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Thermal, physical and morphological properties of durum wheat

机译:杜兰姆小麦的热,身体形态学性质

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The aim of this study was to evaluate selected physical, morphological and thermal properties of durum wheat grain. Additionally, the parameters of control grain (grown without fertilizers or a growth retardant) were compared with the grain from treatments with different combinations of nitrogen fertilizer and growth retardant. The grain of durum wheat grown without nitrogen fertilizer or growth retardant was characterized by the lowest values of thousand-kernel weight (47.24 g for the sample collected in 2015 and 45.70 g for the sample collected in 2016), bulk density (814 kg m(-3) -2015 and 745 kg m(-3) -2016), length (7.62 mm-2015 and 7.54 mm-2016), width (3.35 mm-2015 and 3.32 mm-2016) and shape factors (specific perimeter of object boundary, Danielsson coefficient). The highest values of thousand-kernel weight, bulk density and width of durum wheat grain harvested in both years of the study were determined in the samples collected in the treatment with a total nitrogen rate of 80 kg ha(-1) without the growth retardant. In the samples collected in 2015, the above combination produced grain with the greatest length, the highest specific perimeter of object boundary and the highest Danielsson coefficient. In 2016, these parameters were highest in grain from the treatment where a total nitrogen rate of 80 kg ha(-1) was combined with a growth retardant. Different combinations of nitrogen fertilization and the growth retardant did not affect the true density or the thermal properties of wheat grain. Statistically significant differences between the experimental groups were not observed.
机译:本研究的目的是评估杜兰姆小麦籽粒的选定物理,形态和热性质。另外,将控制晶粒(没有肥料或生长延迟的参数)与来自氮肥和生长延迟的不同组合的处理中的谷物进行比较。在没有氮肥或生长阻燃剂的情况下生长的杜兰姆小麦的粒子的特征在于,通过千核重量的最低值(47.24g,2015年收集的样品47.24g,在2016年收集的样品中的45.70g),散装密度(814千克( -3)-2015和745 kg m(-3)-2016),长度(7.62 mm-2015和7.54 mm-2016),宽度(3.35 mm-2015和3.32 mm-2016)和形状因子(物体的特定周边边界,丹尼尔斯逊系数)。在治疗中收集的样品中测定在研究中收获的千核重量,堆积密度和宽度的最高值,其在处理中的总氮速率为80kg ha(-1),没有生长阻燃。在2015年收集的样品中,上述组合产生了最大的晶粒,物体边界的最高特异性周长和最高的Danielsson系数。 2016年,这些参数在谷物中最高,从治疗中最高,其中总氮速率为80kg ha(-1)与生长延迟组合。不同的氮肥组合和生长阻燃性不影响小麦籽粒的真实密度或热性质。未观察到实验组之间的统计学显着差异。

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