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Modulation of aroma release of instant coffees through microparticles of roasted coffee oil
- Source :
- Food chemistry. 341(Pt 1)
- Publication Year :
- 2020
-
Abstract
- We report, on the successful addition of spray-dried microparticles containing roasted coffee oil, to soluble coffee (SC) and instant cappuccino (IC), to increase and tailor aroma release. Using PTR-ToF-MS (Proton Transfer Reaction Time-of-Flight Mass Spectrometry), five parameters were defined from time series intensity for each VOC, to compare the performance of different products: total area under the curve (AUC), area under the curve of burst (AUC-burst), maximum signal intensity, final intensity (5 min), and ratio AUC-burst/AUC. Microparticles with higher loads of roasted coffee oil were effective in increasing aroma intensity in SC while, for IC, all loads of microparticles improved aroma intensity. Volatility drove the VOC release in SC, and volatility and polarity for IC. Most compounds reached maximum headspace concentration in < 16 s upon start of reconstitution. These results open new perspectives for the development of instant coffee products and demonstrate their unique aroma release characteristics.
- Subjects :
- 01 natural sciences
Coffee
Mass Spectrometry
Analytical Chemistry
Instant cappuccino
Ptr tof ms
0404 agricultural biotechnology
Plant Oils
Volatile organic compound
Food science
Microencapsulation
Aroma
PTR-ToF-MS
chemistry.chemical_classification
Volatile Organic Compounds
biology
010401 analytical chemistry
Spray drying
food and beverages
Soluble coffee
04 agricultural and veterinary sciences
General Medicine
biology.organism_classification
040401 food science
Plant oil
0104 chemical sciences
Odorant
chemistry
663: Getränketechnologie
Odorants
Burst-effect
Proton
Signal intensity
Protons
Volatilization
Volatility (chemistry)
Intensity (heat transfer)
Food Science
Instant
Subjects
Details
- ISSN :
- 18737072
- Volume :
- 341
- Issue :
- Pt 1
- Database :
- OpenAIRE
- Journal :
- Food chemistry
- Accession number :
- edsair.doi.dedup.....5cede20169b3d1b00ad5e01d0c99d53c