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Role of mechanical action in low-temperature cotton scouring with E solani pisi cutinase and pectate lyase

机译:机械作用在E solani pisi角质酶和果胶酸裂合酶在低温棉花精练中的作用

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摘要

The two principal reasons that can hinder industrial success of bioscouring are the inability to remove cotton waxes at low-temperature and that bioscouring is a slow diffusion controlled process.The main objective of this paper is to develop an improved cotton scouring process by applying mechanical action and enzyme treatment to efficiently remove the cuticle and primary wall compounds from the cotton fibre.The role of the mechanical action for improving the bioscouring process is discussed.To study the effect,a known amount of mechanical energy was applied using the 'wedge apparatus' before and after the enzyme treatment.The effect of mechanical action was evaluated for a faster scouring process with cutinase,pectinase and optimum incubation conditions such as pH,temperature,ionic strength,enzyme concentration,and incubation time were determined.It is demonstrated that cutinase from fungus Fusarium solani pisi is effective in the degradation of cotton waxes at low-temperature in less than 30 min after applying mechanical action.Wax removal with cutinase reduces pectinase incubation time and increases hydrolytic rate of pectinase.By the introduction of mechanical energy a fast one-step low-temperature enzymatic cotton scouring process is developed at lab scale.
机译:阻碍生物精练工业成功的两个主要原因是在低温下无法去除棉蜡,并且生物精练是一个缓慢的扩散控制过程。本文的主要目的是通过机械作用来开发一种改进的棉花精练工艺。酶处理以有效去除棉纤维中的表皮和主要壁成分。探讨了机械作用对改善生物煮练过程的作用。为了研究效果,使用“楔形装置”施加了已知量的机械能用角质酶,果胶酶评估了机械作用的效果以加快精练过程,并确定了最佳的孵育条件,例如pH,温度,离子强度,酶浓度和孵育时间。证明了角质酶真菌Fusarium solani pisi可以有效地在低温下降解棉蜡施加机械作用后30分钟以内。使用角质酶去除蜡减少了果胶酶的孵育时间并增加了果胶酶的水解速率。通过引入机械能,在实验室规模上开发了一种快速的一步式低温酶促棉花精练工艺。

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