Radiation Detection Monitoring Safety Market Growth Focusing on Trends & Innovations During the Period Until 2027

The report Radiation Detection, Monitoring & Safety Market by Product (Detection and Monitoring (Personal Dosimeter)), Composition (Gas-Filled Detectors, Scintillators), Application (Healthcare, Industrial Application), & Region – Global Forecast to 2027″, is valued at an estimated USD 2.5 billion in 2022 and is projected to reach USD 3.6 billion by 2027, at a CAGR of 7.1% during the forecast period. The market is expected to grow as a result of number of factors, including rising military spending, an increase in cancer incidence globally, increased radiation safety awareness, an increase in the number of PET/CT scans, and increased use of nuclear medicine and radiation therapy for diagnosis and treatment. The main obstacles to the expansion of this sector, however, include the high cost of lead and a lack of experienced radiation professionals, medical physicists, and nuclear power workers.

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Key Player

The key players in this market are Thermo Fisher Scientific Inc. (US), Mirion Technologies Inc. (US), Fortive (US), AMETEK Inc. (US), and Fuji Electric Co. Ltd. Co., Ltd. (Japan), Ludlum Measurements Inc. (US), Arktis Radiation Detectors Ltd. (Switzerland), Polimaster (Belarus), Amray (Ireland), Infab Corporation (US), IBA Worldwide (Belgium), Bertin Technologies (France), RDC (US), Arrow-Tech Inc. Inc. (US), Centronic Ltd. (UK), S.E. International Inc. (US), ATOMTEX (Belarus), Nucleonix Systems (India), Alpha Spectra Inc. (US), LND INC. (US), Bar-Ray Products (US), Trivitron Healthcare (India), Micron Technology Inc. (UK), Scionix Holland B.V. (Netherlands), Radcomm Systems (Canada), Xena Shield (India), SIMAD srl (Italy) and Burlington Medical (US) among others.

In 2021, Thermo Fisher Scientific Inc. (US) is a leading player in the global radiation detection, monitoring, and safety market. The company offers a wide range of portable radiation detectors, personal radiation dosimeters, integrated radiation monitoring systems, radiation contamination and environmental monitoring systems, and radiation detection portals & monitors. In 2021, the Analytical Instruments segment (offering radiation detection, monitoring, and safety devices) generated USD 6.07 billion in revenue. The company invests a significant amount of its revenue in R&D activities to increase its capabilities. The company is present in North America, Europe, Asia, and Latin America. The company has succeeded in creating a strong foothold due to its diversified product portfolio, wide geographic reach, and acquisitions.

In 2021, Fortive dominated the global medical radiation detection, monitoring, & safety market. The company is known to have technical and analytical services that have the capacity to calculate the exposure of environmental and occupational radiation hazards. Fortive receives a majority of its revenue from the North American market. The company focuses on introducing radiation safety products that reduce radiation exposure to physicians and patients and products that increase the accuracy of imaging by using reference markets. Fortive consistently invests in R&D to introduce innovative products. Although the company has not been involved in any major developments in the last few years, its strong focus on brand management and efficient distribution helps it to maintain its position in the market.

DRIVERS: Increasing usage of nuclear medicine and radiation therapy

Nuclear medicine and radiotherapy have a wide range of applications in cancer treatment; thus, the increasing prevalence of the disease will favor the radiation detection, monitoring, and safety market. According to GLOBOCAN, the number of cancer cases will rise to ~30 million by 2040 from 19.3 million in 2020. According to the World Nuclear Association, more than 40 million nuclear medicine procedures are performed every year, and the demand for radioisotopes has increased by 5% annually. In the US alone, annually, more than 20 million nuclear medicine procedures are performed. During the past decade, nuclear medicine practices have undergone a tremendous transformation owing to advances in radiopharmacy, instrumentation, and IT. The increasing usage of nuclear medicine in diagnosing and treating various diseases, such as cancer and cardiovascular disorders, has boosted the demand for radiation detection, monitoring, and safety devices.

