从棉秆不同部分提取的棉秆纤维性能差异显著性的统计分析

N. Z. Nkomo, L. Nkiwane
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引用次数: 6

摘要

当前位置种植棉花主要是为了它的棉铃纤维,棉秆很少被利用。棉秆是害虫的滋生地,因此棉秆通常在田间燃烧,造成空气污染。通过随机抽样从农场收集棉花秸秆,对其进行自然水化处理,然后进行机械去皮,并根据其相对于秸秆的位置分为顶部、中部和底部纤维。对棉秆纤维的物理性能进行了拉伸强度、回潮率、线密度、直径和纤维长度等测试。这些结果在SPSS中使用单因素多变量分析(MANOVA)进行分析,每个茎秆段有三个水平,以检验不同茎秆段纤维特性差异的统计学显著性。Pillais微量检验表明,不同产地的纤维在抗拉强度、伸长率、纤维密度、纤维直径、纤维长度、线密度和回潮率等指标上存在显著差异。这个测试之后是Tuskey的HSD事后测试,该测试显示了茎秆的各个部分之间的参数变化。
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Statistical analysis of the significance of variation in properties of cotton stalk fibres extracted from different sections of the cotton stalk
: - Cotton is cultivated primarily for its boll fibre and little use is made of the cotton stalk. The cotton stalks are breeding ground for pests therefore the stalks are normally burnt in the field creating air pollution. Cotton stalks were collected from farms through random sampling and subjected to natural water retting and there after mechanical decortication and categorised according to their location relative to the stalk as top section, middle section and bottom section fibres. The physical properties of the cotton stalk fibres was characterised by tensile strength, moisture regain, linear density, diameter and fibre length tests. These results were analysed using one way multivariate analysis (MANOVA) in SPSS with three levels being one for each section of the stalks to test the statistical significance of the differences of the fibre properties from different sections of the cotton stalk. Pillais trace test showed that there was statistical significant difference between fibres from different locations when considered jointly on the variables tensile strength, elongation, fibre density, fibre diameter, fibre length, linear density and moisture regain. This test was followed up by Tuskey’s HSD post hoc test which showed which parameters varied between which sections of the stalk.
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