Assessment of Physical and Thermal Properties of Velvet Bean (Mucuna pruriens) as Potentials for Development of Processing Machines

J. Adeyanju, A. O. Abioye, A. Adekunle, A. Ajala, A. Oloyede, Esther T. Afolayan
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Abstract

The engineering properties of food materials have helped design, develop, and select suitable equipment for preservation, processing, packaging, and storage of food material, including velvet bean, an underutilised legume. Therefore, this research work is aimed at assessing the influence of moisture variation on some engineering properties of velvet beans. The velvet bean seed used was conditioned to moisture content ranging between 8.12 and 28.21 % to determine some selected physical properties. The thermal properties were determined using a KD2-Pro thermal analyser. The physical properties results indicated that the arithmetic mean, geometric mean, volume, and surface area increased with varying moisture content while there was a decrease in the sphericity and aspect ratio. Thermal conductivity, thermal diffusivity, and specific heat capacity ranged from 0.18 to 0.65 W/mK, 1.2×10-7 to 3.1×10-7 m2/s and 1.57 to 2.16 kJ/kgK, respectively. The physical and thermal properties of the seeds were measured and their respective high correlation coefficients indicate that they can be used to simulate these parameters within the moisture domain investigated. The physical and thermal properties of velvet bean differ significantly with moisture contents. The information obtained on some engineering properties of velvet bean seeds could help design processing machinery and optimise milling operations.
天鹅绒豆(Mucuna pruriens)的物理和热特性评价及其在加工机械开发中的潜力
食品材料的工程特性有助于设计、开发和选择合适的设备来保存、加工、包装和储存食品材料,包括天鹅绒豆,一种未充分利用的豆类。因此,本研究旨在评估水分变化对丝绒豆某些工程性能的影响。采用8.12% ~ 28.21%的含水率对丝绒豆种子进行条件调节,以确定所选的一些物理性能。热性能采用KD2-Pro热分析仪测定。物理性质结果表明,随着含水量的变化,算术平均值、几何平均值、体积和比表面积增大,而球度和长径比减小。导热系数、热扩散系数和比热容分别为0.18 ~ 0.65 W/mK、1.2×10-7 ~ 3.1×10-7 m2/s和1.57 ~ 2.16 kJ/kgK。测量了种子的物理和热特性,它们各自的高相关系数表明它们可以用来模拟所研究的水分域内的这些参数。蚕豆的物理和热性能随水分含量的不同而有显著差异。获得的丝绒豆种子的一些工程特性信息可以帮助设计加工机械和优化碾磨操作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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