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Atomic Spectroscopy Market to Grow by USD 2.46 Billion (2024-2028), Driven by Government Funding for Environmental Testing, AI Redefining the Market Landscape – Technavio

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NEW YORK, Sept. 24, 2024 /PRNewswire/ — Report with market evolution powered by AI- The global atomic spectroscopy market size is estimated to grow by USD 2.46 billion from 2024-2028, according to Technavio. The market is estimated to grow at a CAGR of almost 7.29%  during the forecast period. Increased funding by government organizations for environmental testing and product safety is driving market growth, with a trend towards growing use of portable spectroscopy systems in metal producing and processing sector. However, high cost of advanced instruments and maintenance services  poses a challenge. Key market players include A KRUSS Optronic GmbH, Agilent Technologies Inc., AMETEK Inc., Aurora Biomed Inc., Avantor Inc., Bruker Corp., Buck Scientific Instrument Manufacturing Co. AA, Endress Hauser Group Services AG, GBC Scientific Equipment, Hitachi High Tech Corp., HORIBA Ltd., PerkinElmer Inc., Rigaku Corp., SAFAS SA, Shimadzu Corp., Teledyne Technologies Inc., and Thermo Fisher Scientific Inc..

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Atomic Spectroscopy Market Scope

Report Coverage

Details

Base year

2023

Historic period

2018 – 2022

Forecast period

2024-2028

Growth momentum & CAGR

Accelerate at a CAGR of 7.29%

Market growth 2024-2028

USD 2461.7 million

Market structure

Fragmented

YoY growth 2022-2023 (%)

6.66

Regional analysis

North America, Europe, Asia, and Rest of World (ROW)

Performing market contribution

North America at 41%

Key countries

US, Canada, Germany, France, and China

Key companies profiled

A KRUSS Optronic GmbH, Agilent Technologies Inc., AMETEK Inc., Aurora Biomed Inc., Avantor Inc., Bruker Corp., Buck Scientific Instrument Manufacturing Co. AA, Endress Hauser Group Services AG, GBC Scientific Equipment, Hitachi High Tech Corp., HORIBA Ltd., PerkinElmer Inc., Rigaku Corp., SAFAS SA, Shimadzu Corp., Teledyne Technologies Inc., and Thermo Fisher Scientific Inc.

Market Driver

Manufacturers in the analytical instruments industry are prioritizing the development of compact, portable atomic spectroscopy systems to cater to the growing demand for onsite analysis in hard-to-reach locations. These portable products enable end-users in metal processing and production to perform tasks such as material identification and metal sorting effectively. The focus on portable optical emission spectroscopy systems and X-ray fluorescence (XRF) spectroscopy systems is particularly high due to their ability to provide non-destructive analysis of solid metallic samples quickly. The increasing global metal production further boosts the market potential for these portable atomic spectroscopy systems. 

Atomic spectroscopy is a key technology in analytical chemistry, used to identify and measure the concentrations of elements in various samples. This market encompasses techniques like Atomic Absorption (AA), Atomic Emission (AE), and X-ray Fluorescence (XRF). XRF uses X-rays to excite atoms, revealing their spectral lines. AA measures absorption of electromagnetic radiation, while AE detects emitted radiation. Mass analyzers help separate and identify elements. Sectors like Metallurgy, Pharmaceuticals, Forensics, Research Labs, Biopharma, and Biotech use atomic spectroscopy. It’s crucial for safety regulations, especially in drug products, APIs, raw materials, and intermediates. ICP spectrometers, including ICP-OES and ICP-MS, are popular instruments. XRF, AA, and AE are essential for trace elements analysis. Other techniques like Atomic Fluorescence and Mass Spectrometry complement these methods. This market continues to grow, driven by increasing demand for precise elemental analysis. 

