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Nanocrystalline Cellulose: Synthesis from Pruning Waste of Zizyphus spina christi and Characterization

机译:纳米晶纤维素:枯萎天牛的合成及其表征

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Nanocrystalline cellulose (NCCs) was synthesized from pruning waste of Zizyphus spina christi using H2SO4 (64 %, wt/wt) under suitable hydrolysis conditions. The crystal growth of the NCCs from nano- into identical micrometric-scaled needles confirmed their ability to self-assembly. The aspect ratio of the NCCs was estimated using optical microscopy for needles, and by scanning electron microscopy (SEM) for powder, while their crystallinity index (CI), crystallite size (CS) and lattice spacing (LS) were estimated by X-ray diffraction (XRD). Thermogravimetric analysis (TGA) and differential thermal analysis (DTA) were also performed. The XRD-diffractogram of the NCCs was similar to that known for cellulose I. The CI of the NCCs was much higher (86.75%) than that for cellulose I. The CS of the NCCs was 2.78 nm that is smaller than that for cellulose I. The distance between the strata within the NCCs (LS) was found to be 0.214 nm. The TGA indicated a gradual increase in the mass loss upon heating the NCCs from 25°C up to 500°C in a flowing N2-atmosphere. The DTA showed presence of an endothermic peak (due to H2O-evaporation) and one exothermic peak (due to depolymerization and decomposition of the NCCs. Based on the results, the Zizyphus wood is suitable precursor for the NCCs production.
机译:在适当的水解条件下,使用H2SO4(64%,wt / wt),从枯萎的Zizyphus spina christi的修剪废料中合成了纳米晶纤维素(NCC)。 NCC从纳米针到相同的微米级针的晶体生长证实了它们的自组装能力。 NCC的长径比使用针的光学显微镜和粉末的扫描电子显微镜(SEM)进行估算,而其结晶度指数(CI),微晶尺寸(CS)和晶格间距(LS)则通过X射线估算衍射(XRD)。还进行了热重分析(TGA)和差热分析(​​DTA)。 NCC的X射线衍射图与已知的纤维素I相似。NCC的CI比纤维素I的CI高得多(86.75%)。NCC的CS为2.78 nm,比纤维素I的CS小。在NCC(LS)内的层之间的距离被发现为0.214nm。 TGA表示在流动的N2气氛中将NCC从25°C加热到500°C时,质量损失逐渐增加。 DTA表现出一个吸热峰(由于H2O蒸发)和一个放热峰(由于NCC的解聚和分解),因此,Zizyphus木材是生产NCC的合适前体。

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