Analytik Jena Expands Product Portfolio with ICP-OES and Launches New Product on the Market

20 Mar 2014
Sarah Thomas
Associate Editor

Product news

Within its core segment for analysis measuring technology, Analytik Jena AG now offers with the PlasmaQuant® PQ 9000 its first High-Resolution Array ICP OES (optical emission spectrometry using inductively coupled plasma) for multiple element analysis as part of its own technology portfolio. This method is routinely used for determining smallest element concentrations especially in environmental analysis, material research, metal or pharmaceutical industries. In the important markets for these products such as China, Japan and Thailand it was already launched in autumn 2013. In Germany, it will be introduced at the leading analytica industrial exhibition in April 2014.

"The PlasmaQuant® PQ 9000 has been developed to master the most complicated analytical challenges in emission spectrometry with the highest degree of precision, method flexibility and operating comfort. In doing so, we are building on our longstanding experience in the development of high-end spectrometers", said Torsten Olschewski, General Manager of the Analytical Instrumentation business unit at Analytik Jena AG.

PlasmaQuant® PQ 9000 is a specialist for demanding samples and complicated matrices

Technological advances in the product include the optical resolution, the plasma torch design and the generation and observation of the plasma. "With its array technology, excellent spectral resolution and the clever design of the plasma torch, the PlasmaQuant® PQ 9000 is a specialist for demanding samples and complicated matrices. It is high-performing in identifying spectral interferences. Thus it permits a precise evaluation of analysis results of samples with high salt content or just traces of elements as well as of acids and bases", Olschewski added.

Method:
Optical emission spectrometry using an inductively coupled plasma (ICP-OES) is an analysis method in which very hot argon plasma is used to analyze the elements present in a sample using optical emission. Based on the emitted characteristic radiation the content of the individual elements can be determined. ICP-OES technology is routinely used in many industry sectors, for example, environmental analysis, material research, metal or pharmaceutical industries.

Applications:
The PlasmaQuant® PQ 9000 also allows for the safe analysis of rare earth metals such as cerium, lanthanum, neodymium or samarium in silicate-containing minerals. The high salt contents in these minerals (silicates) are not a problem thanks to the technology of the PlasmaQuant® PQ 9000 system. Spectral interferences caused by the high contents of these samples of main group elements such as sodium, aluminum or silicon can be detected with the help of high resolution and easily corrected.


Another application is the analysis of biodiesel for traces of metals such as sodium, potassium or manganese. These lead to foaming of the fuel and thus to unstable or lower performance as well as clogging of filters. Other trace elements to be controlled are phosphorus and sulfur, which are known as catalyst poisons. In addition, the sulfur dioxide produced during combustion is an environmental pollutant.

About the product:
PlasmaQuant® PQ 9000 offers:
- Clever bench-top design
- Innovative high-end technology
- Impressive analytical performance
- High sample efficiency
- Benchmark-setting operating comfort
- Premium quality "Made in Germany"

Additional information:
PlasmaQuant® PQ 9000 will be presented in Germany at analytica, the leading international exhibition for laboratory technology, analysis and biotechnology. It will be exhibited from April 1 to 4, 2014, at Analytik Jena's stand, number 310 in hall A1.

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Atomic Absorption / Emission SpectroscopyAtomic absorption spectroscopy (AAS) and atomic emission spectroscopy (AES) — also called optical emission spectroscopy (OES) — are used to detect the elemental constituents in samples. Both techniques involve the atomization of a sample. Atomic absorption spectrometers may use a flame or furnace to create an atomic vapor of the sample before irradiation with spectral light. Optical emission spectrometers may use a flame, inductively coupled plasma (ICP), microwave plasma (MP) or spark arcs to atomize and excite the sample. At higher excitation energies, electrons can be emitted instead of photons, which can be useful for samples that can’t be atomized and for surface analysis. Explore electron spectroscopy equipment such as Auger spectrometers and photoelectron spectrometers for surface elemental analysis of samples. Find the best atomic absorption, photoelectron and optical emission spectrometers in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.analyticaAnalytica is a leading international trade fair for laboratory technology, analysis, and biotechnology, showcasing innovations and solutions in the scientific community. Stay updated with the latest trends and products in the industry. Environmental AnalysisEnvironmental analysis describes a variety of tests that determine the effect of chemicals, processes and particulates such as persistent organic pollutants (POPs) have on the environment.PharmaceuticalsPharmaceuticals are medicinal drugs used in healthcare to diagnose, prevent, cure and treat illnesses. Pharmaceuticals that are excreted after use appear in wastewater and can have detrimental effects on the environment.MetalsMetal analysis is critical in various industries, including environmental monitoring, food safety, and pharmaceuticals. Techniques such as ICP-MS and atomic absorption spectrometry are commonly used to detect trace metals. Explore metal analysis tools in our peer-reviewed product directory; compare products, check reviews, and get pricing directly from manufacturers.
Analytik Jena Expands Product Portfolio with ICP-OES and Launches New Product on the Market