Enzymatic Synthesis of Formate Ester through Immobilized Lipase and Its Reuse

Author:

Baek Yesol,Lee Jonghwa,Son Jemin,Lee Taek,Sobhan Abdus,Lee Jinyoung,Koo Sang-Mo,Shin Weon HoORCID,Oh Jong-Min,Park ChulhwanORCID

Abstract

Octyl formate is an important substance used in the perfume industry in products such as cosmetics, perfumes, and flavoring. Octyl formate is mostly produced by chemical catalysts. However, using enzymes as catalysts has gathered increasing interest due to their environment-friendly proprieties. In the present study, we aimed to identify the optimal conditions for the synthesis of octyl formate through immobilized enzyme-mediated esterification. We investigated the effects of enzymatic reaction parameters including the type of immobilized enzyme, enzyme concentration, molar ratio of reactants, reaction temperature, and type of solvent using the optimization method of one factor at a time (OFAT). The maximum conversion achieved was 96.51% with Novozym 435 (15 g/L), a 1:7 formic acid to octanol ratio, a reaction temperature of 40 °C, and with 1,2-dichloroethane as solvent. Moreover, we demonstrated that the Novozym 435 can be reused under the optimal conditions without affecting the octyl formate yield, which could help reduce the economic burden associated with enzymatic synthesis.

Funder

National Research Foundation of Korea

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

Reference36 articles.

1. Biotransformations in the flavour industry;Berger,1999

2. Evaluations of the Joint FAO/WHO Expert Committee on Food Additives (JECFA)https://apps.who.int/food-additives-contaminants-jecfa-database/chemical.aspx?chemID=2565

3. Food Flavors Market to Reach USD 19.72 Billion by 2026|Reports and Datahttps://www.reportsanddata.com/report-detail/food-flavors-market#utm_source=globenewswire&utm_medium=referral&utm_campaign=shuv10oct2019&utm_content=DP

4. Novel and Efficient Synthesis of Phenethyl Formate via Enzymatic Esterification of Formic Acid

5. Enzymatic and microbial generation of flavors;Gatfield;Perfum. Flavor.,1995

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