The Europe Water Quality Monitoring Systems Market is expected to witness market growth of 7.9% CAGR during the forecast period (2022-2028).
The systems for testing water quality is essential for environmental monitoring because it allows experts to anticipate and benefit from environmental natural processes and identify how humans are affecting ecosystems. To ensure that water is safe for use or consumption, water quality testing equipment is required because the quality of water changes significantly as a result of changes in topography, region, and environment.
Water's ability to be utilized for processing, drinking, and agricultural purposes, among other things, is hampered by a number of factors, including contamination due to dangerous chemicals and metals, and contamination. As a result, there is a rising need for equipment to test the physical, chemical, and biological aspects of water quality.
According to the EU Commission, the EU invested more than $150 million in Timis County's cutting-edge potable water and wastewater system. In addition, the region's water utilities face a number of difficulties, including managing the region's expanding water demand and supplying clean, fresh water to rural areas. As a result, they are quickly adopting water quality monitoring systems to address these issues. Therefore, the growth and demand for water quality monitoring systems is expected to be fueled by these factors in the coming years.
The Germany market dominated the Europe Water Quality Monitoring Systems Market by Country in 2021, and is expected to continue to be a dominant market till 2028; thereby, achieving a market value of $479.3 Million by 2028. The UK market is anticipated to grow at a CAGR of 7% during (2022 - 2028). Additionally, The France market is expected to exhibit a CAGR of 8.7% during (2022 - 2028).
Based on Component, the market is segmented into pH Sensors, DO Sensors, Turbidity Sensors, Temperature Sensors, and Others. Based on Application, the market is segmented into Utility, Industrial, Commercial, and Residential. Based on countries, the market is segmented into Germany, UK, France, Russia, Spain, Italy, and Rest of Europe.
The market research report covers the analysis of key stake holders of the market. Key companies profiled in the report include General Electric (GE) Co., Horiba Ltd., Danaher Corporation, Evoqua Water Technologies Corporation, Xylem, Inc., Shimadzu Corporation, Pentair PLC, Thermo Fisher Scientific, Inc., Uponor Corporation, and Teledyne Technologies, Inc.
The systems for testing water quality is essential for environmental monitoring because it allows experts to anticipate and benefit from environmental natural processes and identify how humans are affecting ecosystems. To ensure that water is safe for use or consumption, water quality testing equipment is required because the quality of water changes significantly as a result of changes in topography, region, and environment.
Water's ability to be utilized for processing, drinking, and agricultural purposes, among other things, is hampered by a number of factors, including contamination due to dangerous chemicals and metals, and contamination. As a result, there is a rising need for equipment to test the physical, chemical, and biological aspects of water quality.
According to the EU Commission, the EU invested more than $150 million in Timis County's cutting-edge potable water and wastewater system. In addition, the region's water utilities face a number of difficulties, including managing the region's expanding water demand and supplying clean, fresh water to rural areas. As a result, they are quickly adopting water quality monitoring systems to address these issues. Therefore, the growth and demand for water quality monitoring systems is expected to be fueled by these factors in the coming years.
The Germany market dominated the Europe Water Quality Monitoring Systems Market by Country in 2021, and is expected to continue to be a dominant market till 2028; thereby, achieving a market value of $479.3 Million by 2028. The UK market is anticipated to grow at a CAGR of 7% during (2022 - 2028). Additionally, The France market is expected to exhibit a CAGR of 8.7% during (2022 - 2028).
Based on Component, the market is segmented into pH Sensors, DO Sensors, Turbidity Sensors, Temperature Sensors, and Others. Based on Application, the market is segmented into Utility, Industrial, Commercial, and Residential. Based on countries, the market is segmented into Germany, UK, France, Russia, Spain, Italy, and Rest of Europe.
The market research report covers the analysis of key stake holders of the market. Key companies profiled in the report include General Electric (GE) Co., Horiba Ltd., Danaher Corporation, Evoqua Water Technologies Corporation, Xylem, Inc., Shimadzu Corporation, Pentair PLC, Thermo Fisher Scientific, Inc., Uponor Corporation, and Teledyne Technologies, Inc.
Scope of the Study
Market Segments Covered in the Report:
By Component- pH Sensors
- DO Sensors
- Turbidity Sensors
- Temperature Sensors
- Others
- Utility
- Industrial
- Commercial
- Residential
- Germany
- UK
- France
- Russia
- Spain
- Italy
- Rest of Europe
Key Market Players
List of Companies Profiled in the Report:
- General Electric (GE) Co.
- Horiba Ltd.
- Danaher Corporation
- Evoqua Water Technologies Corporation
- Xylem, Inc.
- Shimadzu Corporation
- Pentair PLC
- Thermo Fisher Scientific, Inc.
- Uponor Corporation
- Teledyne Technologies, Inc.
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Table of Contents
Chapter 1. Market Scope & Methodology
Chapter 2. Market Overview
Chapter 3. Competition Analysis - Global
Chapter 4. Europe Water Quality Monitoring Systems Market by Component
Chapter 5. Europe Water Quality Monitoring Systems Market by Application
Chapter 6. Europe Water Quality Monitoring Systems Market by Country
Chapter 7. Company Profiles
Companies Mentioned
- General Electric (GE) Co.
- Horiba Ltd.
- Danaher Corporation
- Evoqua Water Technologies Corporation
- Xylem, Inc.
- Shimadzu Corporation
- Pentair PLC
- Thermo Fisher Scientific, Inc.
- Uponor Corporation
- Teledyne Technologies, Inc.
Methodology
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