Food Analysis

Protecting tomorrow: Food contaminant analysis compendium

The complexity of today’s food supply chains has greatly increased the scope of analysis and scrutiny required to ensure the safety and authenticity of crops and food end products.

New Analytical Solutions for Food and Beverage Safety Testing

Separation Science, in collaboration with Perkin Elmer, bring you the Analytical Solutions for Food and Beverage Safety Testing eBook, a newly released collection of applications related to food and beverage analysis that will help testing...

Simplified LC-MS/MS Method for Glyphosate, AMPA, and Glufosinate in Oat-Based Cereals

This article from Issue 12 of the Analytix Reporter, produced by Merck, introduces a simplified LC-MS/MS method with interference removal by SPE for the determination of glyphosate, (aminomethyl) phosphonic acid (AMPA), and glufosinate in cereals...

New Furocoumarin and Other Phytochemical Standards

This article from Issue 12 of the Analytix Reporter, produced by Merck, introduces the most recent product additions to the company's comprehensive phytochemical standards product range that includes a number of standards of furocoumarins and other...

Multiclass Pesticide Analysis of Soy Milk Using a Matrix-Compatible SPME Fiber

In this article from Issue 11 of the Analytix Reporter, produced by Merck, a matrix compatible solid-phase microextraction (SPME) fiber or cover coated (OC) SPME fiber, was used to determine pesticides in soy milk via direct immersion SPME/GC-MS.

Quantification of Methylglyoxal in Manuka Honey ― A Simple HPTLC Based Approach

In this article from Issue 11 of the Analytix Reporter, produced by Merck, the quantification of Methylglyoxal (MGO) using high-performance thin-layer chromatography (HPTLC) with subsequent substance confirmation by MS measurement is presented.

Effective Detection of Food Allergens

This article from Issue 11 of the Analytix Reporter, produced by Merck, introduces a new comprehensive range of purified food allergen protein standards manufactured by INDOOR® Biotechnologies.

Fatty Acid Esters in Infant Formula - Determining 2-MCPD and 3-MCPD

Are you looking for a total solution for determining the fatty acid esters of 2-MCPD and 3-MCPD in infant formula? If so, this on-demand webinar delivers a reliable analytical method using an Agilent 8890 GC System with an Agilent 5977B GC/MSD.

Improved carbohydrate analysis of agave syrup using HPAE-PAD

This application note demonstrates an improved method showing how Norma Oficial Mexicana (NOM) for agave syrup carbohydrate analysis is executed with a Thermo Scientific Dionex CarboPac PA1-1 mm column using HPAE-PAD in EGC mode.

Easy and sensitive method for sorbitol determination in food products

This application note demonstrates how Thermo Scientific Dionex CarboPac PA300-4µm column allows simplified, high-resolution sorbitol separation and quantification in complex samples.

Determination of trans-galactooligosaccharides in foods using HPAE-PAD

This application note demonstrates that AOAC Method 2001.02 for TGOS analysis could be successfully executed with a Thermo Scientific Dionex CarboPac PA1-1mm column using HPAE-PAD in Dual EGC Mode.

Carbohydrate analysis of agave syrup using HPAE-PAD

This application note demonstrates how Norma Oficial Mexicana (NOM) for agave syrup carbohydrate analysis is executed with a Thermo Scientific Dionex CarboPac PA1-1 mm column using HPAE-PAD in EGC mode.

Quantification of TCA to Detect Cork Taint Fault in Wine

Find out how to detect and quantify 2,4,6-Trichloroanisole (TCA) at levels well below its sensory threshold using HS-SPME for sample preparation and analysis performed with LECO’s Pegasus BT GC-TOFMS system.

Food metabolomics for the evaluation of Japanese rice wines using LC-MS/MS

In this study, various types of malted rice sake, made from the same manufacturer are analysed for a total of 97 hydrophilic metabolites (e.g. amino acids and organic acids).

Metabolomic profiling of beer using a triple quadrupole GCMS

In this article, metabolomic profiles of beer were studied and determined using a triple quadrupole GCMS (GCMS-TQ8040) enabling characteristic compounds (e.g. saccharides) to be identified for some types and brands of beer.

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