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Market Challenges

Atomic spectroscopy is widely used in various industries due to its cost-effective analysis capabilities, particularly in applications where Atomic Absorption Spectroscopy (AAS) systems are employed. However, advanced atomic spectroscopy techniques such as Inductively Coupled Plasma Mass Spectrometry (ICP-MS) and Inductively Coupled Plasma Optical Emission Spectroscopy (ICP-OES) face challenges in adoption due to their high capital and operating costs. ICP-MS and ICP-OES systems use argon gas, cones, nebulizers, and other expensive consumables, making them less affordable for laboratories and research institutions with limited budgets. These sophisticated systems have significant capital investments and high running and maintenance costs. The high cost analysis of atomic spectroscopes includes initial capital cost, ongoing running cost, and maintenance and service cost. Although ICP-MS and ICP-OES offer superior accuracy and precision, their high capital and operational expenses limit their adoption. The emergence of compact-sized portable atomic spectroscopy systems has introduced onsite testing capabilities and improved ease of use, but their high maintenance costs hinder their widespread adoption. For instance, the cost of repairing a detector in these systems can reach up to USD10,000. These factors are anticipated to impede the growth of the atomic spectroscopy market during the forecast period.Atomic spectroscopy is a crucial tool in analytical chemistry for identifying and quantifying elements in various industries. The market for atomic spectroscopy instruments includes applications in drug products and APIs, raw materials, intermediates, and environmental testing. Challenges in this market include complying with environmental regulations and ensuring food safety. Technologies such as ICP spectrometers (ICP-OES and ICP-MS), atomic absorption spectroscopy, X-ray fluorescence, and elemental analyzers are commonly used. Key players in the market include Agilent Technologies, PerkinElmer, and Thermo Fisher Scientific. Laboratory automation, multi-elemental analysis, and industry partnerships are driving innovation in this field. Precision agriculture, drug safety, biotechnology, and remote sensing are emerging applications. Stringent regulations and the need for trained professionals require continuous advancements in technology, including GFAAS, isotopic information, and telemetry integration. Our Company Analysis Dashboard provides research analyst access and competitor analysis to help businesses stay informed.

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Segment Overview 

This atomic spectroscopy market report extensively covers market segmentation by

Technology 1.1 Atomic absorption1.2 X ray fluorescence1.3 X ray diffraction1.4 ICP-MS and othersEnd-user 2.1 Pharmaceutical and biotechnology testing2.2 Food and beverage testing2.3 Environmental testing2.4 OthersGeography 3.1 North America3.2 Europe3.3 Asia3.4 Rest of World (ROW)

1.1 Atomic absorption-  Atomic absorption spectroscopy is a quantitative analysis technique used to detect specific light wavelengths absorbed by neutral atoms. This method is commonly referred to as a metal analysis spectrometer due to its primary function in metal concentration analysis. Industries such as biomonitoring, chemical, food, and pharmaceutical sectors utilize atomic absorption spectrometers for analyzing metal concentrations in various samples, including medicines, foods, beverages, and biological fluids. The global atomic absorption market is projected to expand due to the growth of industries like pharmaceuticals and environmental testing, driven by the increasing incidence of diseases and environmental issues. According to Technavio’s latest analysis, the atomic absorption segment is expected to grow at a CAGR of 5.48% from 2022 to 2027, fueled by these factors and the overall growth of the global atomic spectroscopy market.

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Research Analysis

Atomic spectroscopy is a powerful analytical technique used to identify and quantify elements in various matrices, including drug products, APIs, raw materials, intermediates, and food samples. This technique utilizes the interaction of electromagnetic radiation with atoms to obtain spectral information, which is then used to determine the concentrations of specific elements. In the pharmaceutical industry, atomic spectroscopy plays a crucial role in ensuring the purity and quality of drug products and APIs by detecting trace elements. The food industry also benefits from this technology in addressing food safety concerns and complying with stringent regulations. Trained professionals use instruments such as ICP spectrometers, GFAAS, atomic fluorescence, atomic absorption, and atomic emission, among others, to obtain isotopic information and spectral lines for elemental analysis. The metallurgy sector also heavily relies on atomic spectroscopy for material analysis. Agilent Technologies and other key companies offer advanced atomic spectroscopy instruments and solutions for various industries.

Market Research Overview

Atomic spectroscopy is a powerful analytical technique used to identify and quantify elements in various matrices, including drug products, APIs, raw materials, intermediates, and environmental samples. This technique utilizes electromagnetic radiation to excite atoms, which then emit spectral lines that are unique to each element. Applications of atomic spectroscopy span across various industries, including the pharmaceutical, metallurgy, petrochemical, and environmental sectors. In laboratories, atomic spectroscopy plays a crucial role in quality control, environmental testing, and research. Technologies such as ICP spectroscopers, atomic absorption spectroscopy, X-ray fluorescence, and X-ray diffraction are commonly used. Multi-elemental analysis, isotopic information, and precision agriculture are some of the emerging trends in atomic spectroscopy. Strict regulations and food safety concerns are driving the demand for this technology in various industries. With the help of advanced instruments and trained professionals, atomic spectroscopy provides accurate and reliable elemental information, enabling industries to meet safety regulations and improve product quality.

