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Air Quality Monitoring System Market: Global Market Synopsis, Growth Factors, Industry Segmentation, Regional Analysis And Competitive Analysis 2017 - 2025

ID: 240233 21st May, 2018 Region : Global Pages Reports Monitor

Global air quality monitoring system market, by sampling method (active monitoring, manual monitoring, passive monitoring, intermittent monitoring, and stack monitoring), pollutant (chemical pollutant, physical pollutant, and biological pollutant) and end-user (government agencies and academic institutes, commercial and residential users, petrochemical industry, power generation plants, pharmaceutical industry, smart city authority, and others).
Market Scenario:

Breathing air contains life aiding chemicals and gases such as, oxygen, nitrogen, carbon dioxide, carbon monoxide, and many others which could be harmful as well. The comfort of human is determined by characteristics of air such as, temperature, humidity, and pressure. Air quality monitoring system devices are helpful to monitor and detect the level of pollutants in both environments as indoors and outdoors. These hazardous chemicals and gases affect the health of humans and animals as well. It causes eyes, nose, throat irritation, cough, wheezing, chest tightness, increase in risk of heart, kidney diseases and could increase the existing health problems.


Continuous rise in air pollution level is a serious concern for the world due to that government enforcing strict regulations to control the air pollution and monitoring it by using such systems which fuels up the market growth of air quality monitoring system. Moreover, increase in public‐private partnership for air quality monitoring has supplemented the demand for air quality devices which is anticipated to drive this market. Further, growing industrialization in developing countries offers better opportunities for this market. However, the high prices and technical complications of air quality monitors restrict the market growth. Also, gradual implementation of regulations regarding air pollutions challenges the market growth.


Segmentation:
The air quality monitoring system market is segmented on the basis of sampling method, pollutant, end-user, and region.
On the basis of sampling method, the market is segmented into active monitoring, manual monitoring, passive monitoring, intermittent monitoring, and stack monitoring.
On the basis of pollutant, the market is segmented into chemical pollutant, physical pollutant, and biological pollutant.
On the basis of end-user, the market is segmented into government agencies and academic institutes, commercial and residential users, petrochemical industry, power generation plants, pharmaceutical industry, smart city authority, and others.


Regional Analysis:
Geographically, the air quality monitoring system market is segregated in North America, Europe, Asia Pacific, and LAMEA (Latin America, Middle East and Africa). The major growth factors for air quality monitoring system market in North American region are extensive use of advanced pollution monitoring technologies and presence of well-established distribution channels for the supply of air quality monitoring products. Further, ease of accessibility and fast adoption rate of developing technologies in U.S. and Canada drives the major market share in North American region. However, strict government regulations to maintain the air quality standards in Germany and UK are expected to drive this market in European region.


Key Players:
The major key players in air quality monitoring system market are Emerson Electric Co, General Electric Company, Siemens AG, Testo AG, 3M Company, Horiba, Ltd., Merck KGaA, Teledyne Technologies Inc., Servomex Group Ltd., and Thermo Fisher Scientific, Inc. These players are trying to recognise the needs of market in developing countries and expanding their strategies to improve business needs.


Segmentation:
By Sampling Method
• Active Monitoring
• Manual Monitoring
• Passive Monitoring
• Intermittent Monitoring
• Stack Monitoring
By Pollutant
• Chemical Pollutant
• Physical Pollutant
• Biological Pollutant
By End-User
• Government Agencies and Academic Institutes
• Commercial and Residential Users
• Petrochemical Industry
• Power Generation Plants
• Pharmaceutical Industry
• Smart City Authority
• Others

Research Scope
The study for Global Air Quality Monitoring System Market Survey and Trend Research 2018 will provide market size, estimates and forecast based on the following years: 
 
Historic data: 2015  Base Year Estimate: 2016  Forecast: 2017 to 2025


The report has been categorized in two distinctive sections, where the first category titled as Market Overview provides a holistic view of the market, key trends, drivers, challenges/restraints or opportunities with their current and expected impact on the overall industry sales. 
Our analyst implement, several qualitative tools such as Ansoff’s Matrix, PESTEL analysis, Porter’s five force analysis among other to interpret and represent key industry findings. 
The second section of the study provides market size, estimates and forecast for key market segments and regional market. The final part of the report highlights key manufacturers/vendors operating in the associated market. 


