Global Environmental Testing Equipment Market Analysis Report to 2029: Players Include PerkinElmer, Merck, Danaher, JEOL and JASCO


Dublin, Nov. 03, 2022 (GLOBE NEWSWIRE) -- The "Environmental Testing Equipment Market Analysis by Product, by Platform, by Application, End user and by Region - Global Forecast to 2029" report has been added to ResearchAndMarkets.com's offering.

The environmental testing equipment market size is estimated to be USD 1.3 billion in 2021 and is expected to witness a CAGR of 9.41% during the forecast period 2022-2029.

The expanding levels of environmental pollution globally, rising efforts from public/private organisations to increase knowledge about global protection, privatisation of environmental testing and treatment services, and extra spending for wastewater treatment initiative are some of the key drivers for the market growth.

However, lack of skilled professional is expected to restrain the market growth.

By Product

Based on the product, the market is segregated into gas chromatography, mass spectrometers, turbidity meters, GC-MS instruments, dissolved oxygen analyzers, TOC analyzers, liquid chromatography, pH meters, conductivity sensors, chromatography products, ICP-MS instruments, LC-MS instruments, and others. In 2021, the mass spectrometers segment accounted for the highest revenue share due to many technical advancements in GC-MS systems are encouraging the use of MS in environmental testing and for the benefit of mass spectrometry to precisely analysing tiny and flammable compounds.

By Platform

On the basis of platform, the market is categorized into portable/mobile platforms, conventional/benchtop platforms, and handheld platforms. In 2021, the portable/mobile platforms segment accounted for the highest revenue share owing to gaining acceptance among laboratory experts, and strict government restrictions for pollution control and monitoring in wealthy nations.

By Application

Based on application, the market is segregated into organic pollutants, pesticides, microbial and other water pollutants, heavy metals, solid pollutants, water quality testing, soil quality testing, PFAS, volatile organic pollutants, and others. In 2021, the organic pollutants segment accounted for the highest revenue share due to rising residential, commercial, institutional, and industrial sources of municipal solid waste and the increasing need for the testing of organic pollutants.

By End user

On the basis of end user, the market is categorized into industrial facilities, government agencies and municipal authorities, commercial & residential facilities, industrial facilities, and others. In 2021, the government agencies and municipal authorities segment accounted for the highest revenue share owing to the monitoring of pollution, particularly in developing nations with concerning levels of pollution and engagement of the government in quality checking of the environment.

Regional Markets

In 2021, North America region accounted for the highest revenue in the environmental testing equipment market and is expected to maintain its dominance during the forecast period. This is attributed to excessive government focus on the stringent implementation of pollution control strategies, fast and large-scale industrialization, rigorous environmental regulation policies, and the rising need to abide with safety rules.

Competitor Insights

Some of the key players operating in the environmental testing equipment market are Agilent Technologies Inc. (US), Thermo Fisher Scientific Inc. (US), Shimadzu Corporation (Japan), Waters Corporation (US), Bruker Corporation (US), PerkinElmer Inc. (US), Merck KGaA (Germany), Danaher Corporation (US), JEOL Ltd. (Japan), Endress+Hauser Group Services AG (Analytik Jena, Switzerland), JASCO Corporation (Japan), Teledyne Technologies Incorporated (US), AMETEK, Inc. (US), and INFICON (Switzerland).

