Varietal Differences in the Physical and Engineering Attributes of Underutilized Pigmented and Non-pigmented Paddy and Rice Landraces

Kuppathil Unnikrishnan Anjali, Annamalai Rajalechumi Kamatchi, Sundaramoorthy Haripriya, Arun Kumar, Chagam Koteswara Reddy
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Abstract

Traditional rice landraces cannot be processed using standard machinery or unit operations. Traditional rice, on the other hand, is becoming more popular as its purported health benefits spread. Cracked rice grains, broken rice, and subpar milled rice kernels result from using non-standard equipment on landraces. So, studying the physical characteristics of rice and paddy is crucial for modifying milling equipment to lessen post-harvest losses. To preserve and familiarize the underutilized landraces, a comparative study of three pigmented and three non-pigmented landraces were assessed for their physical, gravimetric, and engineering traits using standard analytical protocols. The analysis demonstrated substantial variation among the evaluated properties. The majority of the traditional landraces were classified as long-bold and long-slender grains. The landraces exhibited variations in the equivalent diameter ranging from 0.29 to 0.46 mm and 2.54 to 3.38 mm for rice and paddy samples respectively. The major differences in other attributes like sphericity, aspect ratio, and surface area were also observed. Gravimetric properties of paddy and rice samples of Madumuzhungi (MMP) showed significantly lower values in contrast to other landraces. The highest porosity (51.43%), moisture content (14.97%) and water activity (0.88) was exhibited by the Madumuzhungi paddy sample. The non-pigmented rice samples displayed lower values for thousand kernal weight (TKW), grain volume and surface area. Almost all the variants except White mappillai samba paddy were under 30 g for TKW, indicating the differences between pigmented and non-pigmented landraces. Moisture content significantly affected the gravimetric and engineering properties of the landraces. The correlations between the dimensions and engineering qualities were investigated using principal component analysis (PCA). Five principal components, which account for 100% of the total variance, were used via PCA to reduce the dimensionality of the data.
未充分利用的有色稻和非有色稻地方品种物理性状和工程性状的差异
传统的地方水稻不能使用标准的机械或单元操作进行加工。另一方面,传统大米随着其所谓的健康益处的传播而变得越来越受欢迎。破碎的米粒,破碎的米,和不合格的米粒是由于使用非标准设备的地方。因此,研究水稻和稻谷的物理特性对于改进碾磨设备以减少收获后损失至关重要。为了保护和熟悉未充分利用的地方品种,使用标准分析方案对三种色素和三种非色素地方品种的物理、重量和工程特性进行了比较研究。分析表明,在评估的属性之间存在实质性差异。大多数传统地方品种被划分为长粗和长细粒。不同地方品种水稻和稻谷样品的等效直径变化范围分别为0.29 ~ 0.46 mm和2.54 ~ 3.38 mm。其他属性的主要差异,如球度、纵横比和表面积也被观察到。与其他地方品种相比,马杜穆准吉(MMP)的水稻和水稻样品的重量特性值显著降低。孔隙度最高(51.43%),水分含量最高(14.97%),水分活度最高(0.88)。未着色水稻样品的千粒重(TKW)、粒体积和表面积值较低。除白马皮莱桑巴稻外,几乎所有变异的TKW均在30 g以下,这表明有色素和无色素地方品种之间存在差异。水分含量对土坯的重量性能和工程性能有显著影响。利用主成分分析(PCA)研究了工程质量与工程维度之间的相关性。5个主成分占总方差的100%,通过PCA对数据进行降维。
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