Influence of extractions on physicochemical characterization and bioactivity of Piper nigrum oils: Study on the non-isothermal decomposition kinetic

T. Thanh-Tam Huynh,Thanh-Chi Mai,Chi-Hien Dang, T. Thuy-Trang Vo,Dinh-Truong Nguyen,Van-Su Dang, Khang Duy Vu Nguyen,Vinh-Thien Tran,Thanh-Danh Nguyen

ARABIAN JOURNAL OF CHEMISTRY(2020)

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摘要
Black pepper oils have been investigated frequently in the recent years. However, there is a significant variation in physicochemical properties and bioactivity of oils depended on extraction techniques. In this study, the systemic investigation of four various extraction methods was performed to evaluate the physicochemical characterizations, antioxidant and antibacterial activity. The investigation of H-1 NMR, FTIR and UV-Vis spectra confirmed presence of non-volatile components in oils extracted through supercritical CO2 and hexane-soaking extractions which induced their typical thermal properties. The isothermal behaviour of extracted oils related to evaporation was within range of 3.2-7.3% (w/w) at 27 degrees C. The SEM images of the black pepper confirmed different operation manners of mechanism between extractions using the solvents and heating process. The lowest MIC for both essential oils from conventional hidrodistillation and microwave-assisted hidrodistillation against two bacteria including E. coli and B. subtilis were found to be 137 mu g mL(-1). The non-isothermal decomposition kinetics were investigated on the essential oil of microwave-assisted hydrodistillation extraction. The activation energies and pre-exponent factors of nonisothermal decomposition were found to be in range of 36.5-73.7 KJ mol(-1) and 4.98 x 10(3)-1.97 x 10(8) s(-1), respectively, dependent on conversional fractions of the oil. The results revealed that chemical components, physicochemical properties and bioactivity of black pepper essential oils depended on the extraction techniques. (C) 2020 The Author(s). Published by Elsevier B.V. on behalf of King Saud University.
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关键词
Black pepper,Essential oil,Extraction,Antimicrobial activity,Non-isothermal decomposition kinetic
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