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首页> 外文期刊>Cellulose >Enzymatically hydrolyzed and TEMPO-oxidized cellulose nanofibers for the production of nanopapers: morphological, optical, thermal and mechanical properties
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Enzymatically hydrolyzed and TEMPO-oxidized cellulose nanofibers for the production of nanopapers: morphological, optical, thermal and mechanical properties

机译:用于生产纳米涂布物的酶促水解和凝固的纤维化纤维素纳米纤维:形态学,光学,热和机械性能

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摘要

In the present study, CNF prepared by TEMPO-mediated oxidation and enzymatic hydrolysis were used for the production of nanopapers using a papermaking-like route. Nanopapers were characterized in terms of tensile, thermal, optical and morphological properties. Those prepared from enzymatically hydrolyzed CNF were found to be weaker at tensile than those resulting from TEMPO-mediated oxidation, but with similar level of stiffness. Enzymatically obtained CNF presented lower transparency due to their higher diameter and lower fibrillation yield. Moreover, TEMPO-oxidized CNF presented lower onset of the thermal degradation temperature (230 A degrees C) due to the presence of carboxylic groups. Overall, the influence of increasing the amount of enzyme during enzymatic hydrolysis and the amount of sodium hypochlorite during TEMPO-mediated oxidation was assessed as function of the ultimate properties of nanopapers.
机译:在本研究中,通过抑制氧化和酶水解制备的CNF用于使用造纸状途径生产纳米粉粉。 纳米粉刺以拉伸,热,光学和形态学性能表征。 发现由酶水解的CNF制备的那些在拉伸时比由凝胶介导的氧化产生的那些较弱,但具有相似水平的刚度。 酶促获得的CNF由于其较高直径和较低的原纤化产量而呈现较低的透明度。 此外,由于羧基存在,Tempo-氧化CNF呈现热降解温度(230℃)的较低发作。 总之,评估酶水解期间酶水解期间酶量和次氯酸钠的量评估为纳米涂布物的最终性质的函数。

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