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Global Atomic Fluorescence Spectrometers Market Size, Share And FOrecast By 2030

04-25-2023 04:22 AM CET | Industry, Real Estate & Construction

Press release from: Allied Market Research

Global Atomic Fluorescence Spectrometers Market Size, Share

Atomic Fluorescence Spectrometry (AFS) is a powerful analytical technique used to determine the concentration of various elements in a sample. It is a type of atomic spectroscopy that involves the measurement of fluorescence emission from atoms excited by an external energy source. Atomic fluorescence spectrometers are the instruments used to perform this type of analysis.

Atomic fluorescence spectrometers are devices that determine elements composition by its electromagnetic spectrum. The different atomic weight of elements emits different readings on spectrometer resulting in identification of their composition. The atomic absorption as well as emission find their applications in forensic science analytics, nanoparticle analysis, and molecular tracking.

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Key Market Players : Analytik Jena, Angstrom Advanced, Aurora Instruments, Avantes, Lumex Instruments, OVIO Instruments, PerkinElmer, PG Instruments, SAFAS, Shimadzu.

The basic principle behind AFS is that when atoms absorb energy, they become excited and can emit energy in the form of light. This is known as fluorescence. In AFS, the sample is typically vaporized and atomized in a flame or graphite furnace. The atoms are then excited by a light source, such as a hollow cathode lamp, and the resulting fluorescence is measured by a detector.

The detection of fluorescence emission is highly sensitive and specific, making AFS an excellent technique for trace element analysis. AFS is also relatively free from spectral interferences, making it ideal for the analysis of complex matrices, such as biological samples, environmental samples, and geological samples.

The design of atomic fluorescence spectrometers can vary depending on the specific application. However, all AFS instruments share some common components. These include the excitation source, atomizer, and detector.

The advancement of technology and rise in funding of research that offer superior precision and accurate analysis is anticipated to boost the growth of the market. However, complexities associated with accurate measurement and costs involved in atomic fluorescence spectrometers continue to restrain the growth of this market. Opportunities such extensive research in atomic spectroscopy can further improve the scope of atomic fluorescence spectrometers in industrial application.

The excitation source in AFS is typically a hollow cathode lamp (HCL) or a microwave induced plasma (MIP). The HCL is the most commonly used excitation source in AFS, and it emits a narrow line emission at a specific wavelength. The MIP is a newer technology that is capable of generating a broader range of wavelengths, making it more versatile than the HCL.

The atomizer in AFS is responsible for converting the sample into atoms. There are two primary types of atomizers used in AFS: flame and graphite furnace. Flame atomizers are the most common and are typically used for the analysis of liquid samples. Graphite furnace atomizers are used for the analysis of solid samples, as they are capable of providing a higher sensitivity and lower detection limits.

The detector in AFS is responsible for measuring the fluorescence emission from the excited atoms. The most commonly used detector in AFS is the photomultiplier tube (PMT). The PMT is a highly sensitive detector that converts the fluorescence emission into an electrical signal, which is then processed and analyzed by a computer.

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One of the advantages of AFS is its high sensitivity. AFS is capable of detecting trace levels of elements in a sample, often at concentrations as low as parts per billion (ppb) or even parts per trillion (ppt). This makes AFS an ideal technique for the analysis of environmental samples, such as soil and water, where trace levels of contaminants can have significant health implications.

Another advantage of AFS is its ability to analyze a wide range of elements. AFS is capable of detecting most elements in the periodic table, making it a versatile technique for a variety of applications. This includes the analysis of rare earth elements, which are essential components in many high-tech applications.

AFS also has some disadvantages. One of the main disadvantages is its limited dynamic range. AFS is most sensitive in the low concentration range, but as the concentration of the analyte increases, the fluorescence emission becomes saturated, and the accuracy of the measurement decreases. This means that AFS is not suitable for the analysis of high concentration samples.

In conclusion, atomic fluorescence spectrometers are essential tools for the analysis of trace elements in a wide range of samples. The high sensitivity and specificity of AFS make it ideal for the analysis of complex matrices, and its ability to analyze a wide range of elements makes it a versatile technique for a variety of applications. While AFS has some limitations, it remains one of the most powerful analytical techniques available for the analysis of trace elements.

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Allied Market Research (AMR) is a full-service market research and business-consulting wing of Allied Analytics LLP based in Portland, Oregon. Allied Market Research provides global enterprises as well as medium and small businesses with unmatched quality of "Market Research Reports" and "Business Intelligence Solutions." AMR has a targeted view to provide business insights and consulting to assist its clients to make strategic business decisions and achieve sustainable growth in their respective market domain.

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