Saha Uttam, Jackson Daniel
Agricultural and Environmental Services Laboratories, The University of Georgia Cooperative Extension, Athens, GA, USA.
J Sci Food Agric. 2018 Mar;98(5):1821-1831. doi: 10.1002/jsfa.8658. Epub 2017 Oct 12.
Olive is a new, expanding crop in Georgia. Its oil content steadily increases with maturity, but eventually plateaus at the maximum when the olives should be promptly harvested, avoiding overripening and quality degradation. This requires frequent testing. However, olive quality analysis by wet chemistry is laborious, slow and costly, whereas near-infrared reflectance spectroscopy (NIRS), being precise, accurate, rapid and cheap, could be suitable. We developed and validated NIRS calibration models for moisture, fresh-matter-oil (oil-FMO), dry-matter-oil (oil-DMO) and major fatty acid composition analyses.
Of the12 models developed, seven constituents - moisture, oil-FMO, oil-DMO, and palmitic, palmitoleic, oleic and linoleic acids (representing 88-97% of the total fatty acids) had low standard errors and high coefficients of determination (R = 0.81-0.98; 1 - VR = 0.74-0.86) for both calibration and cross-validation. For these seven constituents, predictions of an independent validation set yielded excellent agreement between the NIRS predicted values and the reference values with low standard error of prediction (SEP), low bias, high coefficient of determination (r = 0.80-0.93) and high ratios of performance to deviation (RPD = SD/SEP; 2.21-3.85).
Precise, accurate and rapid analysis of fresh olives for moisture, oil and major fatty acid composition can be done at a low cost using NIRS, meeting the analytical needs of the industry. © 2017 Society of Chemical Industry.
橄榄在格鲁吉亚是一种新兴的、不断扩张的作物。其含油量随着成熟度稳步增加,但最终会在达到最大值时趋于平稳,此时应及时采收橄榄,避免过度成熟和品质下降。这就需要频繁进行检测。然而,通过湿化学方法进行橄榄品质分析既费力、耗时又成本高昂,而近红外反射光谱法(NIRS)精确、准确、快速且成本低廉,可能适用。我们开发并验证了用于水分、鲜物质油(油 - FMO)、干物质油(油 - DMO)和主要脂肪酸组成分析的NIRS校准模型。
在所开发的12个模型中,7种成分——水分、油 - FMO、油 - DMO以及棕榈酸、棕榈油酸、油酸和亚油酸(占总脂肪酸的88 - 97%)在校准和交叉验证中均具有较低的标准误差和较高的决定系数(R = 0.81 - 0.98;1 - VR = 0.74 - 0.86)。对于这7种成分,独立验证集的预测结果显示,NIRS预测值与参考值之间具有极佳的一致性,预测标准误差(SEP)较低、偏差较小、决定系数较高(r = 0.80 - 0.93)且性能与偏差比(RPD = SD/SEP;2.21 - 3.85)较高。
使用NIRS可以低成本对新鲜橄榄的水分、油和主要脂肪酸组成进行精确、准确和快速的分析,满足该行业的分析需求。© 2017化学工业协会。