by End User, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.21. Russia Multilayer Ceramic Capacitors Market by Valve Material, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.22. Russia Multilayer Ceramic Capacitors Market by Valve Type, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.23. Russia Multilayer Ceramic Capacitors Market by Actuation Type, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.24. Russia Multilayer Ceramic Capacitors Market by End User, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.25. Rest of Europe Multilayer Ceramic Capacitors Market by Valve Material, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.26. Rest of Europe Multilayer Ceramic Capacitors Market by Valve Type, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.27. Rest of Europe Multilayer Ceramic Capacitors Market by Actuation Type, Value (US$ Mn) and Volume (Tons), 2019 - 2031
4.5.1.28. Rest of Europe Multilayer Ceramic Capacitors Market by End User, Value (US$ Mn) and Volume (Tons), 2019 - 2031
5. Competitive Landscape
5.1. Valve Material vs Actuation Type Heatmap
5.2. Company Market Share Analysis, 2024
5.3. Competitive Dashboard
5.4. Company Profiles
5.4.1. Parker Hannifin Corp.
5.4.1.1. Company Overview
5.4.1.2. Product Portfolio
5.4.1.3. Financial Overview
5.4.1.4. Business Strategies and Development
5.4.2. Emerson Electric Co.
5.4.2.1. Company Overview
5.4.2.2. Product Portfolio
5.4.2.3. Financial Overview
5.4.2.4. Business Strategies and Development
5.4.3. Watts Water Technologies
5.4.3.1. Company Overview
5.4.3.2. Product Portfolio
5.4.3.3. Financial Overview
5.4.3.4. Business Strategies and Development
5.4.4. Flowserve Corporation
5.4.4.1. Company Overview
5.4.4.2. Product Portfolio
5.4.4.3. Financial Overview
5.4.4.4. Business Strategies and Development
5.4.5. STÜBBE GmbH & Co. KG
5.4.5.1. Company Overview
5.4.5.2. Product Portfolio
5.4.5.3. Financial Overview
5.4.5.4. Business Strategies and Development
5.4.6. POLYPIPE ITALIA EFFAST
5.4.6.1. Company Overview
5.4.6.2. Product Portfolio
5.4.6.3. Financial Overview
5.4.6.4. Business Strategies and Development
5.4.7. Xylem
5.4.7.1. Company Overview
5.4.7.2. Product Portfolio
5.4.7.3. Financial Overview
5.4.7.4. Business Strategies and Development
5.4.8. Spirax Sarco Engineering
5.4.8.1. Company Overview
5.4.8.2. Product Portfolio
5.4.8.3. Financial Overview
5.4.8.4. Business Strategies and Development
5.4.9. Georg Fischer
5.4.9.1. Company Overview
5.4.9.2. Product Portfolio
5.4.9.3. Financial Overview
5.4.9.4. Business Strategies and Development
5.4.10. Pure Valve
5.4.10.1. Company Overview
5.4.10.2. Product Portfolio
5.4.10.3. Financial Overview
5.4.10.4. Business Strategies and Development
5.4.11. Safi France
5.4.11.1. Company Overview
5.4.11.2. Product Portfolio
5.4.11.3. Financial Overview
5.4.11.4. Business Strategies and Development
5.4.12. CEPEX Fluidra
5.4.12.1. Company Overview
5.4.12.2. Product Portfolio
5.4.12.3. Financial Overview
5.4.12.4. Business Strategies and Development
5.4.13. Alfa Laval Corporate AB
5.4.13.1. Company Overview
5.4.13.2. Product Portfolio
5.4.13.3. Financial Overview
5.4.13.4. Business Strategies and Development
5.4.14. Weir Group Plc.
5.4.14.1. Company Overview
5.4.14.2. Product Portfolio
5.4.14.3. Financial Overview
5.4.14.4. Business Strategies and Development
5.4.15. Technip FMC Plc.
5.4.15.1. Company Overview
5.4.15.2. Product Portfolio
5.4.15.3. Financial Overview
5.4.15.4. Business Strategies and Development
6. Appendix
6.1. Research Methodology
6.2. Report Assumptions
6.3. Acronyms and Abbreviations

Companies Mentioned

  • Parker Hannifin Corp.
  • Emerson Electric Co.
  • Watts Water Technologies
  • Flowserve Corporation
  • STÜBBE GmbH & Co. KG
  • POLYPIPE ITALIA EFFAST
  • Xylem
  • Spirax Sarco Engineering
  • Georg Fischer
  • Pure Valve
  • Safi France
  • CEPEX Fluidra
  • Alfa Laval Corporate AB
  • Weir Group Plc.
  • Technip FMC Plc.

Methodology

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