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RESTRAINTS: Increasing use of alternatives for nuclear energy globally

Nuclear power has the ability to resolve global electricity needs, but with concerns regarding to its safety, such as the threat of a nuclear meltdown and the challenges with radioactive waste storage. With respect to human health and safety concerns, many cities, towns and nations are installing small and large-scale renewable power sources.

Substitutes to nuclear energy such as renewable energy (energy from sunlight, wind, rain, tides, waves, and geothermal heat) are projected to be the major threat to nuclear energy production, which could in-turn hamper the growth of the radiation detection, monitoring, and safety market.

OPPORTUNITIES: Rising focus on nuclear power in developing nations

Developing economies such as India, South Korea, Brazil, Turkey, Russia, and South Africa are expected to offer potential growth opportunities for major players operating in the radiation detection monitoring safety market. India is planning for fleet mode construction for upcoming nuclear power plant projects to reduce costs and construction time. The Department of Atomic Energy (DAE) officials announced that India had planned 17 nuclear power reactors in addition to those already under construction at India Energy Forum’s 11th Nuclear Energy Conclave held in October 2019 (Source: World Nuclear News). Further, India focuses on nuclear power to meet its future electric demands. For instance, according to the World Nuclear Association, India aims to supply 25% of electricity from nuclear power by 2050.

As nuclear power is a clean and reliable source of electricity generation, authorities in China focus on increasing the nuclear energy generation capacity of the country. According to the World Nuclear Association, as of March 2018, Mainland China has 38 operational nuclear power reactors and 20 nuclear power reactors under construction; the country has plans to build more reactors in the future to meet its energy needs.

CHALLENGES: Shortage of nuclear power workforce and skilled radiation professionals

The nuclear power industry in the US and Canada is experiencing a major shortage of qualified workers, and the situation is similar in many other developed and developing countries across the globe. Similarly, the radiation protection markets in the US, Australia, New Zealand, and Sweden have been facing a shortage of qualified medical physicists. Many European countries lack accredited training programs in radiation medicine, and there is no harmonization. Furthermore, the number of well-trained and competent medical physicists is still short of the desired requirement.

The nuclear workforce is aging, and attrition rates are high in the UK. According to a forecast by HM Government: Nuclear Sector Skills Strategy 2020, the workforce should grow by 4,700 people a year over the next six years in the UK. However, 3,900 people are expected to retire and leave the sector in this period. The UK is also facing a shortage of radiologists. According to the Royal College of Radiologists (RCR), in 2019, there was a shortage of at least 1,100 radiologists in the country.

The radiation detection and monitoring segment accounted for the largest share of the radiation detection monitoring safety market, by product segment

Based on product, the market is segmented into radiation detection and monitoring products and radiation safety products. The radiation detection and monitoring products segment accounted for the largest share in 2021. The higher share of this segment is primarily attributable to the widespread use of radiation detection and monitoring equipment for applications in medical imaging during diagnosis, homeland security and causes, nuclear power plants, and industrial settings.

Gas-Filled Detectors segment to register the highest growth rate during the forecast period

Based on composition, the global radiation detection monitoring safety market is segmented into gas-filled detectors, scintillators, and solid-state detectors. In 2021, the gas-filled detectors segment accounted for the largest percentage mostly as a result of the usability these detectors and the regularity of their detection outcomes in comparison to those of other detectors.

The healthcare accounted for the largest share of the radiation detection monitoring safety market, by application segment

Based on application, the global market is segmented into healthcare, homeland security & defense, industrial applications, nuclear power plants and other applications. In 2021, the healthcare segment accounted for the largest share of this market, due to increasing adoption of dosimeters, monitors and full-body detectors in radiology, hospitals, nuclear industries, and defense industry as well as availability of skilled and professional radiology workforce.

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North America dominates the radiation detection, monitoring, and safety market

The global radiation detection, monitoring and safety market has been segmented into five major regions—North America, Europe, the Asia Pacific, Latin America and Middle East and Africa. North America accounted for the largest share of the radiation detection, monitoring and safety market. The large share of this regional segment can be attributed to the growing the improving nuclear power industry, an increasing number of nuclear weapon research activities, rising incidences of cancer and government supporting development centers in the region.

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