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Alfa Chemistry offers global support for the food industry, helping brands, retailers, manufacturers, and suppliers provide safer products to the consumer. In addition, we can provide food testing services for consumers, eliminating consumer concerns about food safety.
In the world of food, safety is paramount and working with an organization that has a world-class reputation for delivering quality and value is vital to your success. Alfa Chemistry has been a leading provider of analytical testing and research services in the global food industry for decades. Our scientists have years of experiences in providing profound the understanding of food products and ingredients. We can help you implement comprehensive food safety and quality strategies, and achieve compliance with local, national and international regulations. Whether you are looking for food safety/chemistry analysis or FDA-approved nutrition labels, we are here to help you. Our staff of specialists can handle your products under FDA, cGMP's, USDA and Best Industry Practices. It is no exaggeration to say, with substantial experiences across all food categories, Alfa Chemistry will be your one-stop shop for all your food testing and research need services.
The foods can be analyzed by Alfa Chemistry include:
Spectral analysis instrument is a commonly used food testing instrument, which can be used to detect nutrients, pesticide residues, metal elements, etc. in food. Common spectral analysis instruments include spectrophotometers, infrared spectrometers, fluorometers, etc.
Biochemical analysis instrument
Biochemical analysis instrument is mainly used to detect the microbial quantity, toxins, pesticide residues, etc. in food. Common biochemical analysis instruments include enzyme analyzers, microbiological detectors, gas chromatographs, liquid chromatographs, etc.
Microbial detection instrument
Microbial detection instrument is mainly used to detect bacteria, molds, yeasts, and other microorganisms in food. Common microbial detection instruments include incubators, microscopes, rapid detection instruments, etc.
Electronic analysis instrument
Electronic analysis instrument is mainly used to detect the physical properties and chemical composition of food, such as moisture, fat, protein, etc. Common electronic analysis instruments include balances, conductivity meters, refractometers, etc.
Other instruments
In addition to the instruments mentioned above, there are also pneumatic instruments, colorimetric comparison methods, and other food testing instruments.
Industry articles
Determination of Sugar Content in Food Matrices
Della Pelle, F., Scroccarello, A., Scarano, S., & Compagnone, D. (2019). Analytica Chimica Acta, 1051, 129-137.
Assessing the sugar content in foods is an important issue in food quality control, both during processing and in the final product. Sugar content is a key parameter in defining the sweetness and caloric intake of foods, and it also determines the category of raw materials in many products. Moreover, the production of many foods is sugar-driven (e.g., fermentation, ethanol production, sugar hydrolysis), and the amount of sugar becomes a critical factor in regulating and monitoring the process.
A simple colorimetric method based on the formation of silver nanoparticles (AgNPs) for the quantification of sugars (monosaccharides, polyols, and disaccharides) has been proposed. Sugars are able to form AgNPs, reducing Ag+ and stabilizing the suspension. Since the driving force is not only chemical reduction, the optimized method can measure both "reducing" and "non-reducing" sugars with similar reactivity. Detection is performed using the local surface plasmon resonance (LSPR) absorption band centered around ≈430 nm.
Advanced Spectroscopic Techniques in Food Analysis
Kharbach, Mourad, et al. Foods 12.14 (2023): 2753.
The use of advanced spectroscopic techniques in food analysis is crucial for several reasons. First, techniques such as NIR, Raman, FTIR, and UV-Vis provide non-destructive and non-invasive methods for analyzing food samples, making them an ideal choice for large-scale analysis in the food industry without affecting the quality or safety of the sample. Second, they provide detailed information about the chemical composition and structure of foods, which can be used for classification and identification of different food types, detection of contaminants, and monitoring of food quality changes. Finally, the implementation of advanced chemometric tools can effectively analyze the complex spectral data for food quality assessment.
Spectroscopic Techniques in Food Analysis:
X-ray fluorescence-based methods: Energy-dispersive X-ray fluorescence (EDXRF) is a common technique used to determine the mineral content in food samples.
Hyperspectral and multispectral imaging: Hyperspectral and multispectral imaging combined with chemometric tools can be used for food adulteration detection, food component evaluation, food quality monitoring, and food classification.
Infrared spectroscopy: Infrared spectroscopy includes near-infrared (NIR) and mid-infrared (MIR) spectroscopy. Infrared spectroscopy and chemometrics can be used for quantitative and qualitative analysis of food components (such as carbohydrates, proteins, fats, and moisture content) and for the determination of functional groups, carbon, and nitrogen.
Raman spectroscopy: Raman spectroscopy is a vibrational spectroscopic technique based on the inelastic scattering of monochromatic light.
Nuclear magnetic resonance analysis: Nuclear magnetic resonance (NMR) is a spectroscopic technique used to determine the molecular structure and physical properties of matter, and it can be effectively used to ensure the quality of different food samples.
Ultraviolet-visible: UV-Vis spectroscopy is considered one of the most sensitive techniques for determining low-concentration components in food samples.
Fluorescence spectroscopy: Fluorescence spectroscopy has been used for the analysis of various elements in foods.
Mass Spectrometry Ensures Food Safety
Domínguez, I., Frenich, A. G., & Romero-González, R. (2020). Analytical Methods, 12(9), 1148-1162.
Mass spectrometry (MS) is extensively utilized in the realm of food safety and has been fully integrated into everyday analysis and research facilities. In fact, MS is considered an essential tool for monitoring food contaminants. Continuous improvements in instrumentation have led to breakthroughs in analytical chemistry, which in turn have led to breakthroughs in food science. The progress of MS has enabled the development of reliable, reproducible, and powerful new methods, allowing for rapid and accurate screening analyses.
Mass Spectrometry Techniques Used in Food Safety Monitoring
The mass spectrometry techniques commonly used in food safety monitoring include matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS), ion mobility spectrometry-mass spectrometry (IMS-MS), atmospheric pressure ionization mass spectrometry (AMS), gas chromatography-mass spectrometry (GC-MS), liquid chromatography-mass spectrometry (LC-MS), capillary electrophoresis-mass spectrometry (CE-MS), supercritical fluid chromatography-mass spectrometry (SFC-MS), and high-resolution mass spectrometry (HRMS).
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