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Near Infrared Transmittance Method for Nondestructive Determination of Soluble Solids Content in Growing Tomato Fruits

机译:近红外透射法无损测定番茄果实中可溶性固形物含量

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摘要

In soilless culture, control of nutrient solution is very important for production of the high quality tomato fruits. The control will be efficient by taking the information of internal properties of growing fruits into account. Therefore, nondestructive measurement method for these properties is highly required. Nondestructive near infrared (NIR) methods have already been used effectively in,many crops such as mango, apple, peach, however, no studies have been reported on growing tomato fruit. In addition, tomato fruit has a great variation in internal structure that consists of flesh and pulp. It causes ununiformity in texture and chemical compositions within a fruit and hence significantly affects NIR spectra. Therefore, specially assembled NIR instrument is required for accurate nondestructive determination of constituents in the fruit. Three hatogen lamps as a light source of the instrument illuminated almost the whole fruit surface from the upper side. Then the spectrum of transmitted light through the bottom of the sample was measured by spectrometer. The performance of this instrument was investigated by developing calibration model for determination of the soluble solids content (SSC) in the whole fruit from the spectrum. This method successfully determined the SSC of tomato fruits with correlation coefficient between predicted and actual values (r) of 0.91, standard error of performance (SEP) of 0.73%, and bias of 0.17%.
机译:在无土栽培中,控制营养液对于生产高质量番茄果实非常重要。通过考虑种植水果的内部特性信息,控制将非常有效。因此,非常需要用于这些性质的无损测量方法。无损近红外(NIR)方法已经在许多作物(例如芒果,苹果,桃子)中有效使用,但是,尚未有关于番茄果实生长的研究报道。此外,番茄果实的内部结构由果肉和果肉组成,变化很大。它会导致水果内质地和化学成分的不均匀,从而显着影响近红外光谱。因此,需要专门组装的NIR仪器才能准确无损地确定水果中的成分。三个Hatogen灯作为仪器的光源,几乎从上侧照亮了整个水果表面。然后,通过光谱仪测量穿过样品底部的透射光的光谱。通过开发用于从光谱中确定整个水果中可溶性固形物含量(SSC)的校准模型,研究了该仪器的性能。该方法成功确定了番茄果实的SSC,预测值和实际值(r)之间的相关系数为0.91,性能的标准误(SEP)为0.73%,偏差为0.17%。

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