Preparation of microcrystalline cellulose from dissolving cellulose by cryo-crushing and acid hydrolysis

Surached Eartrakulpaiboon, N. Tonanon
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引用次数: 3

Abstract

An interesting method in the preparation of microcrystalline cellulose (MCC) from dissolving cellulose by cryo-crushing, followed by acid hydrolysis is presented in this research. Dissolving cellulose with high cellulose content (more than 90 wt.%) was frozen with liquid nitrogen, after that the frozen pulp was milled. This experimental result showed that an average diameter of cellulose fiber was reduced from 121.11 μm to 87.51 μm and a specific surface area was increasing from 161.13 m2/kg to 184.97 m2/kg. In hydrolysis process, sulfuric acid was selected to remove an amorphous region in cellulose fibrils and to introduce sulfate groups to form stable suspensions in organic media. This hydrolysis result demonstrated that MCC had an average diameter of 14.47 μm and a specific surface area of 427 m2/kg. The morphology of MCC was observed by optical microscopy.
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低温破碎酸水解溶解纤维素制备微晶纤维素
本文介绍了一种将纤维素溶解后,先进行低温粉碎,再进行酸水解制备微晶纤维素的新方法。将高纤维素含量(90% wt.%以上)的溶解性纤维素用液氮冷冻,然后进行冻浆碾磨。实验结果表明,纤维素纤维的平均直径从121.11 μm减小到87.51 μm,比表面积从161.13 m2/kg增加到184.97 m2/kg。在水解过程中,选择硫酸去除纤维素原纤维中的无定形区域,并引入硫酸盐基团,在有机介质中形成稳定的悬浮液。水解结果表明,MCC的平均直径为14.47 μm,比表面积为427 m2/kg。光学显微镜下观察MCC的形态。
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