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Key Documents

W236012

Sigma-Aldrich

(+)-γ-Decalactone

greener alternative

natural, ≥97%, FG

Synonyme(s) :

(+)-gamma-Decalone

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About This Item

Numéro CAS:
Numéro FEMA:
2360
Numéro CE :
Conseil de l'Europe Nº :
2230c
Numéro MDL:
Code UNSPSC :
12164502
ID de substance PubChem :
Numéro Flavis :
10.017
Nomenclature NACRES :
NA.21

Qualité

FG
Fragrance grade
Halal
Kosher
natural

Niveau de qualité

Agence

follows IFRA guidelines
meets purity specifications of JECFA

Conformité réglementaire

EU Regulation 1223/2009
EU Regulation 1334/2008 & 178/2002
FDA 21 CFR 117

Pureté

≥97%

Activité optique

[α]24/D +34°, neat

Caractéristiques du produit alternatif plus écologique

Less Hazardous Chemical Syntheses
Use of Renewable Feedstocks
Learn more about the Principles of Green Chemistry.

sustainability

Greener Alternative Product

Indice de réfraction

n20/D 1.449

Point d'ébullition

281 °C

Densité

0.952 g/mL at 25 °C

Application(s)

flavors and fragrances

Documentation

see Safety & Documentation for available documents

Allergène alimentaire

no known allergens

Allergène de parfum

no known allergens

Autre catégorie plus écologique

Propriétés organoleptiques

creamy; fruity; peach; sweet

Chaîne SMILES 

CCCCCC[C@@H]1CCC(=O)O1

InChI

1S/C10H18O2/c1-2-3-4-5-6-9-7-8-10(11)12-9/h9H,2-8H2,1H3/t9-/m1/s1

Clé InChI

IFYYFLINQYPWGJ-SECBINFHSA-N

Description générale

(+)-γ-Decalactone, the main volatile aroma compound found in peaches, can be used as a flavoring agent in the food industry due to its distinct peach odor. It is also found in strawberries and apricots.
We are committed to bringing you Greener Alternative Products, which adhere to one of the four categories of Greener Alternatives . This product is a Biobased products, showing key improvements in Green Chemistry Principles “Less Hazardous Chemical Syntheses” and “Use of Renewable Feedstock”.

Application


  • Decoding the Effect of Running on Flavor Perception Changes during Consumption of Sports Drinks.: Pu et al. investigate how physical activity affects flavor perception, particularly focusing on sports drinks. The study includes (+)-γ-Decalactone as a compound of interest due to its impact on flavor modulation during and after exercise (Pu et al., 2024).

  • Analysis of volatile organic compounds in Korean-bred strawberries: insights for improving fruit flavor.: Jee et al. analyze volatile organic compounds in strawberries, identifying key compounds such as (+)-γ-Decalactone that contribute to fruit flavor. This research provides valuable insights for the enhancement of fruit taste in breeding programs (Jee et al., 2024).

  • (R)-(+)-γ-Decalactone is Conserved in North America as a Pheromone Component of Osmoderma eremicola (Coleoptera: Scarabaeidae) and a Kairomone of Elater abruptus (Coleoptera: Elateridae).: Steffek et al. examine the role of (+)-γ-Decalactone as a pheromone and kairomone in specific beetle species, highlighting its ecological and biochemical significance (Steffek et al., 2024).

Code de la classe de stockage

10 - Combustible liquids

Classe de danger pour l'eau (WGK)

WGK 1

Point d'éclair (°F)

276.8 °F - closed cup

Point d'éclair (°C)

136 °C - closed cup

Équipement de protection individuelle

Eyeshields, Gloves, type ABEK (EN14387) respirator filter


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Retrouvez la documentation relative aux produits que vous avez récemment achetés dans la Bibliothèque de documents.

Consulter la Bibliothèque de documents

Microbial production of flavors for the food industry. A case study on the production of gamma-decalactone, the key compound of peach flavor, by the yeasts Sporidiobolus sp
Dufosse L, et al.
Food Science and Biotechnology, 11(2), 192-202 (2002)
Analysis of strawberry flavour?discrimination of aroma types by quantification of volatile compounds.
Ulrich D, et al.
European Food Research and Technology, 205(3), 218-223 (1997)
Aroma characterization of various apricot varieties using headspace?solid phase microextraction combined with gas chromatography?mass spectrometry and gas chromatography?olfactometry.
Guillot S, et al.
Food Chemistry, 96(1), 147-155 (2006)
Gilles Feron et al.
Canadian journal of microbiology, 53(6), 738-749 (2007-08-02)
The sensitivity of Sporidiobolus ruinenii yeast to the use of reducing agents, reflected in changes in the oxidoreduction potential at pH 7 (Eh7) environment, ricinoleic acid methyl ester catabolism, gamma-decalactone synthesis, cofactor level, beta-oxidation activity, and ultrastructure of the cell

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