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Effect of ultrasonication on physicochemical properties of apple based nanocellulose-calcium carbonate composites

机译:超声波对苹果基纳米纤维素 - 碳酸钙复合材料物理化学性质的影响

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摘要

In order to improve optical properties of materials made of nanocellulose and also minimalize costs, small amounts of mineral fillers such as different forms of calcium carbonate are added. In this work nanocellulose was obtained from apple pomace. The precipitated calcium carbonate (PCC) in amount of 3.74 +/- 1.36% of a sample dry matter was deposited on cellulose fibers during isolation process. Isolated cellulose was then treated with ultrasonic method in order to obtain apple cellulose nanofibrills (ACNF)/PCC nanocomposites. Different ultrasonication conditions were applied in order to evaluate how time (0-60 min) and power (0-400 W) influence on the ACNF/PCC nanocomposites properties. Moreover structure, chemical composition, morphology and rheological properties of both cellulose and composites were characterized. Also the mechanical properties of nanopapers made of ACNF/PCC nanocellulose were measured. The nanofibril structure of ultrasound processed cellulose was confirmed. In all cases samples were pseudoplastic fluids with quite low viscosity. The mean hydrodynamic diameter of particle dispersions decreased the most after use of ultrasounds for 60 min and the obtained dispersions were also the most homogeneous. The elastic modulus of obtained nanopapers were 2-3 GPa and tensile strength 60-70 MPa and in general ultrasonication improved their rigidity.
机译:为了提高由纳米纤维素制成的材料的光学性质,并且还原成本最小化,加入少量矿物填料,例如不同形式的碳酸钙。在该工作中,从苹果渣中获得纳米纤维素。在分离过程中,在纤维素纤维上沉积样品干物质的3.74 +/- 1.36%的沉淀的碳酸钙(PCC)。然后用超声法处理分离的纤维素,以获得苹果纤维素纳米纤维(ACNF)/ PCC纳米复合材料。应用不同的超声局部条件,以评估如何(0-60分钟)和功率(0-400 w)对ACNF / PCC纳米复合材料的影响。此外,表征了纤维素和复合材料的结构,化学成分,形态和流变性质。此外,测量由ACNF / PCC纳米纤维素制成的纳米粉刺的机械性能。确认超声处理纤维素的纳米纤维结构。在所有情况下,样品是具有相当低的粘度的假塑性液。在使用超声波60分钟后,颗粒分散体的平均水动力直径最多降低,并且所获得的分散体也是最均匀的。所得纳米涂布物的弹性模量为2-3GPa,拉伸强度为60-70MPa,并且一般超声改善其刚性。

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