Key Topics Covered:

1. Research Methodology

2. Introduction: Environmental Testing Equipment

3. Executive Summary

4. Market Dynamics
4.1. Market Drivers
4.2.Market Restraint
4.3.Market Opportunities
4.4.Market Trends
4.5.Market Challenges

5. Market Environment Analysis
5.1.Porter's 5 Forces Analysis
5.2.PESTEL Analysis
5.3.Value Chain Analysis
5.4.SWOT Analysis
5.5.Benchmark

6. COVID-19 Impact Analysis: Environmental Testing Equipment Market
6.1.COVID-19: Overview
6.2.COVID-19 Impact on the Global Market
6.3.COVID-19 Impact on the Regional Markets

7. Market Analysis by Product
7.1.Gas Chromatography
7.1.1.Gas Chromatography Market Forecast, 2021-2029 (USD Million)
7.2.Mass Spectrometers
7.2.1.Mass Spectrometers Market Forecast, 2021-2029 (USD Million)
7.3.Turbidity Meters
7.3.1.Turbidity Meters Market Forecast, 2021-2029 (USD Million)
7.4.GC-MS Instruments
7.4.1.GC-MS Instruments Market Forecast, 2021-2029 (USD Million)
7.5.Dissolved Oxygen Analyzers
7.5.1.Dissolved Oxygen Analyzers Market Forecast, 2021-2029 (USD Million)
7.6.TOC Analyzers
7.6.1.TOC Analyzers Market Forecast, 2021-2029 (USD Million)
7.7.Liquid Chromatography
7.7.1.Liquid Chromatography Market Forecast, 2021-2029 (USD Million)
7.8.pH Meters
7.8.1.pH Meters Market Forecast, 2021-2029 (USD Million)
7.9.Conductivity Sensors
7.9.1.Conductivity Sensors Market Forecast, 2021-2029 (USD Million)
7.10.Chromatography Products
7.10.1.Chromatography Products Market Forecast, 2021-2029 (USD Million)
7.11.ICP-MS Instruments
7.11.1.ICP-MS Instruments Market Forecast, 2021-2029 (USD Million)
7.12.LC-MS Instruments
7.12.1.LC-MS Instruments Market Forecast, 2021-2029 (USD Million)
7.13.Others
7.13.1.Others Market Forecast, 2021-2029 (USD Million)

8. Market Analysis by Platforms
8.1.Portable/Mobile Platforms
8.1.1.Portable/Mobile Platforms Market Forecast, 2021-2029 (USD Million)
8.2.Conventional/Benchtop Platforms
8.2.1.Conventional/Benchtop Platforms Market Forecast, 2021-2029 (USD Million)
8.3.Handheld Platforms
8.3.1.Handheld Platforms Market Forecast, 2021-2029 (USD Million)

9. Market Analysis by Application
9.1.Organic Pollutants
9.1.1.Organic Pollutants Market Forecast, 2021-2029 (USD Million)
9.2.Pesticides
9.2.1.Pesticides Market Forecast, 2021-2029 (USD Million)
9.3.Microbial and Other Water Pollutants
9.3.1.Microbial and Other Water Pollutants Market Forecast, 2021-2029 (USD Million)
9.4.Heavy Metals
9.4.1.Heavy Metals Market Forecast, 2021-2029 (USD Million)
9.5.Solid Pollutants
9.5.1.Solid Pollutants Market Forecast, 2021-2029 (USD Million)
9.6.Water Quality Testing
9.6.1.Water Quality Testing Market Forecast, 2021-2029 (USD Million)
9.7.Soil Quality Testing
9.7.1.Soil Quality Testing Market Forecast, 2021-2029 (USD Million)
9.8.PFAS
9.8.1.PFAS Market Forecast, 2021-2029 (USD Million)
9.9.Volatile Organic Pollutants
9.9.1.Volatile Organic Pollutants Market Forecast, 2021-2029 (USD Million)
9.10.Others
9.10.1.Others Market Forecast, 2021-2029 (USD Million)

10. Market Analysis by End user
10.1.Industrial Facilities
10.1.1.Industrial Facilities Market Forecast, 2021-2029 (USD Million)
10.2.Government Agencies and Municipal Authorities
10.2.1.Government Agencies and Municipal Authorities Market Forecast, 2021-2029 (USD Million)
10.3.Commercial & Residential Facilities
10.3.1.Commercial & Residential Facilities Market Forecast, 2021-2029 (USD Million)
10.4. Industrial Facilities
10.4.1. Industrial Facilities Market Forecast, 2021-2029 (USD Million)
10.5. Others
10.5.1.Others Market Forecast, 2021-2029 (USD Million)

