首页> 外文期刊>Journal of Materials Research and Technology >Effect of sonication time on the thermal stability, moisture absorption, and biodegradation of water hyacinth ( Eichhornia crassipes) nanocellulose-filled bengkuang ( Pachyrhizus erosus) starch biocomposites
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Effect of sonication time on the thermal stability, moisture absorption, and biodegradation of water hyacinth ( Eichhornia crassipes) nanocellulose-filled bengkuang ( Pachyrhizus erosus) starch biocomposites

机译:超声处理时间对水稳定性,吸湿和生物降解的效果( eichhornia crassipes )纳米纤维素填充的bengkuang( pachyrhizus erosuss )淀粉生物复合材料

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摘要

In Indonesia, starch, particularly that obtained from bengkuang (Pachyrhizus erosus), is abundant and inexpensive, thereby increasing the value of bengkuang starch, which can be mixed with bioplastic-based starch. A biocomposite comprising nanocellulose from water hyacinth (Eichhornia crassipes) and bengkuang starch was successfully fabricated using the solution casting method. Nanocellulose content in the matrix was kept constant at 1wt%. Moreover, during fabrication, the biocomposite gel was treated in an ultrasonic bath for 0, 15, 30, and 60min. Further, thermogravimetric analysis, moisture absorption measurements, Fourier transform infrared spectroscopy, and scanning electron microscopy were performed. The biocomposite sample vibrated for 60min had the highest thermal stability and exhibited low moisture absorption. The soil burial test proved that this biocomposite, as opposed to 0-min vibrated samples, has a slower biodegradation rate. This result was supported by morphological evaluation after biodegradation, in which the 60-min vibrated samples showed a coarse surface and low porosity formation.
机译:在印度尼西亚,淀粉,特别是从Bengkuang(Pachyrhizus erosos)获得的淀粉是丰富和廉价的,从而增加了Bengkuang淀粉的价值,其可以与基于生物塑料的淀粉混合。使用溶液浇铸方法成功制造了一种含有来自水葫芦(Eichhornia Crassipes)和Bengkuang淀粉的生物复合二纤维素。将基质中的纳米纤维素含量保持在1wt%的恒定。此外,在制造过程中,将生物复合凝胶在超声浴中处理,用于0,15,30和60min。此外,进行热重分析,吸湿测量,傅里叶变换红外光谱和扫描电子显微镜。振动60min的生物复合样品具有最高的热稳定性,并且表现出低吸湿性。土壤埋葬试验证明,这种生物复合材料与0分钟振动样品相反,生物降解率较慢。生物降解后的形态学评估支持该结果,其中60分钟的振动样品显示出粗糙表面和低孔隙率形成。

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