1. Introduction
1.1. Market Definition
1.2. Market Scope


2. Research Methodology
2.1. Primary Research
2.2. Secondary Sources
2.3. Assumptions & Exclusions


3. Market Overview
3.1. Research Report Segmentation & Scope
3.2. Key Market Trend Analysis
3.2.1. Market Drivers
3.2.2. Market Restraint/Challenges
3.2.3. Market Opportunities
3.3. Porter’s Five Forces Analysis
3.4. Potential Venture Avenues
3.5. Market Share Analysis, 2016 


4. Sampling Methods Overview
4.1. Introduction 
4.2. Market Size & Forecast, 2015 to 2025
4.2.1. Active Monitoring
4.2.2. Manual Monitoring
4.2.3. Passive Monitoring
4.2.4. Intermittent Monitoring
4.2.5. Stack Monitoring
 (Note: The segments mentioned above are tentative in nature and are subject to change as the research progresses)


5. Pollutant Overview
5.1. Introduction 
5.2. Market Size & Forecast, 2015 to 2025
5.2.1. Chemical Pollutant
5.2.2. Physical Pollutant
5.2.3. Biological Pollutant
 (Note: The segments mentioned above are tentative in nature and are subject to change as the research progresses)


6. End-User Overview
6.1. Introduction 
6.2. Market Size & Forecast, 2015 to 2025
6.2.1. Government Agencies and Academic Institutes
6.2.2. Commercial and Residential Users
6.2.3. Petrochemical Industry
6.2.4. Power Generation Plants
6.2.5. Pharmaceutical Industry
6.2.6. Smart City Authority
6.2.7. Others
(Note: The segments mentioned above are tentative in nature and are subject to change as the research progresses)


7. Regional Overview
7.1. Introduction
7.2. Market Size & Forecast, 2015 to 2025
7.2.1. North America
7.2.1.1. U.S.
7.2.1.2. Canada
7.2.1.3. Mexico 
7.2.2. Europe
7.2.2.1. UK
7.2.2.2. Germany
7.2.2.3. France
7.2.2.4. Italy 
7.2.2.5. Russia
7.2.2.6. Poland
7.2.2.7. Rest of Europe
7.2.3. Asia-Pacific
7.2.3.1. China
7.2.3.2. India
7.2.3.3. Japan
7.2.3.4. Australia
7.2.3.5. South Korea
7.2.3.6. Rest of Asia-Pacific
7.2.4. LAMEA
7.2.4.1. Saudi Arabia
7.2.4.2. UAE
7.2.4.3. South Africa
7.2.4.4. Rest of LAMEA
(Note: The segments mentioned above are tentative in nature and are subject to change as the research progresses)


8. Manufacturer/ Vendor Profile
8.1. The following attributes will be considered while profiling key manufacturers in this industry: 
8.1.1. Company Overview
8.1.2. Financial Synopsis
8.1.3. Recent Developments
8.1.4. R&D Investments (if any)
8.1.5. Strategy Overview (Analyst Perspective)
8.1.6. Product Portfolio
8.2. Companies Profiled
8.2.1. Emerson Electric Co.
8.2.2. General Electric Company
8.2.3. Siemens AG
8.2.4. Testo AG
8.2.5. 3M Company
8.2.6. Horiba, Ltd.
8.2.7. Merck KGaA
8.2.8. Teledyne Technologies Inc.
8.2.9. Servomex Group Ltd.
8.2.10. Thermo Fisher Scientific, Inc.
 (Note: The companies mentioned above are tentative in nature, and profiles of other market players not listed here can be included on request.) 

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