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A Study of Surface Morphology and Structure of Cotton Fibres with Soluble Immobilized-cellulase Treatment

机译:固定化纤维素酶处理棉纤维的表面形态和结构研究

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Our previous studies have demonstrated that cotton fabrics treated with soluble immobilized-cellulase showed considerably lower degradation and higher retention of tensile strength than those treated with free cellulase. It is important to investigate the surface morphology and structure of cotton fibres for understanding the enzymatic degradation. In this study, the effects of the soluble immobilized-cellulase on the surface morphology and structure of cotton fibres were investigated. The ultrastructural changes in the fibre surfaces were inspected using Tapping-Mode Atomic Force Microscopy (TM-AFM) and scanning electron microscopy (SEM), and the results showed that the smooth surfaces could be obtained after the immobilized-cellulase treatment, and no obvious damage was observed on the fibre surfaces. The hydrogen bonds in the certain depth area beneath the fibre surface were investigated using Attenuated Total Reflectance Fourier-Transform Infrared Spectroscopy (ATR-FTIR) after the cellulase treatments. Furthermore, the result of fibre accessibility indicated that the hydrolysis occurring in the interior of the cotton fibres was limited during the immobilized-cellulase treatment. Crystalline index (CI) of the cotton fibres treated with free cellulase was slightly higher than that of fibres treated with immobilized cellulase.
机译:我们以前的研究表明,与用游离纤维素酶处理的棉织物相比,用可溶性固定纤维素酶处理的棉织物显示出明显更低的降解和更高的拉伸强度保持率。研究棉纤维的表面形态和结构对于理解酶促降解非常重要。在这项研究中,研究了可溶性固定化纤维素酶对棉纤维表面形态和结构的影响。用拍击式原子力显微镜(TM-AFM)和扫描电子显微镜(SEM)观察纤维表面的超微结构变化,结果表明,固定化纤维素酶处理后可以得到光滑的表面,没有明显的变化。在纤维表面观察到损坏。纤维素酶处理后,使用衰减全反射傅里叶变换红外光谱(ATR-FTIR)研究了纤维表面下方一定深度区域的氢键。此外,纤维可及性的结果表明,在固定化纤维素酶处理期间,棉纤维内部发生的水解受到限制。用游离纤维素酶处理的棉纤维的结晶指数(CI)略高于用固定纤维素酶处理的棉的结晶指数。

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