Table of Contents:

1 Executive Summary
2 Market Landscape
3 Market Sizing
4 Historic Market Size
5 Five Forces Analysis
6 Market Segmentation

TechnologyAtomic AbsorptionX Ray FluorescenceX Ray DiffractionICP-MS And OthersEnd-userPharmaceutical And Biotechnology TestingFood And Beverage TestingEnvironmental TestingOthersGeographyNorth AmericaEuropeAsiaRest Of World (ROW)

7 Customer Landscape
8 Geographic Landscape
9 Drivers, Challenges, and Trends
10 Company Landscape
11 Company Analysis
12 Appendix

About Technavio

Technavio is a leading global technology research and advisory company. Their research and analysis focuses on emerging market trends and provides actionable insights to help businesses identify market opportunities and develop effective strategies to optimize their market positions.

With over 500 specialized analysts, Technavio’s report library consists of more than 17,000 reports and counting, covering 800 technologies, spanning across 50 countries. Their client base consists of enterprises of all sizes, including more than 100 Fortune 500 companies. This growing client base relies on Technavio’s comprehensive coverage, extensive research, and actionable market insights to identify opportunities in existing and potential markets and assess their competitive positions within changing market scenarios.

Contacts

Technavio Research
Jesse Maida
Media & Marketing Executive
US: +1 844 364 1100
UK: +44 203 893 3200
Email: media@technavio.com
Website: www.technavio.com/

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SOURCE Technavio

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Wistron Celebrates Grand Opening of First U.S. Smart Factory Marking Milestone in Global Smart Manufacturing Strategy

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FORT WORTH, Texas, July 21, 2026 /PRNewswire/ — Wistron Corporation (“Wistron”) celebrated the grand opening of its D1 AI smart facility in Fort Worth, Texas, the site where the first NVIDIA GB300 Grace Blackwell Ultra Superchip was built and mass-produced in the United States. The US$ 700 million facility, spanning approximately 324,000 square foot, was officially unveiled during a ceremony led by Wistron Chairman Simon Lin and NVIDIA Founder and CEO Jensen Huang. Jessica Rogers, Director of the Economic Development Department for the City of Fort Worth, and Alexander Tah-ray Yui, Taiwan’s Representative to the United States, were among the government officials and business leaders who attended, marking a milestone in the expansion of Wistron’s global footprint and advanced manufacturing capabilities.

This is a key hub in Wistron’s global AI infrastructure manufacturing network. The facility runs on NVIDIA accelerated computing and integrates NVIDIA’s Nemotron and Cosmos open frontier models and Omniverse and Metropolis libraries, using digital twin technology to optimize factory design, production workflows, and operational efficiency. It is Wistron’s first U.S.-based manufacturing facility, established to serve customers locally and produce NVIDIA’s most advanced and cutting-edge products. Wistron Chairman Simon Lin said “The operation here is not typical manufacturing. It is new, very comprehensive, and high-tech. Right now we produce the NVIDIA GB300 Grace Blackwell Ultra Superchip, and beyond, we are also going to produce the NVIDIA Vera Rubin Superchip here. In the next couple of years, this location will be one of the most important, as we build AI infrastructure here in the United States. I think this is the reason we say that there will be the next chapter, and we are going to empower AI from Texas.”

Responding to Customer Needs: Texas, the Newest Global Manufacturing Hub
At this pivotal moment for global AI infrastructure, Wistron is drawing on decades of global manufacturing experience to expand its footprint in Texas, a state with a well-established ecosystem for logistics, talent recruitment, and advanced manufacturing. The new D1 facility produces the NVIDIA GB300 Grace Blackwell Ultra Superchip and soon, the NVIDIA Vera Rubin Superchip — critical to powering the next generation of AI computing. The new Fort Worth facility strengthens a critical upstream layer of the AI infrastructure supply chain by expanding domestic capacity to assemble and test NVIDIA AI systems. These servers can be integrated into NVIDIA DSX infrastructure, with DSX providing the common architecture and technologies needed to deploy and operate energy-efficient AI factories at scale.

