Determination of α-guaiene and azulene chemical content in patchouli aromatic oil (<em>Pogostemon cablin</em> Benth.) from Indonesia by Near-infrared spectroscopy
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Title Statement |
Determination of α-guaiene and azulene chemical content in patchouli aromatic oil (<em>Pogostemon cablin</em> Benth.) from Indonesia by Near-infrared spectroscopy |
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Added Entry - Uncontrolled Name |
Cano-Reinoso, D M ; Center for Tropical Horticulture Studies, Department of Mechanical and Biosystem Engineering, IPB University, Bogor, West Java, Indonesia Purwanto, Y A ; Center for Tropical Horticulture Studies, Department of Mechanical and Biosystem Engineering, IPB University, Bogor, West Java, Indonesia Budiastra, I W ; Center for Tropical Horticulture Studies, Department of Mechanical and Biosystem Engineering, IPB University, Bogor, West Java, Indonesia Sutrisno; Center for Tropical Horticulture Studies, Department of Mechanical and Biosystem Engineering, IPB University, Bogor, West Java, Indonesia Kuroki, S ; Graduate School of Agricultural Science, Kobe University, 1-1 Rokkodai, Nada, Kobe 657-8501, Japan Widodo, S ; Center for Tropical Horticulture Studies, Department of Mechanical and Biosystem Engineering, IPB University, Bogor, West Java, Indonesia Kamanga, B M ; Center for Tropical Horticulture Studies, Department of Mechanical and Biosystem Engineering, IPB University, Bogor, West Java, Indonesia Ministry of Research, Technology, and Higher Education of the Republic Indonesia |
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Uncontrolled Index Term |
Postharvest Technology/Practices; Plant Cultivation; Value added products Azulene; FT-NIR; Non-destructive; Patchouli oil; Pogostemon cablin; α-guaiene. |
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Summary, etc. |
<p style="text-align: justify;">This study evaluated the α-guaiene and azulene chemical composition of patchouli aromatic oil from Indonesia by Near-infrared Spectroscopy (NIRS) combined with chemometric treatments. 84 oil samples collected around Indonesia were used, Konawe, Kolaka, Bogor, Garut, Aceh, Jambi, and Masamba. The spectral data were obtained using Fourier Transformed Near-infrared (FT-NIR) spectrometer in 1000 to 2500 nm. Several pretreatments processed the resulted transflectance spectra, and then partial least squares regression (PLSR) was applied. The data obtained from the spectra were evaluated based on the physical and chemical properties of the oil. α-guaiene and azulene chemical content were measured by liquid chromatography-mass spectrometry as a reference method. The best calibration for α-guaiene and azulene was second derivative with normalization mean centre, as data pretreatments. Both models had a high correlation coefficient (r>0.90), a low coefficient of variation (CV<2.98%), and an elevated ratio of standard error of prediction to standard deviation (RPD >3), which proved the applicability of NIRS to quality evaluation of patchouli oil.</p> |
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Publication, Distribution, Etc. |
Indian Journal of Natural Products and Resources (IJNPR) [Formerly Natural Product Radiance (NPR)] 2021-08-02 14:11:01 |
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Electronic Location and Access |
application/pdf http://op.niscair.res.in/index.php/IJNPR/article/view/24657 |
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Data Source Entry |
Indian Journal of Natural Products and Resources (IJNPR) [Formerly Natural Product Radiance (NPR)]; ##issue.vol## 12, ##issue.no## 2 (2021): June 2021 |
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Language Note |
en |
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Nonspecific Relationship Entry |
http://op.niscair.res.in/index.php/IJNPR/article/download/24657/465476991 http://op.niscair.res.in/index.php/IJNPR/article/download/24657/465476992 http://op.niscair.res.in/index.php/IJNPR/article/download/24657/465476993 http://op.niscair.res.in/index.php/IJNPR/article/download/24657/465476994 http://op.niscair.res.in/index.php/IJNPR/article/download/24657/465476995 http://op.niscair.res.in/index.php/IJNPR/article/download/24657/465476996 http://op.niscair.res.in/index.php/IJNPR/article/download/24657/465476997 |
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