11. Regional Market Analysis
11.1.Regional Market Trends
11.2.Regional Market: Comparative Analysis

12. North America Environmental Testing Equipment Market

11. Europe Environmental Testing Equipment Market

12. Asia Pacific Environmental Testing Equipment Market

13. Latin America Environmental Testing Equipment Market

14. MEA Environmental Testing Equipment Market

15. Competitor Analysis
15.1.Market Share Analysis, 2021 & 2029
15.2.Competitive Mapping
15.3.Key Players Market Place Analysis
15.4.Major Recent Developments

16. Company Profiles
16.1.Agilent Technologies Inc. (US)
16.1.1.Company Snapshot
16.1.2.Company Overview
16.1.3.Financials
16.1.4.Platforms Benchmarking
16.1.5.Recent Developments
16.2.Thermo Fisher Scientific Inc. (US)
16.2.1.Company Snapshot
16.2.2.Company Overview
16.2.3.Financials
16.2.4.Platforms Benchmarking
16.2.5.Recent Developments
16.3.Shimadzu Corporation (Japan)
16.3.1.Company Snapshot
16.3.2.Company Overview
16.3.3.Financials
16.3.4.Platforms Benchmarking
16.3.5.Recent Developments
16.4.Waters Corporation (US)
16.4.1.Company Snapshot
16.4.2.Company Overview
16.4.3.Financials
16.4.4.Platforms Benchmarking
16.4.5.Recent Developments
16.5.Bruker Corporation (US)
16.5.1.Company Snapshot
16.5.2.Company Overview
16.5.3.Financials
16.5.4.Platforms Benchmarking
16.5.5.Recent Developments
16.6.PerkinElmer Inc. (US)
16.6.1.Company Snapshot
16.6.2.Company Overview
16.6.3.Financials
16.6.4.Platforms Benchmarking
16.6.5.Recent Developments
16.7.Merck KGaA (Germany)
16.7.1.Company Snapshot
16.7.2.Company Overview
16.7.3.Financials
16.7.4.Platforms Benchmarking
16.7.5.Recent Developments
16.8.Danaher Corporation (US)
16.8.1.Company Snapshot
16.8.2.Company Overview
16.8.3.Financials
16.8.4.Platforms Benchmarking
16.8.5.Recent Developments
16.9.JEOL Ltd. (Japan)
16.9.1.Company Snapshot
16.9.2.Company Overview
16.9.3.Financials
16.9.4.Platforms Benchmarking
16.9.5.Recent Developments
16.10.Endress+Hauser Group Services AG (Analytik Jena, Switzerland)
16.10.1.Company Snapshot
16.10.2.Company Overview
16.10.3.Financials
16.10.4.Platforms Benchmarking
16.10.5.Recent Developments
16.11. JASCO Corporation (Japan)
16.11.1.Company Snapshot
16.11.2.Company Overview
16.11.3.Financials
16.11.4.Platforms Benchmarking
16.11.5.Recent Developments
16.12.Teledyne Technologies Incorporated (US)
16.12.1.Company Snapshot
16.12.2.Company Overview
16.12.3.Financials
16.12.4.Platforms Benchmarking
16.12.5.Recent Developments
16.13.AMETEK, Inc. (US)
16.13.1.Company Snapshot
16.13.2.Company Overview
16.13.3.Financials
16.13.4.Platforms Benchmarking
16.13.5.Recent Developments
16.14.INFICON (Switzerland)
16.14.1.Company Snapshot
16.14.2.Company Overview
16.14.3.Financials
16.14.4.Platforms Benchmarking
16.14.5.Recent Developments

17. Conclusion & Recommendations

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