茶树有壳和有核种子的一些工程性质。

Ebubekir Altuntas, Merve Yildiz
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引用次数: 3

摘要

背景:茶树是茶叶的来源,是现在世界各地种植的经济作物。茶籽油在中国和其他亚洲国家用于烹饪已有一千多年的历史。茶是世界上仅次于水的最广泛消费的饮料。它主要产自亚洲和中非,并出口到世界各地。本研究测定了去壳和果仁茶种子的一些工程性质(尺寸、球形度、体积、体积和真密度)、摩擦系数、颜色特征和破裂力力学行为。材料与方法:以茶叶去壳籽和果仁籽为研究对象。本研究中使用的去壳茶籽来自土耳其里泽市东黑海茶叶合作机构。去壳茶籽和果仁茶籽有大小之分。结果:去壳茶叶种子几何平均直径15.8 mm,种子质量10.7 mm(大粒);1.47 g, 0.49 g(小尺寸);果仁种子几何平均直径和种子质量为11.8 mm,大粒为8 mm;0.97 g,小粒0.31 g。有壳和有核茶叶样品的球度、表面积和体积值在较大尺寸下高于较小尺寸。大粒茶籽的色度值(Chroma)为56.04 ~ 68.34,大粒茶籽的色度值(Chroma)为59.31 ~ 64.22。果仁茶籽在X轴上的破裂力值大于去壳茶籽;而对于大尺寸的去壳茶籽,沿X轴的破裂力值大于Y轴。大、小尺寸茶叶籽的去壳和果仁的静摩擦系数,橡胶摩擦面高于其他摩擦面。结论:茶树去壳和果仁种子的几何平均直径、球形度、体积、体积和真密度、摩擦系数、L*、a*、b*颜色特征和破裂力等工程特性可作为采收后处理设备的设计依据。
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SOME ENGINEERING PROPERTIES OF SHELLED AND KERNEL TEA (Camellia sinensis) SEEDS.

Background: Camellia sinensis is the source of tea leaves and it is an economic crop now grown around the World. Tea seed oil has been used for cooking in China and other Asian countries for more than a thousand years. Tea is the most widely consumed beverages after water in the world. It is mainly produced in Asia, central Africa, and exported throughout the World. Some engineering properties (size dimensions, sphericity, volume, bulk and true densities, friction coefficient, colour characteristics and mechanical behaviour as rupture force of shelled and kernel tea (Camellia sinensis) seeds were determined in this study.

Materials and methods: This research was carried out for shelled and kernel tea seeds. The shelled tea seeds used in this study were obtained from East-Black Sea Tea Cooperative Institution in Rize city of Turkey. Shelled and kernel tea seeds were characterized as large and small sizes.

Results: The average geometric mean diameter and seed mass of the shelled tea seeds were 15.8 mm, 10.7 mm (large size); 1.47 g, 0.49 g (small size); while the average geometric mean diameter and seed mass of the kernel tea seeds were 11.8 mm, 8 mm for large size; 0.97 g, 0.31 g for small size, respectively. The sphericity, surface area and volume values were found to be higher in a larger size than small size for the shelled and kernel tea samples. The shelled tea seed's colour intensity (Chroma) were found between 59.31 and 64.22 for large size, while the kernel tea seed's chroma values were found between 56.04 68.34 for large size, respectively. The rupture force values of kernel tea seeds were higher than shelled tea seeds for the large size along X axis; whereas, the rupture force values of along X axis were higher than Y axis for large size of shelled tea seeds. The static coefficients of friction of shelled and kernel tea seeds for the large and small sizes higher values for rubber than the other friction surfaces.

Conclusion: Some engineering properties, such as geometric mean diameter, sphericity, volume, bulk and true densities, the coefficient of friction, L*, a*, b* colour characteristics and rupture force of shelled and kernel tea (Camellia sinensis) seeds will serve to design the equipment used in postharvest treatments.

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