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3D Printing High-Consistency Enzymatic Nanocellulose Obtained from a Soda-Ethanol-O2 Pine Sawdust Pulp

机译:从苏打-乙醇-O2松木屑纸浆中获得的3D打印高浓度酶促纳米纤维素

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摘要

Soda-ethanol pulps, prepared from a forestry residue pine sawdust, were treated according to high-consistency enzymatic fibrillation technology to manufacture nanocellulose. The obtained nanocellulose was characterized and used as ink for three-dimensional (3D) printing of various structures. It was also tested for its moisture sorption capacity and cytotoxicity, as preliminary tests for evaluating its suitability for wound dressing and similar applications. During the high-consistency enzymatic treatment it was found that only the treatment of the O2-delignified pine pulp resulted in fibrillation into nano-scale. For 3D printing trials, the material needed to be fluidized further. By 3D printing, it was possible to fabricate various structures from the high-consistency enzymatic nanocellulose. However, the water sorption capacity of the structures was lower than previously seen with porous nanocellulose structures, indicating that further optimization of the material is needed. The material was found not to be cytotoxic, thus showing potential as material, e.g., for wound dressings and for printing tissue models.
机译:由林业残留松木屑制备的苏打-乙醇纸浆,根据高浓度酶促原纤化技术进行处理,以生产纳米纤维素。表征所获得的纳米纤维素,并将其用作用于各种结构的三维(3D)打印的油墨。还对它的水分吸收能力和细胞毒性进行了测试,作为评估其对伤口敷料和类似应用的适用性的初步测试。在高浓度酶处理过程中,发现只有O2脱木质素的松木浆的处理才能将原纤化成纳米级。对于3D打印试验,材料需要进一步流化。通过3D打印,可以从高浓度酶促纳米纤维素制造出各种结构。但是,该结构的吸水能力低于先前在多孔纳米纤维素结构中看到的吸水能力,这表明需要进一步优化材料。发现该材料没有细胞毒性,因此显示出作为例如伤口敷料和印刷组织模型的材料的潜力。

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