Arnar Fells Gunnarsson

CFO @ DTE

About Arnar Fells Gunnarsson

Arnar Fells Gunnarsson is a CFO who has significantly contributed to research on the chemical analysis of molten aluminum using laser-induced breakdown spectroscopy.

Arnar Fells Gunnarsson Title

Arnar Fells Gunnarsson holds the position of Chief Financial Officer (CFO). His responsibilities in this role encompass overseeing financial operations, planning, and strategy.

Arnar Fells Gunnarsson Research Contributions

Arnar Fells Gunnarsson has actively contributed to several significant research papers in the field of laser-induced breakdown spectroscopy and its applications in metallurgical processes. The papers include 'Vapor-Phase Contribution to Laser-Induced Plasma Emission of Magnesium in Liquid Aluminum,' 'Microalloying of Liquid AI–Mg Alloy Studied In-Situ by Laser-Induced Breakdown Spectroscopy,' and 'Continuous Chemical Analysis of Molten Aluminum.' Additional contributions were made in studies like 'Analysis of dissolved titanium concentration and phase transformation in molten Al–Ti alloy using laser-induced breakdown spectroscopy' and 'Instant Monitoring of Aluminum Chemistry in Cells Using a Portable Liquid-metal Analyzer.'

Arnar Fells Gunnarsson Process Control Research

Arnar Fells Gunnarsson has contributed substantially to research focused on process control in metallurgy. His work includes contributions to papers such as 'Automated Chemical Analysis of Liquid Aluminum for Process Control' and 'Accurate real-time elemental (LIBS) analysis of molten Aluminum and aluminum alloys.' These studies emphasize the importance of precise and real-time analysis in improving and optimizing process control in metallurgical operations.

Arnar Fells Gunnarsson Trace Elements Analysis Research

Arnar Fells Gunnarsson participated in research papers that deal with the analysis and quantification of trace elements in metallurgical processes. Key contributions include the studies 'Quantification of trace elements in molten aluminum with randomized impurity concentrations using laser-induced breakdown spectroscopy' and 'Quantitative in-situ analysis of impurity elements in primary aluminum processing using laser-induced breakdown spectroscopy.' His research efforts are focused on enhancing the accuracy and efficiency of impurity detection and analysis in aluminum processing.

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