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Determination of Low Concentration Methanol in Alcohol by an Affordable High Sensitivity Raman Instrument
March 29, 2013

Low concentration natural methanol exists in most alcoholic beverages and usually causes no immediate health threat. Nevertheless, it is possible to have natural occurring methanol in beverages with concentration as high as 18 grams per liter of ethanol; or equivalent to 0.72% methanol in 40% ethanol, in alcohol (1). Current EU regulation limits naturally occurring methanol to below 10 grams per liter of ethanol; or equivalent to 0.4% methanol in 40% ethanol.

Determination of Low Concentration Methanol in Alcohol by an Affordable High Sensitivity Raman Instrument
February 1, 2013

Low concentration natural methanol exists in most alcoholic beverages and usually causes no immediate health threat.

Determination of Low Concentration Methanol in Alcohol by an Affordable High Sensitivity Raman Instrument
December 1, 2012

Determination of Low Concentration Methanol in Alcohol by an Affordable High Sensitivity Raman Instrument

Determination of Low Concentration Methanol in Alcohol by an Affordable High Sensitivity Raman Instrument
February 1, 2012

Low concentration natural methanol exists in most alcoholic beverages and usually causes no immediate health threat. Nevertheless, it is possible to have natural occurring methanol in beverages with concentration as high as 18 g/L of ethanol; or equivalent to 0.72% methanol in 40% ethanol, in alcohol (1). Current EU regulation limits naturally occurring methanol to below 10 g/L of ethanol; or equivalent to 0.4% methanol in 40% ethanol.

Raman Analysis of Low Concentration Ions in Water
September 1, 2009

High sensitivity Raman analyzers could provide solutions for continuous and automated measurements of low concentration ions or molecules in aqueous solutions for applications in industries including biomedical, mining, agrichemical, pharmaceutical, cleaning, and environmental. As an example for similar applications, the quantitative analysis of low concentration sulfate ion in aqueous solution down to as low as 2.5 ppm by conventional (Non-SERS) Raman is demonstrated.

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