Determination of the Degree of Unsaturation in Essential Oils

Being widely used, medicinal products based on vegetable oils require strict regulation and evaluation of quality attributes, determination of shelf-life periods, and monitoring of storage conditions. The most common testing method for unsaturated compounds in vegetable oils is the iodine value dete...

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Published inVedomosti Naučnogo centra èkspertizy sredstv medicinskogo primeneniâ (Online) Vol. 13; no. 1; pp. 112 - 120
Main Authors Agafonov, A. M., Remezova, I. P., Kosenko, V. V., Bunyatyan, N. D., Anosovа, L. S., Evteev, V. A.
Format Journal Article
LanguageEnglish
Russian
Published NEICON ISP LLC 25.03.2023
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Abstract Being widely used, medicinal products based on vegetable oils require strict regulation and evaluation of quality attributes, determination of shelf-life periods, and monitoring of storage conditions. The most common testing method for unsaturated compounds in vegetable oils is the iodine value determination, which has a range     of limitations. An alternative method for determining the degree of unsaturation is based on epoxidation. The aim of the study was to evaluate the possibility of determining the degree of unsaturation of terpenoids and essential oils using peroxycarboxylic acids. Materials and methods . The authors performed epoxidation of linalool, myrcene, and lemon oil with peroxydecanoic and peroxyoctanoic acids, followed by iodometric titration of the excess acid. Results . The study demonstrated the possibility of measuring the degree of unsaturation of the selected essential oil and terpenoids using peracid epoxidation.   The authors developed a procedure for determining the iodine value of essential oils and calculated the iodine values of linalool, myrcene, and lemon oil. Epoxidation proceeded as a second-order reaction. The authors obtained the following reaction rate constants: 3.9 L×mol –1 ×min –1 for linalool (298 К), 1.76 L×mol –1 ×min –1 for myrcene converting to monoxide (298 К), 0.044 L×mol –1 ×min –1 for myrcene epoxide converting to diepoxide (298 К), and 3.9 L×mol –1 ×min –1 for lemon oil (297 К). Conclusions . The suggested procedure involving peracid titration for rapid and efficient determination of the degree of unsaturation (iodine value) provides a potential basis for developing a quantification method for total unsaturated bioactive compounds in essential oils.
AbstractList Being widely used, medicinal products based on vegetable oils require strict regulation and evaluation of quality attributes, determination of shelf-life periods, and monitoring of storage conditions. The most common testing method for unsaturated compounds in vegetable oils is the iodine value determination, which has a range     of limitations. An alternative method for determining the degree of unsaturation is based on epoxidation. The aim of the study was to evaluate the possibility of determining the degree of unsaturation of terpenoids and essential oils using peroxycarboxylic acids. Materials and methods . The authors performed epoxidation of linalool, myrcene, and lemon oil with peroxydecanoic and peroxyoctanoic acids, followed by iodometric titration of the excess acid. Results . The study demonstrated the possibility of measuring the degree of unsaturation of the selected essential oil and terpenoids using peracid epoxidation.   The authors developed a procedure for determining the iodine value of essential oils and calculated the iodine values of linalool, myrcene, and lemon oil. Epoxidation proceeded as a second-order reaction. The authors obtained the following reaction rate constants: 3.9 L×mol –1 ×min –1 for linalool (298 К), 1.76 L×mol –1 ×min –1 for myrcene converting to monoxide (298 К), 0.044 L×mol –1 ×min –1 for myrcene epoxide converting to diepoxide (298 К), and 3.9 L×mol –1 ×min –1 for lemon oil (297 К). Conclusions . The suggested procedure involving peracid titration for rapid and efficient determination of the degree of unsaturation (iodine value) provides a potential basis for developing a quantification method for total unsaturated bioactive compounds in essential oils.
Being widely used, medicinal products based on vegetable oils require strict regulation and evaluation of quality attributes, determination of shelf-life periods, and monitoring of storage conditions. The most common testing method for unsaturated compounds in vegetable oils is the iodine value determination, which has a range     of limitations. An alternative method for determining the degree of unsaturation is based on epoxidation.The aim of the study was to evaluate the possibility of determining the degree of unsaturation of terpenoids and essential oils using peroxycarboxylic acids.Materials and methods. The authors performed epoxidation of linalool, myrcene, and lemon oil with peroxydecanoic and peroxyoctanoic acids, followed by iodometric titration of the excess acid.Results. The study demonstrated the possibility of measuring the degree of unsaturation of the selected essential oil and terpenoids using peracid epoxidation.   The authors developed a procedure for determining the iodine value of essential oils and calculated the iodine values of linalool, myrcene, and lemon oil. Epoxidation proceeded as a second-order reaction. The authors obtained the following reaction rate constants: 3.9 L×mol–1×min–1 for linalool (298 К), 1.76 L×mol–1×min–1 for myrcene converting to monoxide (298 К), 0.044 L×mol–1×min–1 for myrcene epoxide converting to diepoxide (298 К), and 3.9 L×mol–1×min–1 for lemon oil (297 К).Conclusions. The suggested procedure involving peracid titration for rapid and efficient determination of the degree of unsaturation (iodine value) provides a potential basis for developing a quantification method for total unsaturated bioactive compounds in essential oils.
Author Bunyatyan, N. D.
Remezova, I. P.
Evteev, V. A.
Agafonov, A. M.
Kosenko, V. V.
Anosovа, L. S.
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Cites_doi 10.1134/S1068162011070168
10.1016/j.ijpharm.2014.12.069
10.1021/ja01620a023
10.15826/analitika.2019.23.4.010
10.1016/j.fjps.2017.10.004
10.1002/jlac.19244350104
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SubjectTerms epoxidation
essential oils
iodine value
lemon oil
linalool
myrcene
peroxy acid
terpenoids
titrimetry
unsaturation test
Title Determination of the Degree of Unsaturation in Essential Oils
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