The Business Research Company’s report on the Non-Dispersive Infrared (NDIR) Market provides insights into the global market size, growth rate, regional distribution, competitive landscape, key segments, emerging trends, and strategic opportunities.
What are the primary drivers fueling the growth of the non-dispersive infrared (ndir) market in recent years?
The increasing need for wastewater treatment is expected to fuel the growth of the non-dispersive infrared (NDIR) market over the coming years. The process of eliminating contaminants from wastewater or sewage and converting them to effluent that may be fed to the water supply with little environmental impact is known as wastewater treatment. The non-dispersive infrared sensor is used to track nitrate, nitrite, and ammonia levels in municipal wastewater treatment plants and onsite wastewater treatment systems in real time. For instance, in August 2024, UN-Water Switzerland-based United Nations (UN) interagency mechanism, globally, 42% of household wastewater was not safely treated before discharge in 2022, resulting in an estimated 113 billion m3 being released into the environment, highlighting the urgent need for improved water quality and the goal to halve untreated wastewater and enhance recycling and safe reuse by 2030. Therefore, the increasing need for wastewater treatment drives the growth of the non-dispersive infrared (NDIR) market.
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What is the projected market size of the non-dispersive infrared (ndir) industry, and how is it expected to grow?
The non-dispersive infrared (NDIR) market size has grown strongly in recent years. It will grow from $0.46 billion in 2024 to $0.5 billion in 2025 at a compound annual growth rate (CAGR) of 8.6%. The growth in the historic period can be attributed to miniaturization and cost reduction, environmental regulations, energy efficiency, industrial safety, healthcare applications.
The non-dispersive infrared (NDIR) market size is expected to see strong growth in the next few years. It will grow to $0.71 billion in 2029 at a compound annual growth rate (CAGR) of 9.2%. The growth in the forecast period can be attributed to automotive emissions, food packaging, indoor air quality standards, research and development, water quality monitoring. Major trends in the forecast period include greenhouse gas monitoring, smart agriculture, artificial intelligence (ai) and machine learning, sustainable practices, smart agriculture.
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Who are the key players driving competition in the non-dispersive infrared (ndir) market?
Major companies operating in the non-dispersive infrared (NDIR) market include Acuity Brands Inc., Syska LED Lights Pvt. Ltd., Eaton Corporation plc, Hubbell Incorporated, Legrand Group, OSRAM Licht AG, Signify Holding, Schneider Electric SE, Zumtobel Group AG, Daisalux S.A.U., Emerson Electric Co., Larson Electronics LLC, ABB Group, Digital Lumens Inc., Amphenol Corporation, Honeywell International Inc., Senseair AB, Dynament Ltd., Mipex Technology AB, Gas Sensing Solutions Ltd., S+S Regeltechnik GmbH, Nano Environmental Technology S.r.l., Murata Manufacturing Co. Ltd., Sensirion AG, MKS Instruments Inc., Vaisala Corporation, Teledyne API, ELT SENSOR Corp., Super Systems Inc., Axetris AG, Edinburgh Sensors Ltd., Micro-Hybrid Electronic GmbH, Alphasense Ltd., Figaro Engineering Inc., AMETEK Inc., E+E Elektronik GmbH, Winsen Electronics Technology Co. Ltd., Hanwei Electronics Group Corporation, SGX Sensortech (IS) Ltd., Cubic Sensor and Instrument Co. Ltd.
What key trends are expected to drive the non-dairy yogurt market during the forecast period?
The growing technological advancements are a key trend gaining popularity in the non-dispersive infrared (NDIR) market. Major companies operating in the non-dispersive infrared (NDIR) sector are focused on developing technological solutions for non-dispersive infrared (NDIR). For instance, in May 2023, Yokogawa Electric Corporation, a Japan-based electrical engineering and software company, launched three new infrared gas analyzers, the IR800G Rack Type Infrared Gas Analyzer, the IR810G Wall and Panel Mount Type Infrared Gas Analyzer, and the IR810S Explosion-protected model Infrared Gas Analyzer, as part of its OpreX Analyzers lineup. These analyzers use non-dispersive infrared (NDIR) technology to detect and measure the concentration of greenhouse gases, including carbon dioxide, nitrogen dioxide, sulfur dioxide, and methane.
Which key geographies are driving the growth of the non-dispersive infrared (ndir) market?
Asia-Pacific was the largest region in the non-dispersive infrared (NDIR) market in 2024. North America was the second-largest region in the non-dispersive infrared (NDIR) market. The regions covered in the non-dispersive infrared (NDIR) market report include Asia-Pacific, Western Europe, Eastern Europe, North America, South America, Middle East and Africa.
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What are the key segments driving growth in the non-dispersive infrared (ndir) market?
The non-dispersive infrared (NDIR) market covered in this report is segmented –
1) By Gas Type: Carbon Dioxide, Hydrocarbons, Carbon Monoxide, Other Gas Type
2) By Application: HVAC, Monitoring, Detection And Analysis
3) By End User: Automotive And Transportation, Chemicals, Oil And Gas, Medical, Industrial And Manufacturing, Environmental, Food Processing And Storage, Other End-Users
Subsegments:
1) By Carbon Dioxide (CO2): Low-Concentration CO2 Sensors, High-Concentration CO2 Sensors
2) By Hydrocarbons: Methane (CH4) Sensors, Propane (C3H8) Sensors, Benzene (C6H6) Sensors
3) By Carbon Monoxide (CO): Portable CO Sensors, Fixed CO Sensors
4) By Other Gas Types: Nitrous Oxide (N2O) Sensors, Ammonia (NH3) Sensors, Hydrogen Sulfide (H2S) Sensors
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What defines the structure and scope of the non-dispersive infrared (ndir) market?
A non-dispersive infrared (NDIR) sensor is defined as a simple spectroscopic sensor often used as a gas detector. An NDIR sensor is used in gas analysis to evaluate the concentration of gases such as carbon dioxide, hydrocarbons, and carbon monoxide. It detects the type of gas measuring the amount of absorbed infrared at the necessary frequency.
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