Synthesis and Characterization of Corn Husk (Zea Mays L.) Cellulose Using Microwave-Assisted Extraction (MAE)

Nor Pana Yupa, Henny Purwaningsih, T. Kemala
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Abstract

This research focuses on synthesizing cellulose from corn husks using microwave-assisted extraction (MAE), which aims to produce cellulose from corn husks through liquefaction, delignification, and bleaching processes. The total time required is only 14 minutes, thus shortening the process time. This study used three power variations: 450 W, 600 W, and 800 W. The results showed that the optimum conditions occurred at 800 W power. Hence, the higher the power caused the high cellulose content obtained, which amounted to 75.23% and decreased the lignin value to 15.78%, along with the increase in microwave power. FTIR analysis also confirmed the cellulose results obtained and indicated that the lignin groups were weakened or lost. Furthermore, morphological analysis of cellulose fibers by SEM showed that the surface of cellulose fibers was rough, oval, and irregular due to cracks caused by erosion. Then, the result of cellulose crystallinity using XRD was 45.8%. Compared to conventional methods, microwave-assisted cellulose synthesis exhibits better and more promising potential. This is because microwave radiation can be used to improve process time efficiency and achieve higher yields. Moreover, the proposed method is easier, faster, and straightforward.
利用微波辅助萃取 (MAE) 合成玉米芯纤维素并确定其特性
这项研究的重点是利用微波辅助萃取(MAE)从玉米皮中合成纤维素,旨在通过液化、脱木素和漂白过程从玉米皮中生产纤维素。所需的总时间仅为 14 分钟,从而缩短了工艺时间。这项研究使用了三种功率变化:结果表明,在 800 W 功率时条件最佳。因此,随着微波功率的增加,功率越高,纤维素含量越高,达到 75.23%,木质素含量降低到 15.78%。傅立叶变换红外光谱分析也证实了纤维素的结果,并表明木质素基团被削弱或消失。此外,用扫描电镜对纤维素纤维进行的形态分析表明,纤维素纤维表面粗糙、呈椭圆形、不规则,这是由于侵蚀造成的裂缝。然后,用 XRD 对纤维素结晶度进行分析,结果为 45.8%。与传统方法相比,微波辅助纤维素合成具有更好、更大的潜力。这是因为微波辐射可用于提高工艺时间效率和产量。此外,所提出的方法更加简单、快捷和直接。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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