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Effect of the chemical and structural characteristics of pulps of Eucalyptus and Pinus on the deconstruction of the cell wall during the production of cellulose nanofibrils

机译:桉树纸浆和结构特征对纤维素纳米纤维纤维纤维壁解构对细胞壁解构的影响

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摘要

The species Eucalyptus globulus, Eucalyptus nitens and Pinus radiata, are important supplies for the production of cellulose pulp in the world market, which can be used for the production of cellulose nanofibrils (CNFs). Understanding how the characteristics of different raw materials affect the production and final properties of nanofibrillated celluloses is very useful, both for the pulp industry and for the end user. The aim of this research was to determine how the chemical and structural differences of the commercial Kraft pulps of E. globulus, E. nitens and P. radiata affect the production and the morphological and rheological characteristics of the CNFs produced through an enzymatic-mechanical process. On one hand, the results showed that pine fibers were easier to deconstruct than eucalyptus fibers, however, pine CNFs were found to have the largest fibril width and a lower aspect ratio (length /width). On the other hand, the pulp of E. globulus, was the one that obtained a better aspect ratio and higher intrinsic viscosity.
机译:蓝桉、硝桉和辐射松是世界市场上生产纤维素纸浆的重要原料,可用于生产纤维素纳米纤维(CNF)。了解不同原料的特性如何影响纳米纤维化纤维素的生产和最终性能,对纸浆行业和最终用户都非常有用。本研究的目的是确定蓝桉、硝化桉和辐射桉商业硫酸盐浆的化学和结构差异如何影响通过酶促机械加工产生的CNF的产量以及形态和流变特性。一方面,结果表明,松木纤维比桉树纤维更容易解构,然而,发现松木CNF具有最大的原纤宽度和较低的长宽比(长宽比)。另一方面,蓝桉果肉具有更好的长径比和更高的特性粘度。

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