化学预处理工艺对纤维素菌膜力学性能和孔隙率的影响

T. A. Sutrisno, H. Suryanto, R. Wulandari, M. Muhajir, S. S. Zahari
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引用次数: 6

摘要

细菌纤维素(BC)是一种天然聚合物,具有高孔隙率、高纯度和高渗透性等优异性能。研究目的是确定化学预处理对BC抗拉强度和孔隙率的影响。以菠萝皮提取物为原料,经过14天的发酵制备BC薄膜。预处理通过将BC浸入浓度为2.5%的BmimCl、H2 O2和NaOH溶液中进行;5%;和7.5%,在80°C下加热,然后在烘箱中干燥,然后通过使用ASTM-D36-V标准的拉伸试验、使用扫描电子显微镜的形态分析和孔隙率分析来测试样品。结果表明,对照样品的拉伸强度为123MPa,而在化学预处理后,与在7.5%的NaOH下具有8.54MPa的较低拉伸强度的其他溶液相比,使用NaOH预处理的拉伸强度下降幅度更大。孔隙率的结果表明,经过化学处理后,孔隙率值有所增加。经过7.5%的NaOH处理后,BC膜的孔隙率为87.13%,而未经处理的BC膜的孔隙度为19.15%。这种现象是由于孔隙增加而产生的,因此吸水率增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effect of Chemical Pretreatment Process on Mechanical Properties and Porosity of Cellulose Bacterial Film
Bacterial cellulose (BC) is a natural polymer which have superior properties, like high porosity, high purity, and high permeability. The study objective is to determine the influence of chemical pretreatment on tensile strength and the porosity of BC. The method was to make BC films from pineapple peel extract through fermentation process for 14 days. The pretreatment was conducted by immersion of BC in BmimCl, H 2 O 2 , and NaOH solution with a concentration of 2.5%; 5%; and 7.5 %, heated at 80 °C then dried in the oven, and the samples were then tested by a tensile test using ASTM-D636-V standard, morphology analysis using Scanning Electron Microscope, and porosity analysis. The results indicate that the tensile strength of control sample was 123 MPa, whereas after chemical pretreatment, the tensile strength was decreased with the greater reduction occurred using NaOH pretreatment compared than the other solutions that having a lower tensile strength of 8.54 MPa at 7.5 % of NaOH. The results of porosity show that the value increased after being treated chemically. The BC film porosity was 87.13% after  NaOH treatment of 7.5% while BC film untreated had porosity of 19.15%. This phenomenon was occurred due to the increasing pore, so the absorption of water increased.
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