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Effect of fiber drying on properties of lignin containing cellulose nanocrystals and nanofibrils produced through maleic acid hydrolysis

机译:纤维干燥对通过马来酸水解产生的纤维素纳米晶体和纳米纤维性能的影响

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摘要

The effect of fiber drying on the properties of lignin containing cellulose nanocrystals (LCNC) and nanofibrils (LCNF) produced using concentrated maleic acid hydrolysis of a never dried unbleached mixed hardwood kraft pulp was evaluated. Two drying conditions, i.e., air drying and heat drying at 105 degrees C were employed. It was found that drying (both air and heat) enhanced acid hydrolysis to result in slightly improved LCNC yields and less entangled LCNF. This is perhaps due to the fact that drying modified the cellulose supermolecular structure to become more susceptible to acid hydrolysis and the enhanced hydrolysis severity at the fiber surface when using dried fibers. Drying substantially improved LCNC crystallinity and LCNF suspension viscoelastic behavior. The present study quantitatively elucidated the effect of pulp drying (either air or heat) on producing cellulose nanomaterials and has practical importance because commercial market pulp (heat dried) is most likely to be used commercially.
机译:评价纤维干燥对使用从未干燥的未漂白的混合硬木牛皮牛皮浆浆浆制备的含纤维素纳米晶体(LCNC)和纳米纤维(LCNF)和纳米纤维(LCNF)的性能的影响。使用两个干燥条件,即105℃的空气干燥和热干燥。发现干燥(空气和热量)增强酸水解,导致略微改善的LCNC产量和更少的缠结LCNF。这可能是由于干燥改性纤维素超分子结构的事实,以在使用干燥纤维时更容易受到酸水解的更容易受酸水解和增强的水解严重程度。干燥基本上改善的LCNC结晶度和LCNF悬浮粘弹性行为。本研究定量地阐明了纸浆干燥(空气或热量)对产生纤维素纳米材料的影响,并且具有商业市场纸浆(热干)最有可能在商业上使用。

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