Affiliation:
1. School of Perfume and Aroma Technology, Shanghai Institute of Technology, Shanghai, 200235, China
Abstract
Abstract:
Leaf alcohol is a flavor and fragrance compound and has been shown to possess an
intense characteristic grassy-green odor of freshly cut green grass and leaves, which is widely
used as an added flavor in fragrances, food flavors and tobacco flavors to provide a fresh
grassy note. However, the market has been unable to meet this surge in demand, resulting in a
frequent shortage of leaf alcohol. At present, there are two processes used in industrial production:
the process for the hydrogenation of 3-hexyn-1-ol and the process for the ring opening
reaction of 6-methyl-3,6-dihydro-2H-pyran. The reason for the shortage is that there are certain
difficulties and shortcomings in the current methods of synthesizing leaf alcohol. The
disadvantages of the process for the hydrogenation of 3-hexyn-1-ol are the production
security and dependability, the prime cost of catalyst and equipment. The disadvantages of
the process for the ring opening reaction of 6-methyl-3,6-dihydro-2H-pyran are the product quality, production
dependability, and the prime cost of the equipment. To solve this contradiction between supply and demand,
many research groups are investigating chemical synthetic methods that could be applied in industrial production
easily and economically. Since the discovery of leaf alcohol, much has happened in the synthesis of leaf alcohol.
Many developments became market realities, so after all these years, it seemed appropriate to sum up the current
trends in the synthesis of leaf alcohol. In this review, we bring a collection of various synthetic approaches leading
to leaf alcohol.
Funder
Panjin Junyang Technology Co., Ltd., China
Publisher
Bentham Science Publishers Ltd.
Reference120 articles.
1. Genovese A.; Ugliano M.; Pessina R.; Gambuti A.; Piombino P.; Moio L.; Comparison of the aroma compounds in apricot (Prunus armeniaca, L. cv. Pellecchiella) and apple (Malus pumila. L. cv. Annurca) raw distillates. Ital J Food Sci 2004,16(2),185-196
2. Pino J.A.; Marbot R.; Vázquez C.; Characterization of volatiles in strawberry guava (Psidium cattleianum Sabine) fruit. J Agric Food Chem 2001,49(12),5883-5887
3. Jordán M.J.; Margaría C.A.; Shaw P.E.; Goodner K.L.; Volatile components and aroma active compounds in aqueous essence and fresh pink guava fruit puree (Psidium guajava L.) by GC-MS and multidimensional GC/GC-O. J Agric Food Chem 2003,51(5),1421-1426
4. Jirovetz L.; Smith D.; Buchbauer G.; Aroma compound analysis of Eruca sativa (Brassicaceae) SPME headspace leaf samples using GC, GC-MS, and olfactometry. J Agric Food Chem 2002,50(16),4643-4646
5. Klesk K.; Qian M.; Martin R.R.; Aroma extract dilution analysis of cv. Meeker (Rubus idaeus L.) red raspberries from Oregon and Washington. J Agric Food Chem 2004,52(16),5155-5161
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