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Preparation and Properties of Cellulose/Tamarind Nut Powder Green Composites

机译:纤维素/罗望子果仁粉绿色复合材料的制备及性能

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摘要

Using biopolymer cellulose as the matrix and tamarind nut powder (TNP) obtained from agricultural waste of tamarind nuts as the filler, the green composites were made. Cellulose was dissolved in environmental friendly solvent of aq. 8 wt. % Lithium hydroxide and 15 wt. % urea which was precooled to -12 degrees C. To the cellulose solutions, TNP was added in 5 wt. % to 25 wt. % of cellulose separately. Each solution was evenly spread on glass plates and the wet composites were prepared by regeneration method using ethyl alcohol coagulation bath. The wet films were dried in air at room temperature. The dried composite films were characterized by FTIR spectroscopy, X-ray diffraction, thermogravimetric analysis and also tested for their tensile properties. The tensile strength and the % elongation at break of the composites were higher than those of the matrix and increased with TNP content. While the matrix had a tensile strength of 111.8 MPa, the cellulose/TNP composite loaded with 25 wt.% TNP possessed a tensile strength of 125.4 MPa (12% increase). Though the thermal stability of the composites was lower than cellulose matrix, all the composites were stable up to a temperature of 350 degrees C.
机译:以生物聚合物纤维素为基质,以农业废弃物中的罗望子果仁为原料,制成罗望子果仁粉(TNP),制成绿色复合材料。将纤维素溶解在水溶液的环境友好溶剂中。 8重量%的氢氧化锂和15 wt。 %尿素被预冷至-12℃。向纤维素溶液中加入5重量%的TNP。 %至25 wt。分别为纤维素的%。将每种溶液均匀地分散在玻璃板上,并使用乙醇混凝浴通过再生方法制备湿的复合材料。湿膜在室温下在空气中干燥。干燥后的复合薄膜通过FTIR光谱,X射线衍射,热重分析进行表征,并测试其拉伸性能。复合材料的拉伸强度和断裂伸长率%高于基体,并随TNP含量的增加而增加。尽管基体的抗张强度为111.8 MPa,但是负载了25 wt。%TNP的纤维素/ TNP复合材料的抗张强度为125.4 MPa(增加了12%)。尽管复合材料的热稳定性低于纤维素基体,但所有复合材料在高达350摄氏度的温度下都是稳定的。

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