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Effect of the Delignification Process on the Physicochemical Properties and Thermal Stability of Microcrystalline Cellulose Extracted from Date Palm Fronds

机译:脱铬化方法对棕榈叶纤维纤维素的物理化学特性及散热性的影响

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摘要

In this study, pure cellulose was isolated from Algerian date palm fronds (DPF) using three different delignification processes (acidified NaClO2, totally chlorine free (TCF) and their combination). Then, microcrystalline cellulose (MCCs) particles have been successfully produced via direct acid hydrolysis of the different celluloses. All samples were characterized using infrared spectroscopy (FTIR), X-ray diffraction (XRD), scanning electron microscopy (SEM), thermogravimetry (TGA) and differential scanning calorimeter (DSC). From the FTIR analysis, most of hemicellulose and lignin were effectively removed throughout the extraction processes. The XRD spectra revealed that all MCCs belong to cellulose I type, and showed a highly crystallinity index than that of pure celluloses. According to DSC and TGA/DTG analyses, the MCC samples presented a higher decomposition temperature. The obtained results showed that the extracted MCC samples exhibited similar properties than those of commercial MCC. Furthermore, the employment of a combined process allowed obtaining MCC with higher crystallinity and better thermal stability. Thus, according to these results, date palm fronds can be considered as a potential low-cost material for MCC production and the combined process is promising to isolate high purity MCC from cellulosic substrate.[GRAPHICS].
机译:在这项研究中,使用三种不同的脱磷酸化方法(酸化NaClO2,完全氯(TCF)及其组合)从阿尔及利亚枣棕榈叶(DPF)中分离出纯纤维素。然后,通过不同纤维素的直接酸水解成功地生产了微晶纤维素(MCCs)颗粒。所有样品的特征在于使用红外光谱(FTIR),X射线衍射(XRD),扫描电子显微镜(SEM),热重度(TGA)和差示扫描量热计(DSC)。从FTIR分析中,在整个提取过程中有效地消除了大多数半纤维素和木质素。 XRD光谱显示所有MCCS属于I型纤维素,并且显示比纯纤维素的高结晶性指数。根据DSC和TGA / DTG分析,MCC样品呈现出更高的分解温度。所得结果表明,提取的MCC样品表现出比商业MCC的特性相似。此外,使用组合过程的就业允许获得具有更高结晶度和更好的热稳定性的MCC。因此,根据这些结果,可以认为枣椰子叶子作为MCC生产的潜在低成本材料,并且组合过程很有希望将高纯度MCC与纤维素基材分离。[图形]。

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