Sato Tetsuo
National Agricultural Research Center for Kyushu Okinawa Region, National Agricultural Research Organization, Nishigoshi-machi, Kikuchi-gun, Kumamoto-ken 861-1192, Japan.
Biosci Biotechnol Biochem. 2002 Dec;66(12):2543-8. doi: 10.1271/bbb.66.2543.
The absorption bands of cis-unsaturation and the carbon chain length of the fatty acid moieties in oil appear in the near infrared (NIR) wavelength region, especially around 1600-1800 nm. Using this region, a new estimation method for fatty acid composition analysis is proposed. Because the differences of the original NIR spectra are miniscule even in this region, the second derivative NIR spectra were examined in order to estimate the fatty acid composition in oil exclusively from the spectral patterns obtained. The parameters for calculating the second derivative NIR spectra were examined to make the spectral difference clearer. In any parameter, the absorption band was shifted to the shorter wavelength region when the unsaturation in fatty acid moieties increased, and it was shifted to the longer wavelength region when the carbon chain length increased. When the parameters were correct, this NIR method can estimate the fatty acid composition roughly, but simply, easily, and sometimes nondestructively.
油中脂肪酸部分的顺式不饱和吸收带和碳链长度出现在近红外(NIR)波长区域,特别是在1600 - 1800 nm左右。利用该区域,提出了一种用于脂肪酸组成分析的新估计方法。由于即使在该区域原始近红外光谱的差异也很小,因此研究了二阶导数近红外光谱,以便仅从获得的光谱模式估计油中的脂肪酸组成。研究了用于计算二阶导数近红外光谱的参数,以使光谱差异更清晰。在任何参数下,当脂肪酸部分的不饱和度增加时,吸收带向较短波长区域移动,而当碳链长度增加时,吸收带向较长波长区域移动。当参数正确时,这种近红外方法可以大致但简单、容易且有时无损地估计脂肪酸组成。