One-Stop Operational Ecosystem Strengthens U.S. AI Supply Chain Resilience
Behind every breakthrough in AI computing lies the manufacturing capability to scale it. Wistron is expanding its AI server production capabilities from Taiwan to the United States, guided by a vision of precision, efficiency, and sustainability. This reflects a broader industry shift: AI leadership is determined not only by technological breakthroughs, but also by the operational capability to transform innovation into high-volume production with consistent quality, supply chain resilience, and predictable delivery. By establishing AI infrastructure manufacturing capacity in the United States, Wistron is building a one-stop operational ecosystem spanning manufacturing and after-sales service — shortening delivery timelines and customer support cycles, strengthening supply chain resilience, and laying the foundation for long-term competitive advantage as AI infrastructure continues to scale.

Partnering with NVIDIA to Pioneer a New Model for Smart Manufacturing and Energy Optimization
As the era of physical AI begins, Wistron is extending its smart manufacturing capabilities to the United States, creating a new model for AI infrastructure production built on digital manufacturing, energy optimization, and local operations. Jensen Huang said: “The largest infrastructure buildout in history is underway. Demand for AI factories—the engine of this next industrial revolution—is incredible, and they must be produced everywhere. Together, NVIDIA and Wistron are restoring US advanced manufacturing capacity in Texas, creating skilled jobs and strengthening America’s AI supply chain.” As demand for advanced manufacturing grows in Texas, smarter planning of production loads and energy use will give the plant greater control and flexibility over its electricity needs.

Turning Global Experience into Scalable AI Infrastructure
Simon Lin stressed that the speed the AI era demands comes with its own responsibility. “In the AI era, the pressure of speed is also a form of responsibility,” Lin said. “We don’t just need to build fast; we need to build right.”

The Fort Worth plant will serve as the core engine of Wistron’s U.S. manufacturing operations, the company said, connecting its global production network with ecosystem partners as it scales advanced AI manufacturing. Wistron said that the investment reflects efforts to deepen its technical capabilities, strengthen the resilience and efficiency of global supply chains, and support the next phase of AI infrastructure development.

About Wistron:
Wistron Corporation is a leading global technology service provider delivering advanced ICT products, AI infrastructure, and manufacturing solutions to technology brands worldwide. With more than 63,000 employees across North America, Europe, and Asia, Wistron continues to expand its AI, cloud, and advanced manufacturing capabilities to support the next generation of intelligent computing. For more information about Wistron, please visit the official website at www.wistron.com. Additional information about the event is available on the event website.

Media Contact:
Joyce WL Chou
joyce_wl_chou@wistron.com

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SOURCE Wistron Corporation

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NSG Bio Accelerates Breakthrough Biotech Innovation in Singapore

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New initiative under NSG Bio Tomorrow will support promising startups developing next-generation approaches in respiratory and neonatal care

SINGAPORE, July 22, 2026 /PRNewswire/ — The NSG Bio Tomorrow initiative aims at supporting emerging life sciences startups working on complex challenges in respiratory and neonatal care.

Launched through the support of Chiesi Group, The Impulse initiative will provide a selected startup with one year of NSG Bio membership and access to a dedicated laboratory bench at NSG Bio Singapore. The initiative is designed to help early-stage biotech companies move from promising science toward stronger proof-of-concept work in a fully equipped research environment.

The initiative comes at a time when the biotech industry is increasingly looking for faster, more connected ways to move high-potential science from the lab toward real-world patient impact. For startups, access to infrastructure is only one part of the challenge. Equally important are the right networks, industry visibility, technical environment, and opportunities to engage with partners who understand the path from early discovery to clinical relevance.

The programme will focus on startups developing innovative biotechnological solutions with potential relevance to chronic respiratory diseases and neonatal conditions. Areas of interest include cell therapies, gene therapies, gene-editing technologies, regenerative tissue engineering, engineered or programmable living systems, lung-targeted delivery platforms, preventive approaches, and small-molecule-based approaches.

The selected startup will gain access to NSG Bio’s laboratory infrastructure, shared workspaces, meeting facilities, and wider community of biotech entrepreneurs, researchers, scientific leaders, and industry partners. The support is intended to help the company advance key research milestones while becoming part of Singapore’s growing life-science innovation ecosystem.

For NSG Bio, the initiative is part of NSG Bio Tomorrow, its ecosystem-building arm created to expand the company’s role beyond facilities and real estate. While NSG Bio is known for providing high-quality laboratory and office infrastructure for biotech companies, NSG Bio Tomorrow focuses on building the programmes, partnerships, and opportunities that help startups grow.

