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Determination of Physical, Acoustical, Mechanical, and Chemical Properties of Fresh Young Coconut Fruit for Maturity Separation

机译:新鲜椰子幼果的物理,声学,机械和化学性质测定,用于成熟度分离

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摘要

Young coconut is a popular tropical fruit featuring soft white aromatic flesh and sweet white or transparent juice. As most coconut pickers are relatively unskilled, the harvested crop tends to be distinguished by the collection of fruit of varying levels of maturity. This research has sought to improve the accuracy of grading-packaging systems by developing correlations between maturity levels and the physical, acoustical, mechanical, and chemical properties of the fruit. Results show that maturity significantly affects the specific gravity, shell rupture force, shell secant modulus, flesh penetrating force, flesh firmness, total soluble solids, titratable acidity, flesh thickness (FT), and natural frequency of young coconut at p<0.05. The FT expressed the highest linear correlation with maturity among the properties observed. Fruit orientation, sound impact point, and maturity significantly affected the natural frequency of young coconut at p<0.05. Impacting the ridge of a young coconut gave significantly different natural frequency with maturity regardless of the impact position. The optimum impact point was observed to be midway between the fruit equator and the stem on the ridge. Applying the defined physical and chemical properties to the discriminant model, the maturity of young coconut could be classified with an accuracy of 94.0 %. Analysis employing partial least squares regression predicted the relationship between the maturity index, represented by the FT and the physical, sound, mechanical, and chemical properties, with a correlation coefficient (R) value of 0.82 and a root mean squared error of prediction value of 1.03.
机译:年轻的椰子是一种受欢迎的热带水果,具有柔软的白色芳香果肉和甜美的白色或透明汁液。由于大多数椰子采摘者的技术水平相对较低,因此收成的农作物往往以成熟程度不同的水果为特色。这项研究试图通过发展成熟度与水果的物理,声学,机械和化学特性之间的相关性来提高分级包装系统的准确性。结果表明,成熟度显着影响比重,壳破裂力,壳割线模量,果肉穿透力,果肉硬度,总可溶性固形物,可滴定酸度,果肉厚度(FT)和幼果的自然频率(p <0.05)。在观察到的特性中,FT与成熟度之间表现出最高的线性相关性。果实取向,声音影响点和成熟度显着影响幼椰子的自然频率,p <0.05。无论撞击位置如何,撞击年轻椰子的山脊都会产生明显不同的自然频率。观察到最佳撞击点在水果赤道和山脊茎之间。将定义的物理和化学性质应用于判别模型,可以对幼椰子的成熟度进行分类,准确度为94.0%。使用偏最小二乘回归进行的分析预测了以FT表示的成熟指数与物理,声音,机械和化学性质之间的关系,相关系数(R)值为0.82,预测值的均方根误差为1.03。

著录项

  • 来源
    《Journal of testing and evaluation》 |2010年第1期|119-126|共8页
  • 作者单位

    Dept. of Agricultural Engineering, Faculty of Engineering at Kamphaeng-saen, Kasetsart Univ., Kamphaengsaen, Nakohnpathom, Thailand 73140;

    Dept. of Agricultural Engineering, Faculty of Engineering at Kamphaeng-saen, Kasetsart Univ., Kamphaengsaen, Nakohnpathom, Thailand 73140;

    Industrial Technology and Gemological Science, Rambhai Barni Rajabhat Univ., 41 Moo 5, T. Tha Chag Muang Chanthaburi 22000;

    School of Packaging, Michigan State Univ., East Lansing, MI;

    Industrial Technology, Cal Poly State Univ., San Luis Obispo, CA 93407;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    young coconut fruit; maturity; physical; acoustical; mechanical; chemical;

    机译:椰子幼果到期;物理;声学的机械;化学的;
  • 入库时间 2022-08-17 13:36:17

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