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Fiber Quality and Textile Performance of Some Australian Cotton Genotypes

机译:一些澳大利亚纯棉基因型的纤维质量和纺织性能

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Improving the quality of Australian cotton fiber is essential for maintaining industry viability. Two field experiments were conducted to assess the fiber quality and yarn performance of Australian bred cotton (five Gossypium hirsutum L. and one G. barbadense L.) genotypes. The work included the novel measurement of fiber maturity ratio, fiber linear density, and fiber diameter (ribbon width). The strongest yarns were produced using genotypes with the longest and finest fiber, for example, the strength of 20 tex yarns for the G. barbadense L. cultivar Sipima 280 (length = 36.6 mm, linear density = 143 mtex, ribbon width = 13.7 ??m) was 25.4 cN texa?’1 cf. the G. hirsutum L. cultivar Sicala 350B (length = 32.5 mm, linear density = 185 mtex, ribbon width = 14.5 ??m) yarn strength of 18.1 cN texa?’1 Micronaire was an inferior indicator of yarn performance, for example, the G. hirsutum L. breeding lines CHQX12B and CHQX377 each had micronaire values of 4.4, but CHQX377 spun stronger yarns due to its finer and more mature fiber. Lint cleaning had the greatest influence on nep (fiber knot) generation for G. hirsutum L. genotypes, generating on average 104 neps ga?’1 per lint cleaner passage. There was a negative association between fiber quality and yield, and a cost benefit analysis showed that fiber yield was the dominant economic factor compared to price premiums for better fiber quality. Alternative methods of determining fiber fineness will improve the value of Australian cotton.
机译:提高澳大利亚棉纤维的质量对于维持行业可行性至关重要。进行了两次现场实验,以评估澳大利亚繁殖棉花的纤维质量和纱线性能(五种Gossypium hirsutum L.和1 G. Barbadense L.)基因型。该工作包括新颖的纤维成熟度,纤维线性密度和纤维直径(带宽)的测量。使用具有最长和最好的纤维的基因型产生最强的纱线,例如,G.Barbadense L.栽培品种Sipima 280(长度= 36.6mm,线性密度= 143mtex,带宽= 13.7的强度为20吨蛋糕纱线的强度?m)是25.4 cn texa?1 cf. G. hirsutum L.栽培品种Sicala 350b(长度= 32.5mm,线性密度= 185 mtex,带宽=14.5μm)纱线强度为18.1 cn texa?1 microonaire是纱线性能的劣质指示器,例如, G. Hirsutum L.育种线CHQX12B和CHQX377各自具有4.4的缩微素值,但由于其更细胞和更成熟的纤维,CHQ×377纺出更强的纱线。棉绒清洁对G. Hirsutum L.基因型的NEP(光纤结)产生的影响最大,平均每棉清洁剂的104个Neps Ga?1。纤维质量和产量之间存在负关联,并且成本效益分析表明,与更好的纤维质量的价格溢价相比,纤维产量是主导的经济因素。确定纤维细度的替代方法将提高澳大利亚棉花的价值。

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