“Biotech companies need more than lab space. They need access, momentum, and the right ecosystem around them,” said Hasyim Sim, Co-Founder and Chief Operating Officer, NSG Bio. “Through NSG Bio Tomorrow, we are building initiatives that help promising startups connect with partners, unlock opportunities, and move their science forward. This initiative reflects exactly the kind of role we want to play in the biotech ecosystem.”

“Chiesi is committed to supporting innovation that can make a meaningful difference for patients, and we work with entrepreneurs, researchers and partners to advance meaningful ideas,” said Fabrizio Conicella, Vice President, Center of Open Innovation & Competence at Chiesi Group. “By supporting this NSG Bio Tomorrow initiative, we want to create an opportunity for early-stage innovators to access the infrastructure and ecosystem support needed to develop impactful science in respiratory and neonatal care.”

NSG Bio Tomorrow programme also reinforces Singapore’s position as a growing hub for biotech innovation in Asia, where startups, research institutions, investors, and industry partners are increasingly coming together to support the next generation of healthcare companies.

Applications open on 22 July 2026 at 09:00 a.m. SGT. Finalists will be invited to present at a virtual pitch event, after which the selected startup will be announced.

About NSG Bio

NSG Bio is Singapore’s leading provider of BSL-2 certified co-working laboratory and office spaces, supporting life-science companies from early research through growth. Through its facilities, community, and ecosystem initiatives, NSG Bio enables biotech innovators to accelerate research, access networks, and build companies that address critical healthcare challenges.

About NSG Bio Tomorrow

NSG Bio Tomorrow is NSG Bio’s ecosystem-building arm, created to support the next generation of biotech innovation through partnerships, programmes, community initiatives, and opportunities that extend beyond physical laboratory infrastructure. Its mission is to strengthen the biotech industry by connecting startups with the resources, expertise, and networks they need to thrive.

About Chiesi Group 

Chiesi is a research-oriented international biopharmaceutical group that develops and markets innovative therapeutic solutions in respiratory health, rare diseases, and specialty care. The company’s mission is to improve people’s quality of life and act responsibly towards both the community and the environment. As a certified B Corp since 2019, Chiesi is part of a global community of businesses that meet high standards of social and environmental impact. 

With 90 years of experience, Chiesi is headquartered in Parma (Italy), with 31 affiliates worldwide, and counts more than 7,900 employees. The Group’s research and development centre in Parma works alongside 6 other important R&D hubs in France, the US, Canada, China, the UK, and Sweden. For further information please visit https://www.chiesi.com/en/home 

Media Contact
Giridharan
Laboratory Manager
NSG Bio
giridharan@nsgbio.com
87797175

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SOURCE NSG Bio

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House Judiciary Committee Passes Bill that Would Prevent Future Immigration Crises: Swift Action Needed by Full House, Says FAIR

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WASHINGTON, July 21, 2026 /PRNewswire/ — Today, the House Judiciary Committee passed an updated version of H.R. 2, the landmark border security bill from last congressional session. The bill now awaits consideration by the full House of Representatives. The Federation for American Immigration Reform (FAIR) urges Speaker Mike Johnson to schedule a final floor vote as soon as possible.

The Secure Border Act systematically closes the loopholes that allowed the Biden administration to unleash the largest and most damaging wave of illegal immigration in American history. Enactment of this legislation would prevent future anti-borders administrations from shirking their responsibilities to secure our borders and enforce our immigration laws; asserting unlimited discretion to parole inadmissible aliens to enter the country; or releasing millions of illegal aliens into the country, rather than detaining them or returning them to the country from which they entered.

“We congratulate the Judiciary Committee for its swift action on this critical legislation,” said Dale Wilcox, executive director and general counsel of FAIR. “Ending border chaos and rampant illegal immigration was a key reason that Republicans regained control of the White House and both chambers of Congress in the last election. The clock is ticking on the 119th Congress, and Republicans only have a short time to deliver on the promises they made to voters in 2024, before the midterms.

“Right now, our immigration laws are being enforced in the interests of the American people. As the last administration demonstrated, enforcement of those laws is not guaranteed unless Congress acts to prevent similar abuse in the future. Now is the time for decisive action in the House, where this bill can be passed with a simple majority vote, and an opportunity for Senate Majority Leader John Thune to put every member of that body on record before voters go to the polls in the fall,” Wilcox concluded.

Hayley Hill, hhill@fairus.org 202-328-7004

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SOURCE Federation for American Immigration Reform (FAIR)

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