
AOX analysis screens total organic halogens in water via activated carbon adsorption, combustion, and microcoulometric detection per EPA 1650/9020B

AOX analysis screens total organic halogens in water via activated carbon adsorption, combustion, and microcoulometric detection per EPA 1650/9020B

Accurate fluorine determination in organic matrices like polymers, fuels, and oils remains one of analytical chemistry's most persistent challenges. In this Dedicated Dialogue, Holger Sievers, PhD, Product Manager of Atomic Absorption Spectrometry at Analytik Jena, explains why conventional techniques fall short and introduces a novel approach that combines pyrohydrolytic combustion with high-resolution continuum source molecular absorption spectrometry. This method delivers faster, more sensitive, and more reliable fluorine measurement across a range of industries.

Accurate fluorine determination in organic matrices like polymers, fuels, and oils remains one of analytical chemistry's most persistent challenges. In this Dedicated Dialogue, Holger Sievers, PhD, Product Manager of Atomic Absorption Spectrometry at Analytik Jena, explains why conventional techniques fall short and introduces a novel approach that combines pyrohydrolytic combustion with high-resolution continuum source molecular absorption spectrometry. This method delivers faster, more sensitive, and more reliable fluorine measurement across a range of industries.

Learn how to determine total fluorine in pyrolysis oil using pyrohydrolytic combustion and detection by MAS, ensuring high sensitivity and sample throughput.

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