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Nanocellulose Production by Twin-Screw Extrusion: Simulation of the Screw Profile To Increase the Productivity

机译:纳米纤维素生产通过双螺杆挤出产生:仿真螺丝轮廓以提高生产率

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摘要

Cellulose nanofibrils (CNFs) have gained increased attention since the last 15 years and can now be produced at high solid content in an energy-efficient way using twin-screw extrusion. In this study, a screw profile was optimized using simulation software in order to produce high-quality CNFs in one pass through the twin-screw extruder, instead of several passes as reported in other studies, decreasing the energy consumption, improving the productivity, and hence making the industrialization of such a process more probable. An optimized profile was designed using the software according to previous studies, and an enzymatic cellulose pulp was experimentally nanofibrillated. Produced CNFs were characterized using several techniques such as optical microscopy, mechanical properties, turbidity, nanosized fraction, or quality index. The optimized screw profile contains six blocks of kneading disks with left-handed staggering and imparts high levels of shear, strain, and energy in the first pass. CNFs were successfully produced in a single pass with equivalent quality than the CNF produced in at least four passes using a classic profile, without changing the energy consumption. Produced CNFs present high transparency and a Young's modulus of around 13 GPa.
机译:自上次15年以来,纤维素纳米纤维(CNFS)获得了更高的关注,现在可以使用双螺杆挤出以节能的方式在高固体含量下生产。在本研究中,使用仿真软件优化了螺钉轮廓,以便在一次通过双螺杆挤出机中生产高质量的CNF,而不是在其他研究中报告的几次通过,降低能耗,提高生产率,提高生产率因此,使这种过程的产业化更可能。根据先前的研究使用该软件设计了优化的配置文件,并且通过实验纳米纤维化酶纤维素纸浆设计。使用若干技术(如光学显微镜,机械性能,浊度,纳米级)或质量指标为特征,所生产的CNF。优化的螺杆轮廓包含六个捏合盘,左手惊人,并赋予第一次通过的高水平剪切,应变和能量。在单通中成功生产CNF,其等效质量比使用经典轮廓在至少四次通过的CNF,而不会改变能量消耗。产生的CNFS具有高透明度和杨氏模量约为13 GPa。

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