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Effect of xylanase pretreatment of rice straw unbleached soda and neutral sulfite pulps on isolation of nanofibers and their properties

机译:稻草未漂白钠和中性亚硫酸盐纸浆的木聚糖酶预处理对纳米纤维分离及其性能的影响

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There is a recent interest in producing cellulose nanofibers with different surface properties from unbleached cellulose pulps for economic and environmental reasons. In the current study we investigated the use of xylanase pretreatment on two types of unbleached rice straw pulps, namely, soda and neutral sulfite, and their fibrillation to nanofibers using ultrafine grinding. The effect of xylanase pretreatment on the fibrillation progress, energy consumption, and nanofiber dimensions was studied. In addition, mechanical properties, water contact angle, water absorption, and roughness of produced nanopapers were studied. Although very thin nanofibers with a homogenous width could be isolated from both xylanase-treated and untreated pulps, the xylanase pretreatment resulted in faster fibrillation. In addition, nanopapers prepared from xylanase-treated nanofibers had better mechanical properties than those isolated from the untreated pulps. The energy consumption during fibrillation depended on the type of pulp; a slightly lower energy consumption (similar to 8%) was recorded for xylanase-treated soda pulp while a higher energy consumption (similar to 21%) was recorded for xylanase-treated neutral sulfite pulp compared to the untreated pulps.
机译:近期有兴趣在经济和环境原因中生产具有不同表面性质的纤维素纳米纤维,具有不同的纤维素纸浆,以进行经济和环境。在目前的研究中,我们调查了使用超细研磨的两种未漂白的稻草浆,即苏打和中性亚硫酸盐的两种类型的未漂白稻草浆,以及使用超细研磨的纳米纤维的纤维化。研究了木聚糖酶预处理对纤维化进展,能量消耗和纳米纤维尺寸的影响。另外,研究了生产纳米粉粉煤的机械性能,水接触角,吸水和粗糙度。尽管具有均匀宽度的非常薄的纳米纤维可以从木聚糖酶处理和未处理的纸浆中分离,但是木聚糖酶预处理导致更快的原纤化。此外,由木聚糖酶处理的纳米纤维制备的纳米粉粉粉末具有比未处理的纸浆分离的纳米纤维的机械性能更好。纤维化期间的能量消耗取决于纸浆的类型;对于木聚糖酶处理的苏打浆,记录略低的能量消耗(类似于8%),而与未处理的纸浆相比,记录了木聚糖酶处理的中性亚硫酸盐浆的更高能耗(类似于21%)。

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