Gas analyzer G4 ICARUS
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Gas analyzer - G4 ICARUS - Bruker Handheld XRF Spectrometry - oxygen / solids / sulfur
Gas analyzer - G4 ICARUS - Bruker Handheld XRF Spectrometry - oxygen / solids / sulfur
Gas analyzer - G4 ICARUS - Bruker Handheld XRF Spectrometry - oxygen / solids / sulfur - image - 2
Gas analyzer - G4 ICARUS - Bruker Handheld XRF Spectrometry - oxygen / solids / sulfur - image - 3
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Characteristics

Measured entity
gas, oxygen, solids, sulfur, cement, dust, iron, carbon
Application domain
laboratory
Measured value
form
Mode of use
automatic
Other characteristics
simultaneous

Description

The combustion analyzer G4 ICARUS Series 2 with high frequency (HF) induction furnace and HighSense™ detection sets new standards in for a rapid and precise carbon (C) and sulfur (S) analysis in inorganic solids. Due to their impact on the material properties, the need for fast and reliable CS analysis is not limited to iron and steel but also applies to ferrous and non-ferrous metals, their alloys, ceramics, ores, cement, limestone and numerous other inorganic solids. ZoneProtect™: The patented combustion zone design utilizes a gas extraction nozzle, ensuring an optimal supply of oxygen to the sample, while liberated gases and dust particles are instantly purged through the nozzle. The unique, fully automatic cleaning system with brush-free dust removal ensures simultaneous cleaning of the inline high efficiency dust filter and the gas extraction nozzle while transferring accumulated dust into the crucible for disposal. Why do I need combustion analysis? When time to result matters, while accuracy must be granted in the first shot, with minimum sample preparation, combustion analysis is irreplaceable for the analysis of light elements. These are difficult or impossible to measure by direct spectroscopic methods, especially when embedded in difficult matrices. E.g. the G4 ICARUS Series 2 delivers accurate results even in grey cast iron, where carbon is unevenly distributed in form of graphite clusters, because it applies a volumetric method - analyzing the entire sample.

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